WO2024109300A1 - 基于得气分析的激光治疗装置及系统 - Google Patents

基于得气分析的激光治疗装置及系统 Download PDF

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WO2024109300A1
WO2024109300A1 PCT/CN2023/120221 CN2023120221W WO2024109300A1 WO 2024109300 A1 WO2024109300 A1 WO 2024109300A1 CN 2023120221 W CN2023120221 W CN 2023120221W WO 2024109300 A1 WO2024109300 A1 WO 2024109300A1
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information
acupoint
laser
target
acupoints
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PCT/CN2023/120221
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English (en)
French (fr)
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何雯静
冼子彦
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广州市好脾胃健康管理有限公司
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Publication of WO2024109300A1 publication Critical patent/WO2024109300A1/zh

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H20/00ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance
    • G16H20/40ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to mechanical, radiation or invasive therapies, e.g. surgery, laser therapy, dialysis or acupuncture
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4836Diagnosis combined with treatment in closed-loop systems or methods
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4848Monitoring or testing the effects of treatment, e.g. of medication
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4854Diagnosis based on concepts of traditional oriental medicine
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H39/00Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H39/00Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
    • A61H39/02Devices for locating such points
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/067Radiation therapy using light using laser light
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H20/00ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance
    • G16H20/30ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to physical therapies or activities, e.g. physiotherapy, acupressure or exercising
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H50/00ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
    • G16H50/20ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H39/00Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
    • A61H2039/005Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture by means of electromagnetic waves, e.g. I.R., U.V. rays
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2230/00Measuring physical parameters of the user
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0626Monitoring, verifying, controlling systems and methods

Definitions

  • the present invention relates to the field of medical technology, and in particular to a laser treatment device and system based on gas analysis.
  • Acupuncture treatment for acupoints has been proven by existing TCM theories and experiments to have good curative effects and can improve the symptoms of a variety of diseases. Therefore, it is increasingly favored by the medical market.
  • acupuncture theory the "qi" theory is an important part. It plays a very important role in the clinical operation of acupuncture. It is the key to the effect of acupuncture treatment and the basis for judging the strength and weakness of meridian qi, the accuracy of acupoint selection, the prognosis of diseases, and the efficacy of acupuncture.
  • the existing acupoint treatment technology does not take into account the combination of the user's Qi feedback information and the time information of the Qi feedback during treatment to further analyze the user's Qi parameters. Therefore, its treatment concept is backward and cannot improve the treatment effect in a targeted manner. It does not truly achieve symptomatic treatment, flexible treatment, and precise treatment. It can be seen that the existing technology has defects that need to be solved urgently.
  • the technical problem to be solved by the present invention is to provide a laser treatment device and system based on De Qi analysis, which can determine the treatment points according to the user's medical information, and receive the user's De Qi feedback information and feedback time when treating the acupoints to analyze the De Qi parameters, so that the treatment effect can be determined or the treatment plan can be adjusted based on the analysis results, which is conducive to improving the treatment effect and treatment efficiency.
  • the first aspect of the present invention discloses a laser treatment device based on gas analysis, the device comprising:
  • An information acquisition module is used to obtain the medical information of the target treatment user
  • an acupoint determination module configured to determine at least one laser irradiation acupoint corresponding to the target user according to the medical information of the target user;
  • a feedback collection module used for obtaining user feedback information corresponding to at least one laser irradiation acupoint when the at least one laser irradiation acupoint is irradiated with laser, wherein the user feedback information includes at least one of Qi feedback information and Qi feedback generation time information;
  • the De Qi analysis module is used to determine the De Qi parameters corresponding to at least one of the laser irradiated acupuncture points according to the user feedback information.
  • the medical information includes one or more of the target user's past medical history information, current symptom description information, historical treatment feedback information, historical diagnosis information, historical treatment suggestion information, historical biometric information, current biometric information and historical laser irradiation parameters; and/or, the Qi feedback information includes at least one of acupoint soreness information, acupoint swelling information, acupoint numbness information, acupoint heaviness information, acupoint heat information, acupoint coolness information, acupoint itching information, acupoint pain information, acupoint twitching information, acupoint ant crawling information, acupoint specific sensation conduction information and acupoint specific sensation diffusion information.
  • the Qi feedback information includes at least one of acupoint soreness information, acupoint swelling information, acupoint numbness information, acupoint heaviness information, acupoint heat information, acupoint coolness information, acupoint itching information, acupoint pain information,
  • the gas analysis module includes:
  • a De Qi type analysis unit used to determine the health status corresponding to at least one of the laser irradiated acupoints according to the De Qi feedback information
  • a Deqi laser amount analysis unit used to determine the laser irradiation amount required to achieve a target Deqi effect corresponding to at least one of the laser irradiation acupoints according to the Deqi feedback information and the Deqi feedback generation time information;
  • the Qi comparison and analysis unit is used to determine the health status corresponding to at least one of the laser irradiated acupoints according to the comparison result between the laser irradiation amount and the reference irradiation amount.
  • the Deqi feedback generation time information includes the time difference between the start time of laser irradiation of the laser irradiation acupoint and the generation time of the Deqi feedback information; the Deqi laser amount analysis unit determines the specific manner in which the laser irradiation amount required to achieve the target Deqi effect corresponding to at least one of the laser irradiation acupoints according to the Deqi feedback information and the Deqi feedback generation time information, including:
  • the laser irradiation amount required to achieve the target De Qi effect corresponding to the target laser irradiation acupoint is determined based on the time information of the De Qi feedback and the laser power density when the target laser irradiation acupoint is laser irradiated.
  • the device further includes:
  • an acupoint analysis module for determining an acupoint to be treated of the target user according to a Qi parameter corresponding to at least one of the laser irradiated acupoints of the target user; the acupoint to be treated is used to continue to receive laser treatment in subsequent treatments;
  • the parameter analysis module is used to determine the laser power density corresponding to each target acupoint when irradiating a new acupoint according to the laser irradiation amounts corresponding to the multiple target acupoints corresponding to the current irradiation of the target user, when irradiating a new acupoint.
  • the specific manner in which the acupoint analysis module determines the acupoint to be treated of the target user includes:
  • the acupoints whose health status is unhealthy among all the laser irradiated acupoints are determined as the acupoints to be treated of the target user.
  • the parameter analysis module determines the specific manner in which the laser power density corresponding to each of the target acupoints when the new acupoints are irradiated includes:
  • the time difference data between the time information of the qi feedback generated by the target acupoint and the preset time reference value is calculated, and the laser power density corresponding to the target acupoint when the new acupoint is irradiated is determined, so that the time difference between the laser irradiation time corresponding to any of the target acupoints and the time reference value is less than the time difference data.
  • the feedback collection module includes:
  • a key collection unit used to receive key feedback information of the target user, and determine user feedback information corresponding to at least one of the laser irradiated acupuncture points according to the key feedback information; the key feedback information is triggered by the target user through different keys on the key device;
  • a sound collection unit used to obtain sound information when the target user is irradiated by the laser, and determine user feedback information corresponding to at least one of the laser irradiated acupuncture points according to the sound information
  • the biometric characteristic acquisition unit is used to obtain biometric characteristic change information of the target user when the target user is irradiated by the laser, and determine user feedback information corresponding to at least one of the laser irradiated acupuncture points according to the biometric characteristic change information.
  • the device further includes:
  • the data storage module is used to form a medical file corresponding to the target user by combining one or more of the medical information, the Qi feedback information, the health status of the acupoints, the laser irradiation amount and the laser power density, and The medical file is stored and/or the medical file is sent to a target server for storage.
  • the second aspect of the present invention discloses a laser treatment system based on gas analysis, the system comprising:
  • a laser therapy device connected to the server
  • the device includes:
  • An information acquisition module is used to obtain the medical information of the target treatment user
  • an acupoint determination module configured to determine at least one laser irradiation acupoint corresponding to the target user according to the medical information of the target user;
  • a feedback collection module used for obtaining user feedback information corresponding to at least one laser irradiation acupoint when the at least one laser irradiation acupoint is irradiated with laser, wherein the user feedback information includes at least one of Qi feedback information and Qi feedback generation time information;
  • the De Qi analysis module is used to determine the De Qi parameters corresponding to at least one of the laser irradiated acupuncture points according to the user feedback information.
  • the medical information includes one or more of the target user's past medical history information, current symptom description information, historical treatment feedback information, historical diagnosis information, historical treatment suggestion information, historical biometric information, current biometric information and historical laser irradiation parameters; and/or, the Qi feedback information includes at least one of acupoint soreness information, acupoint swelling information, acupoint numbness information, acupoint heaviness information, acupoint heat information, acupoint coolness information, acupoint itching information, acupoint pain information, acupoint twitching information, acupoint ant crawling information, acupoint specific sensation conduction information and acupoint specific sensation diffusion information.
  • the Qi feedback information includes at least one of acupoint soreness information, acupoint swelling information, acupoint numbness information, acupoint heaviness information, acupoint heat information, acupoint coolness information, acupoint itching information, acupoint pain information,
  • the gas analysis module includes:
  • a De Qi type analysis unit used to determine the health status corresponding to at least one of the laser irradiated acupoints according to the De Qi feedback information
  • a Deqi laser amount analysis unit used to determine the laser irradiation amount required to achieve a target Deqi effect corresponding to at least one of the laser irradiation acupoints according to the Deqi feedback information and the Deqi feedback generation time information;
  • the Qi comparison and analysis unit is used to determine the health status corresponding to at least one of the laser irradiated acupoints according to the comparison result between the laser irradiation amount and the reference irradiation amount.
  • the Deqi feedback generation time information includes the time difference between the start time of laser irradiation of the laser irradiation acupoint and the generation time of the Deqi feedback information; the Deqi laser amount analysis unit determines the specific manner in which the laser irradiation amount required to achieve the target Deqi effect corresponding to at least one of the laser irradiation acupoints according to the Deqi feedback information and the Deqi feedback generation time information, including:
  • the laser irradiation amount required to achieve the target De Qi effect corresponding to the target laser irradiation acupoint is determined based on the time information of the De Qi feedback and the laser power density when the target laser irradiation acupoint is laser irradiated.
  • the device further includes:
  • an acupoint analysis module for determining an acupoint to be treated of the target user according to a Qi parameter corresponding to at least one of the laser irradiated acupoints of the target user; the acupoint to be treated is used to continue to receive laser treatment in subsequent treatments;
  • the parameter analysis module is used to determine the laser power density corresponding to each target acupoint when irradiating a new acupoint according to the laser irradiation amounts corresponding to the multiple target acupoints corresponding to the current irradiation of the target user, when irradiating a new acupoint.
  • the specific manner in which the acupoint analysis module determines the acupoint to be treated of the target user includes:
  • the acupoints whose health status is unhealthy among all the laser irradiated acupoints are determined as the acupoints to be treated of the target user.
  • the parameter analysis module determines the specific manner in which the laser power density corresponding to each of the target acupoints when the new acupoints are irradiated, including:
  • the time difference data between the time information of the qi feedback generated by the target acupoint and the preset time reference value is calculated, and the laser power density corresponding to the target acupoint when the new acupoint is irradiated is determined, so that the time difference between the laser irradiation time corresponding to any of the target acupoints and the time reference value is less than the time difference data.
  • the feedback collection module includes:
  • a key collection unit used to receive key feedback information of the target user, and determine user feedback information corresponding to at least one of the laser irradiated acupuncture points according to the key feedback information; the key feedback information is triggered by the target user through different keys on the key device;
  • a sound collection unit used to obtain sound information when the target user is irradiated by the laser, and determine user feedback information corresponding to at least one of the laser irradiated acupuncture points according to the sound information
  • the biometric characteristic acquisition unit is used to obtain biometric characteristic change information of the target user when the target user is irradiated by the laser, and determine user feedback information corresponding to at least one of the laser irradiated acupuncture points according to the biometric characteristic change information.
  • the device further includes:
  • the data storage module is used to form a medical file corresponding to the target user by combining one or more of the medical information, the Qi feedback information, the health status of the acupoints, the laser irradiation amount and the laser power density, and store the medical file, and/or send the medical file to a target server for storage.
  • the embodiment of the present invention discloses a laser treatment device based on Deqi analysis, the device comprising: an information acquisition module for acquiring medical information of a target treatment user; an acupoint determination module for determining at least one laser irradiation acupoint corresponding to the target user according to the medical information of the target user; a feedback acquisition module for acquiring user feedback information corresponding to at least one laser irradiation acupoint when laser irradiating the at least one laser irradiation acupoint; the user feedback information comprises at least one of Deqi feedback information and Deqi feedback generation time information; a Deqi analysis module for determining Deqi parameters corresponding to at least one laser irradiation acupoint according to the user feedback information.
  • the present invention can determine the treatment acupoint according to the user's medical information, and receive the user's Deqi feedback information and feedback time when treating the acupoint to analyze the Deqi parameters, so that the treatment effect can be determined or the treatment plan can be adjusted based on the analysis result, which is conducive to improving the treatment effect and treatment efficiency.
  • FIG1 is a schematic structural diagram of a laser treatment device based on gas analysis disclosed in an embodiment of the present invention
  • FIG. 2 is a schematic diagram of various possible structures of the gas analysis module 104 disclosed in an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of various possible structures of the feedback collection module 103 disclosed in an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of the structure of a laser treatment system based on gas analysis disclosed in an embodiment of the present invention.
  • the “getting qi” described in the present invention is called “qi arrival” in ancient times and “needle sensation” recently. It refers to the acupuncture device such as a filiform needle inserted into the acupoint to a certain depth, and then the needle manipulation such as lifting, inserting or twisting is applied to make the acupuncture site obtain “meridian qi” induction, which is called getting qi.
  • the other type is objective research on getting qi, such as obtaining parameters through ultrasound, fMRI (functional magnetic resonance imaging), PET (positron emission tomography), etc., or obtaining single-photon values, spectra, temperature values, and skin conductivity values of acupoints during acupuncture, and forming a quantitative analysis of the effect of getting qi.
  • this type of analysis does not closely follow the original theoretical basis of the theory of getting qi, and has the defect of defining the effect of getting qi by itself.
  • it does not analyze the feedback information or feedback time of getting qi. Therefore, the results of this type of objective technical research on getting qi based on acupuncture techniques or physical reaction values are difficult to achieve systematization and standardization.
  • the present invention discloses a laser treatment device based on Deqi analysis, which can determine the treatment acupoints according to the user's medical information, and receive the user's Deqi feedback information and feedback time when treating the acupoints to analyze the Deqi parameters, so as to determine the treatment effect or adjust the treatment plan based on the analysis results, which is conducive to improving the treatment effect and treatment efficiency.
  • Deqi analysis can determine the treatment acupoints according to the user's medical information, and receive the user's Deqi feedback information and feedback time when treating the acupoints to analyze the Deqi parameters, so as to determine the treatment effect or adjust the treatment plan based on the analysis results, which is conducive to improving the treatment effect and treatment efficiency.
  • the laser treatment device 10 based on Deqi analysis may include an information acquisition module 101, an acupoint determination module 102, a feedback acquisition module 103 and a Deqi analysis module 104, wherein the information acquisition module 101 is used to acquire the medical information of the target treatment user, and the acupoint determination module 102 is used to determine at least one laser irradiation acupoint corresponding to the target user based on the medical information of the target user, wherein the laser irradiation acupoint is used to subsequently guide the laser emitting device to irradiate it to achieve the acupuncture treatment effect.
  • the feedback acquisition module 103 is used to acquire user feedback information corresponding to at least one laser irradiation acupoint when laser irradiating at least one laser irradiation acupoint.
  • the user feedback information includes deqi analysis module 104. At least one of gas feedback information and gas feedback generation time information.
  • the laser emitting device can emit laser to irradiate the laser irradiation acupuncture points one by one.
  • the irradiation of each acupuncture point ends when user feedback information is received, or it is forcibly ended when there is no user feedback information within a certain period of time.
  • Each user feedback information is uploaded to the central server.
  • the information collected from this irradiation can be compared and analyzed with the database information in the central server to obtain the current diagnosis conclusion, treatment effect evaluation and next treatment recommendation.
  • the De Qi analysis module 104 is used to determine the De Qi parameters corresponding to at least one laser irradiated acupoint according to user feedback information.
  • the acupoints referred to in the embodiments of the present invention are scientifically called acupoints, which mainly refer to special point areas on the meridian lines of the human body.
  • Traditional Chinese medicine can stimulate the corresponding meridian points to treat and prevent diseases through acupuncture or massage, acupressure, and moxibustion.
  • some acupoints are not on the meridians, but stimulation of them can also produce therapeutic effects.
  • acupuncture is the general term for acupuncture and moxibustion.
  • Acupuncture refers to inserting needles (usually filiform needles) into the patient's body at a certain angle under the guidance of traditional Chinese medicine theory, and using acupuncture techniques such as twisting and lifting to stimulate specific parts of the human body to achieve the purpose of treating diseases.
  • Moxibustion also known as moxibustion, is a treatment method that uses moxa sticks and moxa cones made of moxa leaves to stimulate the acupuncture points or specific parts of the human body, and adjusts the disordered physiological and biochemical functions of the human body by stimulating the activity of meridian qi, thereby achieving the purpose of preventing and curing diseases.
  • the laser treatment adopted in the present invention belongs to laser acupuncture, which is to directly or focus or expand the low-intensity laser beam to irradiate the surface or deep part of the acupoint area of the acupoint, effectively stimulate the acupoint, play the role of dredging the meridians, regulating the internal organs, promoting qi and blood circulation, and balancing yin and yang, so as to achieve the purpose of strengthening the body, eliminating evil, curing diseases and health care.
  • Existing papers such as "The Principle of Laser Acupuncture and Its Clinical Application" by He Jun et al.
  • both acupuncture and moxibustion performed by laser can produce the effect of De Qi.
  • the applicant found that after irradiating acupuncture points with a laser beam of a certain intensity and wavelength for a certain period of time, the irradiated parts will generally produce soreness, numbness, heat, coolness, itching, pain, twitching, ants crawling, etc., just like acupuncture and moxibustion, or will show conduction and diffusion along a certain direction and position.
  • the laser treatment device disclosed above can determine the treatment acupoints according to the user's medical information, and receive the user's Qi feedback information and feedback time when treating the acupoints to analyze the Qi parameters, so as to determine the treatment based on the analysis results. Effect or adjustment of treatment plan is conducive to improving treatment effect and efficiency.
  • the laser treatment device described in the present invention can be used in an Internet platform.
  • the Internet platform running on the server is provided with a diagnosis and treatment database, which establishes a diagnosis and treatment file for each acupuncture point.
  • a diagnosis and treatment database which establishes a diagnosis and treatment file for each acupuncture point.
  • there are multiple stores in the Internet platform and each store has at least one laser treatment device described in the present invention. All users who perform laser treatment on any acupuncture point in any store or any laser treatment device in the Internet platform can enjoy the same standard of diagnosis and treatment services and record them in the Internet platform database.
  • the medical information acquired by the information acquisition module 101 can be voice type, image type or text type data input through a voice input device, an image input device or a text input device.
  • voice information dictated by a doctor or dictated by a user can be acquired, and a voice recognition algorithm can be used to identify the text information therein to obtain the medical information of the target user.
  • an image of the user's medical record book can be acquired, and an image recognition algorithm such as an OCR recognition algorithm can be used to identify the text information therein to obtain the medical information of the target user.
  • a doctor or user can directly input the corresponding medical information through a human-computer interaction device such as a keyboard or a handwriting device.
  • the above-mentioned medical information may include one or more of the target user's past medical history information, current symptom description information, historical treatment feedback information, historical diagnosis information, historical treatment suggestion information, historical biometric information, current biometric information and historical laser irradiation parameters, wherein the target user's past medical history information may include one or more of the target user's illness information, consultation information, prescription information and treatment result information in the historical time period.
  • the current symptom description information may be the target user's description of his current pathological symptoms, so as to more accurately determine the acupoints for the treatment.
  • the historical acupoint feedback information is the acupoint feedback information when the target user receives laser treatment in the historical time period.
  • the historical biometric information is the biometric information when the target user receives laser treatment in the historical time period.
  • the historical laser irradiation parameters are the corresponding laser irradiation parameters determined by the target user in the historical time period, or the laser irradiation parameters corresponding to the laser treatment performed by the target user in the historical time period.
  • the acupoint determination module 102 can be a device with computing capabilities, which can directly determine at least one acupoint that needs to be treated based on medical information through a built-in algorithm. It can also be a device with data transmission capabilities, which can transmit medical information to the target server and receive laser irradiation parameters sent by the target server. Specifically, the target server can use a preset diagnosis and treatment strategy for diagnosis to obtain the laser irradiation acupoints and laser irradiation parameters corresponding to the user, and send them to the acupoint determination module 102, and the acupoint determination module 102 then controls the laser emission device to perform laser treatment.
  • the acupoint determination module 102 can be a hardware communication device with communication functions, or a software code integrated in a control chip.
  • the communication method between the acupoint determination module 102 and the target server can be wired communication or wireless communication, wherein wired communication can be carried out through communication optical cables connected to each other, and wireless communication can be carried out through wireless communication electromagnetic waves such as Bluetooth and WIFI.
  • the laser emitting device is a laser emitting device connected to a motion control device, which can emit laser to treat the user's acupoints according to laser irradiation parameters or instructions for laser irradiation of acupoints to achieve an effect similar to acupuncture.
  • the laser irradiation parameters are used to indicate one or more of the irradiation time, irradiation intensity and laser irradiation power density of the intended laser irradiation, wherein the irradiation time may include the duration of a single irradiation, or the total duration of multiple irradiations or the pause duration in between, and the irradiation intensity may be used to indicate the power, wavelength or light intensity of the laser emission.
  • the target server can be provided with a medical platform by means of code to connect with a plurality of diagnosis and treatment terminals, so that the target server can distribute the user's medical information to the corresponding diagnosis and treatment terminals, which will perform diagnosis to obtain corresponding laser irradiation parameters.
  • the diagnosis and treatment terminal can be a terminal with computing capabilities, or a fixed terminal or mobile terminal controlled by medical staff, and the medical staff will perform corresponding diagnosis, thereby realizing the reasonable allocation and digestion of a large number of diagnostic needs to alleviate the shortage of medical resources.
  • a neural network algorithm such as a convolutional neural network may also be provided in the acupoint determination module 102 or the target server, and trained with a training set including medical information and laser irradiation acupoints until convergence to obtain a trained algorithm module.
  • the algorithm module can calculate the most appropriate laser irradiation acupoints when receiving the medical information to achieve the best treatment effect and improve the efficiency of the treatment.
  • the feedback collection module 103 can be a sensor device set on or around the user to collect user feedback information when the target user receives irradiation.
  • the above-mentioned gas feedback information can be used to reflect the user's
  • the acupoints of the user may experience conscious reactions such as soreness, swelling, numbness and heaviness when irradiated, or sensations such as heat, coolness, itching, pain, twitching and tingling, or sensations of conduction and diffusion along a certain direction and location.
  • the acupoints may include at least one of acupoint soreness information, acupoint swelling information, acupoint numbness information, acupoint heaviness information, acupoint heat information, acupoint coolness information, acupoint itching information, acupoint pain information, acupoint twitching information, acupoint tingling information, acupoint specific sensation conduction information and acupoint specific sensation diffusion information.
  • the gas analysis module 104 includes:
  • the De Qi type analysis unit 1041 is used to determine the health status corresponding to at least one laser irradiated acupoint according to the De Qi feedback information.
  • the De Qi type analysis unit 1041 can determine the health status corresponding to a certain acupoint directly according to the De Qi feedback information of the acupoint based on the preset De Qi-acupoint health status correspondence. For example, if the pain at the acupoint is strong, for example, higher than a certain pain threshold, it means that the irradiated acupoint has strong positive Qi, and if the itching at the acupoint is strong, for example, higher than a certain itching threshold, it means that the evil Qi is strong, or if the acupoint has both pain and itching, it indicates that the positive Qi and evil Qi in the acupoint are competing with each other.
  • the gas analysis module 104 includes:
  • the De Qi laser amount analysis unit 1042 is used to determine the laser irradiation amount required to achieve the target De Qi effect corresponding to at least one laser irradiation acupoint according to the De Qi feedback information and the De Qi feedback generation time information.
  • the required laser irradiation amount can be defined as the number of laser photons required to irradiate the target acupuncture point in order to obtain the effect of Qi.
  • the number of laser photons absorbed by the acupuncture point has a cumulative effect, and the laser irradiation amount required for Qi can be calculated by multiplying the laser power density irradiated on the acupuncture point (indicates the amount of energy irradiated by the laser on a unit area of the target material per unit time) by the irradiation time.
  • a mathematical model can also be used to describe the relationship between laser power density, irradiation time and laser irradiation amount required for Qi based on multiple experimental data.
  • the Deqi feedback generation time information includes the time difference between the start time of laser irradiation of the laser irradiation acupoint and the generation time of the Deqi feedback information.
  • the Deqi laser amount analysis unit 1042 determines the specific method of the laser irradiation amount required to achieve the target Deqi effect corresponding to at least one laser irradiation acupoint according to the Deqi feedback information and the Deqi feedback generation time information, including:
  • the target laser irradiation acupoint matches the target Deqi effect
  • the laser irradiation amount required to achieve the target De Qi effect corresponding to the target laser irradiation acupoint is determined based on the time information of the De Qi feedback and the laser power density when the target laser irradiation acupoint is laser irradiated.
  • the amount of laser irradiation required to achieve the target Qi effect can be determined based on the Qi feedback generation time information and the laser power density through a pre-established mathematical relationship model among the Qi feedback generation time, laser power density and laser irradiation amount.
  • the product of the Qi feedback generation time and the laser power density when the target laser irradiation acupoint is laser irradiated can be directly calculated to obtain the amount of laser irradiation required to achieve the target Qi effect corresponding to the target laser irradiation acupoint.
  • multiple experimental data including the Qi feedback generation time, laser power density and laser irradiation amount corresponding to multiple irradiations can be obtained through experiments, and a mathematical relationship analysis model can be established based on these experimental data.
  • a polynomial relationship fitting model and a fitting algorithm can be used to implement fitting analysis to establish a mathematical relationship analysis model, and the above-mentioned laser irradiation amount calculation can be implemented through the mathematical relationship analysis model in the subsequent process.
  • the gas analysis module 104 includes:
  • the Qi comparison and analysis unit 1043 is used to determine the health status corresponding to at least one laser irradiated acupoint according to the comparison result between the laser irradiation amount and the reference irradiation amount.
  • the reference irradiation amount may be a standard laser irradiation amount or an average of multiple laser irradiations of healthy people corresponding to the laser irradiation acupoint, or a single laser irradiation amount or an average of multiple laser irradiations of the target user corresponding to the laser irradiation acupoint in a historical period.
  • the laser irradiation amount required for the acupoint to obtain qi is significantly larger, and the internal organs corresponding to the acupoint may be in a sub-healthy or unhealthy state, or, compared with the laser irradiation amount of the same acupoint last time or several times, the laser irradiation amount required for the acupoint to obtain qi is reduced, indicating that the internal organs corresponding to the acupoint have a better treatment effect, otherwise, there is no effect or the effect is poor.
  • the feedback collection module 103 includes:
  • the key acquisition unit 1031 is used to receive key feedback information of a target user, and determine user feedback information corresponding to at least one laser irradiated acupuncture point according to the key feedback information.
  • the key feedback information is triggered by the target user through different keys on the key device.
  • a remote control device can be set up with A, B, C, D... keys, which respectively represent different De Qi feedback information.
  • A, B, C, D... keys which respectively represent different De Qi feedback information.
  • the target user presses the corresponding key according to the De Qi type to determine the De Qi feedback information.
  • the time difference from the start of irradiation to the target user pressing the corresponding key can be calculated to obtain the laser irradiation time.
  • the feedback collection module 103 includes:
  • the sound collection unit 1032 is used to obtain sound information when the target user is irradiated with laser, and determine user feedback information corresponding to at least one laser irradiated acupuncture point according to the sound information.
  • a voice interaction device can be set up with a voice recognition function.
  • the target acupuncture point produces a De Qi effect
  • the target user speaks the De Qi type to the device to determine the De Qi feedback information.
  • the time difference from the start of irradiation to the target user speaking the voice can be calculated to obtain the laser irradiation time.
  • the feedback collection module 103 includes:
  • the biometric characteristic acquisition unit 1033 is used to obtain biometric characteristic change information of the target user when the target user is irradiated by the laser, and determine user feedback information corresponding to at least one laser irradiated acupuncture point according to the biometric characteristic change information.
  • the biometric feature change information may include one or more of the target user's blood pressure change information, blood oxygen content change information, heart rate change information, pulse change information, and body temperature change information.
  • the biometric feature acquisition unit may acquire the biometric feature change information through an integrated acquisition device disposed on or around the target user, such as a smart watch, smart wristband, or smart probe, or a collection system composed of multiple separate acquisition devices, such as a biometric feature acquisition system including multiple acquisition probes. By such an arrangement, the target user's biometric feature information can be collected in a timely manner.
  • the biometric acquisition unit 1033 can use the built-in neural network algorithm to directly determine the Qi feedback information through the biometric change information.
  • a data training set of Qi feedback information types corresponding to different biometric change information can be collected in advance, and the neural network model can be trained with the data training set to obtain a trained algorithm model.
  • the algorithm model can be used to directly determine the Qi feedback information based on the biometric change information.
  • the device further includes:
  • the acupoint analysis module is used to determine the acupoint to be treated of the target user according to the Qi parameters corresponding to at least one laser irradiated acupoint of the target user.
  • the acupuncture points to be treated are used to continue receiving laser treatment in subsequent treatments.
  • the specific manner in which the acupoint analysis module determines the acupoints to be treated of the target user includes:
  • the acupuncture points with unhealthy health status among all the laser irradiated acupuncture points are determined as the acupuncture points to be treated for the target user.
  • the Qi analysis module 104 can determine the acupoints of the target user whose health status is unhealthy or sub-healthy or the acupoints with the same acupoint nature among all the laser irradiated acupoints of the target user according to the Qi parameters of the target user, thereby obtaining the acupoints to be treated.
  • laser can be emitted to irradiate all the determined laser irradiation acupoints one by one, and each acupoint is irradiated until the user generates user feedback, or is forcibly terminated when there is no feedback information within a certain period of time.
  • the user feedback information corresponding to the acupoints collected in this round of irradiation is analyzed to select acupoints in sub-healthy or unhealthy states, such as acupoints with itchy, painful and itchy feedback, or no qi feedback, or acupoints with a large amount of laser irradiation required for qi, or based on the above acupoints, other acupoints with the same properties as other meridians are matched to obtain the acupoints to be treated, and the above selected acupoints are irradiated cyclically within a unit time.
  • acupoints in sub-healthy or unhealthy states such as acupoints with itchy, painful and itchy feedback, or no qi feedback, or acupoints with a large amount of laser irradiation required for qi, or based on the above acupoints, other acupoints with the same properties as other meridians are matched to obtain the a
  • the device further includes:
  • the parameter analysis module is used to determine the laser power density corresponding to each target acupoint when irradiating a new acupoint according to the laser irradiation amounts corresponding to multiple target acupoints corresponding to the current irradiation of the target user.
  • the parameter analysis module determines the specific manner in which the laser power density corresponding to each target acupoint when the new acupoint is irradiated, including:
  • the laser power density corresponding to each target acupoint when the new acupoint is irradiated is determined, so that the time difference between the laser irradiation times corresponding to any two target acupoints is less than a preset time difference threshold;
  • the time difference data between the time information of the Qi feedback generated by the target acupoint and the preset time reference value is calculated, and the laser power density corresponding to the target acupoint when the new acupoint is irradiated is determined, so that the time difference between the laser irradiation time corresponding to any target acupoint and the time reference value is less than the time difference data.
  • the acupoint data of the current round of irradiation can be analyzed.
  • the laser irradiation power density can be increased in the next round of irradiation to reduce the irradiation time required to obtain the Qi effect.
  • the laser irradiation power density can be reduced in the next round of irradiation to increase the irradiation time required to obtain the Qi effect.
  • the time required for each acupoint to obtain the Qi effect in the next round of irradiation can be close.
  • the above-mentioned improvements can increase the laser irradiation power density in the next round of irradiation for the acupoints that have not obtained the Qi effect, so as to strive to make the target acupoints obtain the Qi effect and improve the treatment effect.
  • the laser irradiation power density can be increased in the next round of irradiation to reduce the irradiation time required for the target acupoints to obtain the Qi effect. This can improve the efficiency of the device in treating acupoints per unit time, thereby taking into account both effect and efficiency and improving the final treatment effect.
  • the laser irradiation power density can also be reduced for acupuncture points that take a significantly shorter time to obtain the De Qi effect (far less than the above-mentioned preset time reference value). This can reduce the irradiation intensity of the acupuncture points that may have caused the target user to feel uncomfortable, allowing the target user to feel comfortable while obtaining the De Qi feeling, thereby improving the target user's psychological acceptance and helping to improve the treatment effect.
  • the laser irradiation power density can be increased for acupuncture points that take a significantly longer time to obtain the De Qi effect (far greater than the above-mentioned preset time reference value). This can increase the irradiation intensity of the acupuncture points where the target user does not feel the treatment, allowing the target user to obtain the De Qi feeling faster, which is helpful to improve the treatment effect.
  • the device further includes:
  • the data storage module is used to form a medical file corresponding to the target user with one or more of medical information, Qi feedback information, health status of acupoints, laser irradiation amount and laser power density, and store the medical file, and/or send the medical file to the target server for storage.
  • the data storage module may be a device with communication function or hardware or software code with storage function.
  • the above-mentioned treatment device described in the embodiment of the present invention can utilize the characteristics of the laser with stable light source and constant power, and the laser irradiates the acupuncture points.
  • the acupuncture points will accumulate laser irradiation over time.
  • the characteristics of acupuncture Qi effect will be produced.
  • diagnostic conclusions and treatment suggestions can be drawn to improve the treatment effect.
  • the connection between the acupuncture points and the Qi effect can be found, thereby finding the corresponding relationship between the acupuncture points and the disease, and achieving the purpose of diagnosing the disease.
  • the diagnostic conclusion more targeted or better therapeutic acupuncture points are selected, and the target acupuncture points are made to produce the Qi effect through laser irradiation to improve the treatment effect.
  • the laser treatment system may include a server 20, and multiple laser treatment devices 10 connected to the server and multiple laser emitting devices 30 connected to the laser treatment device 10, wherein the server 20 may be a local server or a cloud server, and the connection method between the multiple laser treatment devices 10 and the server 20 may be a wired connection method or a wireless connection method.
  • the server 20 can be used to receive medical information uploaded by the target user and transmit it to at least one laser treatment device 10.
  • the laser treatment device 10 described in the present invention can be used on an Internet platform.
  • the Internet platform running on the server 20 is provided with a diagnosis and treatment database, which establishes a diagnosis and treatment file for each acupoint.
  • a diagnosis and treatment database which establishes a diagnosis and treatment file for each acupoint.
  • each store has at least one laser treatment device described in the present invention. All users on the Internet Any store or laser treatment device on the platform that performs laser treatment on any acupoint will enjoy the same standard of diagnosis and treatment services and will be recorded in the Internet platform database.
  • the laser treatment device 10 may include an information acquisition module 101, an acupoint determination module 102, a feedback collection module 103 and a Qi analysis module 104, wherein the information acquisition module 101 is used to obtain the medical information of the target treatment user, and the acupoint determination module 102 is used to determine at least one laser irradiation acupoint corresponding to the target user based on the target user's medical information, wherein the laser irradiation acupoint is used to subsequently guide the laser emitting device to irradiate it to achieve the acupuncture treatment effect.
  • the feedback collection module 103 is used to obtain user feedback information corresponding to at least one laser irradiation acupoint when laser irradiating at least one laser irradiation acupoint, and optionally, the user feedback information includes at least one of Qi feedback information and Qi feedback generation time information.
  • the laser emitting device can emit laser to irradiate the laser irradiation acupuncture points one by one.
  • the irradiation of each acupuncture point ends when user feedback information is received, or it is forcibly ended when there is no user feedback information within a certain period of time.
  • Each user feedback information is uploaded to the central server.
  • the information collected during the irradiation can be compared and analyzed with the database information in the central server to obtain the current diagnosis conclusion, treatment effect evaluation and next treatment recommendation.
  • the De Qi analysis module 104 is used to determine the De Qi parameters corresponding to at least one laser irradiated acupoint according to user feedback information.
  • the laser treatment system disclosed above can determine the treatment acupoints according to the user's medical information, and receive the user's Qi feedback information and feedback time when treating the acupoints to analyze the Qi parameters, so as to determine the treatment effect or adjust the treatment plan based on the analysis results, which is conducive to improving the treatment effect and treatment efficiency.
  • the medical information acquired by the information acquisition module 101 can be voice-type, image-type or text-type data input through a voice input device, an image input device or a text input device.
  • voice information dictated by a doctor or dictated by a user can be acquired, and a voice recognition algorithm can be used to identify the text information therein to obtain the medical information of the target user.
  • an image of a user's medical record book can be acquired, and an image recognition algorithm such as an OCR recognition algorithm can be used to identify the text information therein to obtain the medical information of the target user.
  • a doctor or user can directly input the corresponding medical information through a human-computer interaction device such as a keyboard or a handwriting device.
  • the above-mentioned medical information may include one or more of the target user's past medical history information, current symptom description information, historical treatment feedback information, historical diagnosis information, historical treatment suggestion information, historical biometric information, current biometric information and historical laser irradiation parameters, wherein the target user's past medical history information may include one or more of the target user's illness information, consultation information, prescription information and treatment result information in the historical time period.
  • the current symptom description information may be the target user's description of his current pathological symptoms, so as to more accurately determine the acupoints for the treatment.
  • the historical acupoint feedback information is the acupoint feedback information when the target user receives laser treatment in the historical time period.
  • the historical biometric information is the biometric information when the target user receives laser treatment in the historical time period.
  • the historical laser irradiation parameters are the corresponding laser irradiation parameters determined by the target user in the historical time period, or the laser irradiation parameters corresponding to the laser treatment performed by the target user in the historical time period.
  • the acupoint determination module 102 can be a device with computing capabilities, which can directly determine at least one acupoint that needs to be treated based on medical information through a built-in algorithm. It can also be a device with data transmission capabilities, which can transmit medical information to the target server and receive laser irradiation parameters sent by the target server. Specifically, the target server can use a preset diagnosis and treatment strategy for diagnosis to obtain the laser irradiation acupoints and laser irradiation parameters corresponding to the user, and send them to the acupoint determination module 102, and the acupoint determination module 102 then controls the laser emission device to perform laser treatment.
  • the acupoint determination module 102 can be a hardware communication device with communication functions, or a software code integrated in a control chip.
  • the communication method between the acupoint determination module 102 and the target server can be wired communication or wireless communication, wherein wired communication can be carried out through communication optical cables connected to each other, and wireless communication can be carried out through wireless communication electromagnetic waves such as Bluetooth and WIFI.
  • the laser emitting device is a laser emitting device connected to a motion control device, which can emit laser to treat the user's acupoints according to laser irradiation parameters or instructions for laser irradiation of acupoints to achieve an effect similar to acupuncture.
  • the laser irradiation parameters are used to indicate the irradiation time, irradiation intensity and laser irradiation power to be performed.
  • the target server can be provided with a medical platform by means of code to connect with a plurality of diagnosis and treatment terminals, so that the target server can distribute the user's medical information to the corresponding diagnosis and treatment terminals, which will perform diagnosis to obtain corresponding laser irradiation parameters.
  • the diagnosis and treatment terminal can be a terminal with computing capabilities, or a fixed terminal or mobile terminal controlled by medical staff, and the medical staff will perform corresponding diagnosis, thereby realizing the reasonable allocation and digestion of a large number of diagnostic needs to alleviate the shortage of medical resources.
  • a neural network algorithm such as a convolutional neural network may also be provided in the acupoint determination module 102 or the target server, and trained with a training set including medical information and laser irradiation acupoints until convergence to obtain a trained algorithm module.
  • the algorithm module can calculate the most appropriate laser irradiation acupoints when receiving the medical information to achieve the best treatment effect and improve the efficiency of the treatment.
  • the feedback collection module 103 can be a sensing device set on or around the user to collect user feedback information of the target user when receiving irradiation.
  • the above-mentioned qi feedback information can be used to reflect the conscious reactions of the user's acupoints when receiving irradiation, including soreness, swelling, numbness, heaviness, etc., or heat, coolness, itching, pain, twitching, ant crawling, etc., or present a feeling of conduction and diffusion along a certain direction and position.
  • acupoint soreness information may include at least one of acupoint soreness information, acupoint swelling information, acupoint numbness information, acupoint heaviness information, acupoint heat information, acupoint coolness information, acupoint itching information, acupoint pain information, acupoint twitching information, acupoint ant crawling information, acupoint specific sensation conduction information and acupoint specific sensation diffusion information.
  • the gas analysis module 104 includes:
  • the De Qi type analysis unit 1041 is used to determine the health status corresponding to at least one laser irradiated acupoint according to the De Qi feedback information.
  • the De Qi type analysis unit 1041 can determine the health status corresponding to a certain acupoint directly according to the De Qi feedback information of the acupoint based on the preset De Qi-acupoint health status correspondence. For example, if the pain at the acupoint is strong, for example, higher than a certain pain threshold, it means that the irradiated acupoint has strong positive Qi, and if the itching at the acupoint is strong, for example, higher than a certain itching threshold, it means that the evil Qi is strong, or if the acupoint has both pain and itching, it indicates that the positive Qi and evil Qi in the acupoint are competing with each other.
  • the gas analysis module 104 includes:
  • the De Qi laser amount analysis unit 1042 is used to determine the laser irradiation amount required to achieve the target De Qi effect corresponding to at least one laser irradiation acupoint according to the De Qi feedback information and the De Qi feedback generation time information.
  • the required laser irradiation amount can be defined as the number of laser photons required to irradiate the target acupuncture point in order to obtain the effect of Qi.
  • the number of laser photons absorbed by the acupuncture point has a cumulative effect, and the laser irradiation amount required for Qi can be calculated by multiplying the laser power density irradiated on the acupuncture point (indicates the amount of energy irradiated by the laser on a unit area of the target material per unit time) by the irradiation time.
  • a mathematical model can also be used to describe the relationship between laser power density, irradiation time and laser irradiation amount required for Qi based on multiple experimental data.
  • the Deqi feedback generation time information includes the time difference between the start time of laser irradiation of the laser irradiation acupoint and the generation time of the Deqi feedback information.
  • the Deqi laser amount analysis unit 1042 determines the specific method of the laser irradiation amount required to achieve the target Deqi effect corresponding to at least one laser irradiation acupoint according to the Deqi feedback information and the Deqi feedback generation time information, including:
  • the target laser irradiation acupoint matches the target Deqi effect
  • the laser irradiation amount required to achieve the target De Qi effect corresponding to the target laser irradiation acupoint is determined based on the time information of the De Qi feedback and the laser power density when the target laser irradiation acupoint is laser irradiated.
  • the mathematical relationship model between the Deqi feedback generation time, laser power density and laser irradiation amount can be pre-established. According to the Deqi feedback generation time information and the laser power density, the laser irradiation amount required to achieve the target Deqi effect can be determined. In a possible case, the product of the Deqi feedback generation time and the laser power density when the target laser irradiation acupoint is laser irradiated can be directly calculated to obtain the target Deqi effect corresponding to the target laser irradiation acupoint.
  • multiple experimental data including the gas feedback generation time, laser power density and laser irradiation amount corresponding to multiple irradiations can be obtained through experiments, and a mathematical relationship analysis model can be established based on these experimental data.
  • a polynomial relationship fitting model and a fitting algorithm can be used to implement fitting analysis to establish a mathematical relationship analysis model, and then the mathematical relationship analysis model can be used to calculate the above-mentioned laser irradiation amount.
  • the gas analysis module 104 includes:
  • the Qi comparison and analysis unit 1043 is used to determine the health status corresponding to at least one laser irradiated acupoint according to the comparison result between the laser irradiation amount and the reference irradiation amount.
  • the reference irradiation amount can be a standard laser irradiation amount for healthy people or an average of multiple laser irradiations corresponding to the laser irradiation acupoint, or a single laser irradiation amount for the target user corresponding to the laser irradiation acupoint in a historical period, or an average of multiple laser irradiations.
  • the laser irradiation amount required for the acupoint to obtain qi is significantly larger, and the internal organs corresponding to the acupoint may be in a sub-healthy or unhealthy state, or, compared with the laser irradiation amount of the same acupoint last time or several times, the laser irradiation amount required for the acupoint to obtain qi is reduced, indicating that the internal organs corresponding to the acupoint have a better treatment effect, otherwise, there is no effect or the effect is poor.
  • the feedback collection module 103 includes:
  • the key acquisition unit 1031 is used to receive key feedback information of a target user, and determine user feedback information corresponding to at least one laser irradiated acupuncture point according to the key feedback information.
  • the key feedback information is triggered by the target user through different keys on the key device.
  • a remote control device can be set up with A, B, C, D... keys, which respectively represent different De Qi feedback information.
  • A, B, C, D... keys which respectively represent different De Qi feedback information.
  • the target user presses the corresponding key according to the De Qi type to determine the De Qi feedback information.
  • the time difference from the start of irradiation to the target user pressing the corresponding key can be calculated to obtain the laser irradiation time.
  • the feedback collection module 103 includes:
  • the sound collection unit 1032 is used to obtain sound information when the target user is irradiated with laser, and determine user feedback information corresponding to at least one laser irradiated acupuncture point according to the sound information.
  • a voice interaction device can be set up with a voice recognition function.
  • the target acupuncture point produces a De Qi effect
  • the target user speaks the De Qi type to the device to determine the De Qi feedback information.
  • the time difference from the start of irradiation to the target user speaking the voice can be calculated to obtain the laser irradiation time.
  • the feedback collection module 103 includes:
  • the biometric characteristic acquisition unit 1033 is used to obtain biometric characteristic change information of the target user when the target user is irradiated by the laser, and determine user feedback information corresponding to at least one laser irradiated acupuncture point according to the biometric characteristic change information.
  • the biometric feature change information may include one or more of the target user's blood pressure change information, blood oxygen content change information, heart rate change information, pulse change information, and body temperature change information.
  • the biometric feature acquisition unit may acquire the biometric feature change information through an integrated acquisition device disposed on or around the target user, such as a smart watch, smart wristband, or smart probe, or a collection system composed of multiple separate acquisition devices, such as a biometric feature acquisition system including multiple acquisition probes. By such an arrangement, the target user's biometric feature information can be collected in a timely manner.
  • the biometric acquisition unit 1033 can use the built-in neural network algorithm to directly determine the Qi feedback information through the biometric change information.
  • a data training set of Qi feedback information types corresponding to different biometric change information can be collected in advance, and the neural network model can be trained with the data training set to obtain a trained algorithm model.
  • the algorithm model can be used to directly determine the Qi feedback information based on the biometric change information.
  • the device further includes:
  • the acupoint analysis module is used to determine the acupoint to be treated of the target user according to the Qi parameters corresponding to at least one laser irradiated acupoint of the target user.
  • the acupuncture points to be treated are used to continue receiving laser treatment in subsequent treatments.
  • the specific manner in which the acupoint analysis module determines the acupoint to be treated of the target user includes:
  • the acupuncture points with unhealthy health status among all the laser irradiated acupuncture points are determined as the acupuncture points to be treated for the target user.
  • the Qi analysis module 104 can determine the acupoints of the target user whose health status is unhealthy or sub-healthy or the acupoints with the same acupoint nature among all the laser irradiated acupoints of the target user according to the Qi parameters of the target user, thereby obtaining the acupoints to be treated.
  • laser can be emitted to irradiate all the determined laser irradiation acupoints one by one, and each acupoint is irradiated until the user generates user feedback, or is forcibly terminated when there is no feedback information within a certain period of time.
  • the user feedback information corresponding to the acupoints collected in this round of irradiation is analyzed to select acupoints in sub-healthy or unhealthy states, such as acupoints with itchy, painful and itchy feedback, or no qi feedback, or acupoints with a large amount of laser irradiation required for qi, or based on the above acupoints, other acupoints with the same properties as other meridians are matched to obtain the acupoints to be treated, and the above selected acupoints are irradiated cyclically within a unit time.
  • acupoints in sub-healthy or unhealthy states such as acupoints with itchy, painful and itchy feedback, or no qi feedback, or acupoints with a large amount of laser irradiation required for qi, or based on the above acupoints, other acupoints with the same properties as other meridians are matched to obtain the a
  • the device further includes:
  • the parameter analysis module is used to determine the laser power density corresponding to each target acupoint during the new acupoint irradiation according to the laser irradiation amounts corresponding to the multiple target acupoints corresponding to the current irradiation of the target user.
  • the parameter analysis module determines the specific manner in which the laser power density corresponding to each target acupoint when the new acupoint is irradiated, including:
  • the laser power density corresponding to each target acupoint when the new acupoint is irradiated is determined, so that the time difference between the laser irradiation times corresponding to any two target acupoints is less than a preset time difference threshold;
  • the time difference data between the time information of the Qi feedback generated by the target acupoint and the preset time reference value is calculated, and the laser power density corresponding to the target acupoint when the new acupoint is irradiated is determined, so that the time difference between the laser irradiation time corresponding to any target acupoint and the time reference value is less than the time difference data.
  • the acupoint data of the current round of irradiation can be analyzed.
  • the laser irradiation power density can be increased in the next round of irradiation to reduce the irradiation time required to obtain the Qi effect.
  • the laser irradiation power density can be reduced in the next round of irradiation to increase the irradiation time required to obtain the Qi effect.
  • the time required for each acupoint to obtain the Qi effect in the next round of irradiation can be close.
  • the above-mentioned improvements can increase the laser irradiation power density in the next round of irradiation for the acupoints that have not obtained the Qi effect, so as to strive to make the target acupoints obtain the Qi effect and improve the treatment effect.
  • the laser irradiation power density can be increased in the next round of irradiation to reduce the irradiation time required for the target acupoints to obtain the Qi effect. This can improve the efficiency of the device in treating acupoints per unit time, thereby taking into account both effect and efficiency and improving the final treatment effect.
  • the laser irradiation power density can also be reduced for acupuncture points that take a significantly shorter time to obtain the De Qi effect (far less than the above-mentioned preset time reference value). This can reduce the irradiation intensity of the acupuncture points that may have caused the target user to feel uncomfortable, allowing the target user to feel comfortable while obtaining the De Qi feeling, thereby improving the target user's psychological acceptance and helping to improve the treatment effect.
  • the laser irradiation power density can be increased for acupuncture points that take a significantly longer time to obtain the De Qi effect (far greater than the above-mentioned preset time reference value). This can increase the irradiation intensity of the acupuncture points where the target user does not feel the treatment, allowing the target user to obtain the De Qi feeling faster, which is helpful to improve the treatment effect.
  • the device further includes:
  • the data storage module is used to form a medical file corresponding to the target user with one or more of medical information, Qi feedback information, health status of acupoints, laser irradiation amount and laser power density, and store the medical file, and/or send the medical file to the target server for storage.
  • the data storage module may be a device with communication function or hardware or software code with storage function.
  • the above-mentioned treatment system described in the embodiment of the present invention can utilize the characteristics of stable light source and constant power of laser, and when the laser is irradiated on the acupoint, the acupoint will accumulate laser irradiation over time. When the acupoint absorbs a certain amount of laser irradiation, it will produce the characteristics of acupuncture Qi effect. By quantitatively analyzing the Qi effect, it can be concluded that Diagnostic conclusions and treatment suggestions improve the treatment effect.
  • the connection between the acupoints and the Deqi effect can be found, thereby finding the corresponding relationship between the acupoints and the disease, and achieving the purpose of diagnosing the disease.
  • the diagnostic conclusions more targeted or better therapeutic acupoints are selected, and the target acupoints are irradiated with laser to produce the Deqi effect, thereby improving the treatment effect.
  • modules described as separate components may or may not be physically separated, and the components displayed as modules may or may not be physical modules, that is, they may be located in one place, or they may be distributed on multiple network modules. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Those of ordinary skill in the art may understand and implement it without paying creative labor.
  • each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware.
  • the above technical solution can be essentially or partly contributed to the prior art in the form of a software product, which can be stored in a computer-readable storage medium, and the storage medium includes a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electronically erasable rewritable read-only memory (EEPROM), a compact disc (CD-ROM) or other optical disc storage, a magnetic disk storage, a magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.
  • ROM read-only memory
  • RAM random access memory
  • PROM programmable read-only memory
  • EPROM erasable programmable read-only memory
  • OTPROM one-time programmable read-

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Abstract

本发明公开了一种基于得气分析的激光治疗装置及系统,该装置包括:信息获取模块,用于获取目标治疗用户的医疗信息;穴位确定模块,用于根据所述目标用户的医疗信息,确定出所述目标用户对应的至少一个激光照射穴位;反馈采集模块,用于在对所述激光照射穴位进行激光照射时,获取至少一个所述激光照射穴位对应的用户反馈信息;所述用户反馈信息包括得气反馈信息和得气反馈产生时间信息中的至少一种;得气分析模块,用于根据所述用户反馈信息,确定至少一个所述激光照射穴位对应的得气参数。可见,本发明能够根据用户的医疗信息确定治疗穴位,并在治疗穴位时接收用户的得气反馈信息和反馈时间分析出得气参数,从而能够提高治疗效果和治疗效率。

Description

基于得气分析的激光治疗装置及系统 技术领域
本发明涉及医疗技术领域,尤其涉及一种基于得气分析的激光治疗装置及系统。
背景技术
针对穴位的针灸治疗,经现有的中医理论以及实验证明,具备良好的疗效,能够对多种疾病的症状进行改善,因此也日益受到医疗市场的青睐。在针灸理论中,“得气”理论是重要的一环,其在针灸临床操作过程中具有十分重要的地位,是针灸治疗产生作用的关键,是判断经气盛衰、取穴准确及疾病预后、针刺疗效的依据。
但现有的穴位治疗技术,没有考虑到结合用户在治疗时的得气反馈信息和得气反馈产生时间信息,以进一步分析出用户的得气参数,因此其治疗理念落后,无法针对性地提高治疗效果,没有真正做到对症治疗,灵活治疗,精准治疗,可见现有技术存在缺陷,亟待解决。
发明内容
本发明所要解决的技术问题在于,提供一种基于得气分析的激光治疗装置及系统,能够根据用户的医疗信息确定治疗穴位,并在治疗穴位时接收用户的得气反馈信息和反馈时间分析出得气参数,从而能够基于分析结果确定治疗效果或调整治疗方案,有利于提高治疗效果和治疗效率。
为了解决上述技术问题,本发明第一方面公开了一种基于得气分析的激光治疗装置,所述装置包括:
信息获取模块,用于获取目标治疗用户的医疗信息;
穴位确定模块,用于根据所述目标用户的医疗信息,确定出所述目标用户对应的至少一个激光照射穴位;
反馈采集模块,用于在对所述至少一个激光照射穴位进行激光照射时,获取至少一个所述激光照射穴位对应的用户反馈信息;所述用户反馈信息包括得气反馈信息和得气反馈产生时间信息中的至少一种;
得气分析模块,用于根据所述用户反馈信息,确定至少一个所述激光照射穴位对应的得气参数。
作为一种可选的实施方式,在本发明第一方面中,所述医疗信息包括所述目标用户的过往病史信息、当前症状描述信息、历史治疗反馈信息、历史诊断信息、历史治疗建议信息、历史生物特征信息、当前生物特征信息和历史激光照射参数中的一种或多种;和/或,所述得气反馈信息包括穴位酸感信息、穴位胀感信息、穴位麻感信息、穴位重感信息、穴位热感信息、穴位凉感信息、穴位痒感信息、穴位痛感信息、穴位抽搐感信息、穴位蚁行感信息、穴位特定感觉传导信息和穴位特定感觉扩散信息中的至少一种。
作为一种可选的实施方式,在本发明第一方面中,所述得气分析模块包括:
得气类型分析单元,用于根据所述得气反馈信息,确定至少一个所述激光照射穴位对应的健康状态;
和/或,
得气激光量分析单元,用于根据所述得气反馈信息和得气反馈产生时间信息,确定至少一个所述激光照射穴位对应的达到目标得气效果需要的激光照射量;
和/或,
得气比较分析单元,用于根据所述激光照射量与参考照射量之间的比较结果,确定至少一个所述激光照射穴位对应的健康状态。
作为一种可选的实施方式,在本发明第一方面中,所述得气反馈产生时间信息包括对所述激光照射穴位开始进行激光照射的开始时间到所述得气反馈信息的产生时间之间的时间差;所述得气激光量分析单元根据所述得气反馈信息和得气反馈产生时间信息,确定至少一个所述激光照射穴位对应的达到目标得气效果需要的激光照射量的具体方式,包括:
根据所述得气反馈信息,判断目标激光照射穴位是否与所述目标得气效果相匹配;
若判断结果为是,根据所述得气反馈产生时间信息,以及对所述目标激光照射穴位进行激光照射时的激光功率密度,确定所述目标激光照射穴位对应的达到目标得气效果需要的激光照射量。
作为一种可选的实施方式,在本发明第一方面中,所述装置还包括:
穴位分析模块,用于根据所述目标用户的至少一个所述激光照射穴位对应的得气参数,确定所述目标用户的待治疗穴位;所述待治疗穴位用于在后续的治疗中继续接受激光治疗;
和/或,
参数分析模块,用于在进行新的穴位照射时,根据所述目标用户本次照射对应的多个目标穴位分别对应的所述激光照射量,确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度。
作为一种可选的实施方式,在本发明第一方面中,所述穴位分析模块确定所述目标用户的待治疗穴位的具体方式,包括:
根据所述目标用户的至少一个所述激光照射穴位对应的得气参数,确定所述目标用户的所有所述激光照射穴位中的健康状态为不健康的穴位;
将所有所述激光照射穴位中的健康状态为不健康的穴位,确定为所述目标用户的所述待治疗穴位。
作为一种可选的实施方式,在本发明第一方面中,所述参数分析模块确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度的具体方式,包括:
对于多个所述目标穴位,获取每一所述目标穴位对应的所述激光照射量;
根据所有所述目标穴位的激光照射量,确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度,以使得任意两个所述目标穴位对应的激光照射时间之间的时间差小于预设的时间差阈值;
和/或,
对于多个所述目标穴位,获取每一所述目标穴位对应的所述得气反馈产生时间信息;
对于任一所述目标穴位,计算该目标穴位的得气反馈产生时间信息与预设的时间参考值之间的时间差数据,确定该目标穴位在所述新的穴位照射时对应的激光功率密度,以使得任意一个所述目标穴位对应的激光照射时间与所述时间参考值之间的时间差小于所述时间差数据。
作为一种可选的实施方式,在本发明第一方面中,所述反馈采集模块包括:
按键采集单元,用于接收所述目标用户的按键反馈信息,根据所述按键反馈信息确定至少一个所述激光照射穴位对应的用户反馈信息;所述按键反馈信息为所述目标用户通过按键设备上的不同按键触发的;
和/或,
声音采集单元,用于获取所述目标用户被激光照射时的声音信息,根据所述声音信息确定至少一个所述激光照射穴位对应的用户反馈信息;
和/或,
生物特征采集单元,用于获取所述目标用户被激光照射时的生物特征变化信息,根据所述生物特征变化信息确定至少一个所述激光照射穴位对应的用户反馈信息。
作为一种可选的实施方式,在本发明第一方面中,所述装置还包括:
数据储存模块,用于将所述医疗信息、所述得气反馈信息、所述穴位的健康状态、所述激光照射量和所述激光功率密度中的一种或多种组成所述目标用户对应的医疗档案,并将所 述医疗档案进行储存,和/或,将所述医疗档案发送至目标服务器进行储存。
本发明第二方面公开了一种基于得气分析的激光治疗系统,所述系统包括:
服务器;
连接至所述服务器的激光治疗装置;
以及,连接至所述激光治疗装置的激光发射设备。
作为一种可选的实施方式,在本发明第二方面中,所述装置包括:
信息获取模块,用于获取目标治疗用户的医疗信息;
穴位确定模块,用于根据所述目标用户的医疗信息,确定出所述目标用户对应的至少一个激光照射穴位;
反馈采集模块,用于在对所述至少一个激光照射穴位进行激光照射时,获取至少一个所述激光照射穴位对应的用户反馈信息;所述用户反馈信息包括得气反馈信息和得气反馈产生时间信息中的至少一种;
得气分析模块,用于根据所述用户反馈信息,确定至少一个所述激光照射穴位对应的得气参数。
作为一种可选的实施方式,在本发明第二方面中,所述医疗信息包括所述目标用户的过往病史信息、当前症状描述信息、历史治疗反馈信息、历史诊断信息、历史治疗建议信息、历史生物特征信息、当前生物特征信息和历史激光照射参数中的一种或多种;和/或,所述得气反馈信息包括穴位酸感信息、穴位胀感信息、穴位麻感信息、穴位重感信息、穴位热感信息、穴位凉感信息、穴位痒感信息、穴位痛感信息、穴位抽搐感信息、穴位蚁行感信息、穴位特定感觉传导信息和穴位特定感觉扩散信息中的至少一种。
作为一种可选的实施方式,在本发明第二方面中,所述得气分析模块包括:
得气类型分析单元,用于根据所述得气反馈信息,确定至少一个所述激光照射穴位对应的健康状态;
和/或,
得气激光量分析单元,用于根据所述得气反馈信息和得气反馈产生时间信息,确定至少一个所述激光照射穴位对应的达到目标得气效果需要的激光照射量;
和/或,
得气比较分析单元,用于根据所述激光照射量与参考照射量之间的比较结果,确定至少一个所述激光照射穴位对应的健康状态。
作为一种可选的实施方式,在本发明第二方面中,所述得气反馈产生时间信息包括对所述激光照射穴位开始进行激光照射的开始时间到所述得气反馈信息的产生时间之间的时间差;所述得气激光量分析单元根据所述得气反馈信息和得气反馈产生时间信息,确定至少一个所述激光照射穴位对应的达到目标得气效果需要的激光照射量的具体方式,包括:
根据所述得气反馈信息,判断目标激光照射穴位是否与所述目标得气效果相匹配;
若判断结果为是,根据所述得气反馈产生时间信息,以及对所述目标激光照射穴位进行激光照射时的激光功率密度,确定所述目标激光照射穴位对应的达到目标得气效果需要的激光照射量。
作为一种可选的实施方式,在本发明第二方面中,所述装置还包括:
穴位分析模块,用于根据所述目标用户的至少一个所述激光照射穴位对应的得气参数,确定所述目标用户的待治疗穴位;所述待治疗穴位用于在后续的治疗中继续接受激光治疗;
和/或,
参数分析模块,用于在进行新的穴位照射时,根据所述目标用户本次照射对应的多个目标穴位分别对应的所述激光照射量,确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度。
作为一种可选的实施方式,在本发明第二方面中,所述穴位分析模块确定所述目标用户的待治疗穴位的具体方式,包括:
根据所述目标用户的至少一个所述激光照射穴位对应的得气参数,确定所述目标用户的所有所述激光照射穴位中的健康状态为不健康的穴位;
将所有所述激光照射穴位中的健康状态为不健康的穴位,确定为所述目标用户的所述待治疗穴位。
作为一种可选的实施方式,在本发明第二方面中,所述参数分析模块确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度的具体方式,包括:
对于多个所述目标穴位,获取每一所述目标穴位对应的所述激光照射量;
根据所有所述目标穴位的激光照射量,确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度,以使得任意两个所述目标穴位对应的激光照射时间之间的时间差小于预设的时间差阈值;
和/或,
对于多个所述目标穴位,获取每一所述目标穴位对应的所述得气反馈产生时间信息;
对于任一所述目标穴位,计算该目标穴位的得气反馈产生时间信息与预设的时间参考值之间的时间差数据,确定该目标穴位在所述新的穴位照射时对应的激光功率密度,以使得任意一个所述目标穴位对应的激光照射时间与所述时间参考值之间的时间差小于所述时间差数据。
作为一种可选的实施方式,在本发明第二方面中,所述反馈采集模块包括:
按键采集单元,用于接收所述目标用户的按键反馈信息,根据所述按键反馈信息确定至少一个所述激光照射穴位对应的用户反馈信息;所述按键反馈信息为所述目标用户通过按键设备上的不同按键触发的;
和/或,
声音采集单元,用于获取所述目标用户被激光照射时的声音信息,根据所述声音信息确定至少一个所述激光照射穴位对应的用户反馈信息;
和/或,
生物特征采集单元,用于获取所述目标用户被激光照射时的生物特征变化信息,根据所述生物特征变化信息确定至少一个所述激光照射穴位对应的用户反馈信息。
作为一种可选的实施方式,在本发明第二方面中,所述装置还包括:
数据储存模块,用于将所述医疗信息、所述得气反馈信息、所述穴位的健康状态、所述激光照射量和所述激光功率密度中的一种或多种组成所述目标用户对应的医疗档案,并将所述医疗档案进行储存,和/或,将所述医疗档案发送至目标服务器进行储存。
与现有技术相比,本发明实施例具有以下有益效果:
本发明实施例公开了一种基于得气分析的激光治疗装置,所述装置包括:信息获取模块,用于获取目标治疗用户的医疗信息;穴位确定模块,用于根据所述目标用户的医疗信息,确定出所述目标用户对应的至少一个激光照射穴位;反馈采集模块,用于在对所述至少一个激光照射穴位进行激光照射时,获取至少一个所述激光照射穴位对应的用户反馈信息;所述用户反馈信息包括得气反馈信息和得气反馈产生时间信息中的至少一种;得气分析模块,用于根据所述用户反馈信息,确定至少一个所述激光照射穴位对应的得气参数。可见,本发明能够根据用户的医疗信息确定治疗穴位,并在治疗穴位时接收用户的得气反馈信息和反馈时间分析出得气参数,从而能够基于分析结果确定治疗效果或调整治疗方案,有利于提高治疗效果和治疗效率。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例公开的一种基于得气分析的激光治疗装置的结构示意图;
图2是本发明实施例公开的得气分析模块104的多种可能的结构示意图;
图3是本发明实施例公开的反馈采集模块103的多种可能的结构示意图;
图4是本发明实施例公开的一种基于得气分析的激光治疗系统的结构示意图。
具体实施方式
为了使本技术领域的人员更好地理解本发明方案,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、装置、产品或端没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或端固有的其他步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本发明的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
在介绍本发明的具体实施方式前,先对本发明涉及的主要背景技术进行简要的阐述,本发明所述的“得气”,古称“气至”,近称“针感”,是指针灸设备如毫针刺入腧穴一定深度后,施以提插或捻转等行针手法,使针刺部位获得“经气”感应,谓之得气。当针刺腧穴得气时,患者的针刺部位有酸胀、麻重等自觉反应,有时出现热、凉、痒、痛、抽搐、蚁行等感觉,或呈现沿着一定的方向和部位传导和扩散现象。少数患者还会出现循经性肌肤目闰动、震颤等反应,有的还可见到针刺腧穴部位的循经性皮疹带或红、白线状现象。“得气”在针灸临床操作过程中具有十分重要的地位,是针刺产生治疗作用的关键,是判断经气盛衰、取穴准确及疾病预后、针刺疗效的依据。
现有技术中,对针灸“得气”的技术研究,一类是对针刺过程中影响得气因素研究,主要包括针具选择、穴位、针刺操作(包括进针力度、方向、深度、速度、行针手法、辅助手法等)、留针时间等,这类研究由于难以量化而导致无法形成非常系统化和可复现的研究结论,另一类是对得气的客观化研究,如通过超声、fMRI(功能核磁共振成像)、PET(正电子断层成像)等手段进行参数获取,或是对穴位在针灸时的单光子数值、光谱、温度值和皮电值进行获取,并形成对得气效果的量化分析,但这类分析没有紧扣得气理论的原始理论基础,存在自行定义得气效果的缺陷,且其没有对得气反馈信息或反馈时间进行分析,因此,建立在针刺手法或物理反应值上的这类得气客观化技术研究结果难以达到系统化、规范化。
针对于上述现有技术的缺陷,本发明公开了一种基于得气分析的激光治疗装置,能够根据用户的医疗信息确定治疗穴位,并在治疗穴位时接收用户的得气反馈信息和反馈时间分析出得气参数,从而能够基于分析结果确定治疗效果或调整治疗方案,有利于提高治疗效果和治疗效率。以下分别进行详细说明。
实施例一
请参阅图1,图1是本发明实施例公开的一种基于得气分析的激光治疗装置10的结构示意图。如图1所示,该基于得气分析的激光治疗装置10可以包括有信息获取模块101,穴位确定模块102,反馈采集模块103和得气分析模块104,其中,信息获取模块101用于获取目标治疗用户的医疗信息,而穴位确定模块102用于根据目标用户的医疗信息,确定出目标用户对应的至少一个激光照射穴位,其中激光照射穴位用于后续指引激光发射设备对其进行照射以达到针灸治疗效果。具体的,反馈采集模块103用于在对至少一个激光照射穴位进行激光照射时,获取至少一个激光照射穴位对应的用户反馈信息,可选的,用户反馈信息包括得 气反馈信息和得气反馈产生时间信息中的至少一种。
在一个具体的实施方案中,激光发射设备可以发射激光对激光照射穴位逐个进行照射,每个穴位的照射在接收到用户反馈信息时结束,或在一定时间内无任何用户反馈信息强制结束,用户每次反馈的信息均上传中央服务器。可选的,照射结束,可以对本次照射采集到的信息与中央服务器中的数据库信息进行比对分析,得出本次诊断结论和治疗效果评估及下一次治疗建议。
具体的,得气分析模块104用于根据用户反馈信息,确定至少一个激光照射穴位对应的得气参数。
可选的,本发明实施例所指的穴位,学名腧穴,主要指人体经络线上特殊的点区部位,中医可以通过针灸或者推拿、点按、艾灸刺激相应的经络点治疗及预防疾病,此外,部分穴位并不在经络上,但对其的刺激亦可产生疗效。具体的,在一些现有的理论中,人体五脏六腑的“正经”经络系统共计十二条,加上身体正面中央的“任脉”、背面中央的“督脉”各有一条特殊经络系统。加计后共为“十四经络”或称为“广义经络”,在其上所排列著的人体穴道,称为“正穴”,全部共有三百六十五处。在另一些现有的理论中,例如2006年世界卫生组织西太区扩大会议上通过的国际标准《针灸腧穴定位》的361个穴位,或是我国制定的国家标准《经穴部位》。但仍还有很多隐敝、偏僻的穴道,如果连这些都算在内,人体总穴位数目超过该数目。需要注意的是,上述表述仅用于清楚描述本发明实施例中所指的穴位的技术概念,但并不对本发明产生限定作用,这是由于穴位的个数、位置或是概念,会随着时代的发展以及中医理论的发展,而产生变化,则人体表面的任何一个部位均有可能被新的理论认定为穴位,而任何可以被刺激以达到治疗或预防效果的穴位部位,均应被认为包括在本发明的保护范围之中。
具体的,针灸是针法和灸法的总称,其中,针法是指在中医理论的指导下把针具(通常指毫针)按照一定的角度刺入患者体内,运用捻转与提插等针刺手法来对人体特定部位进行刺激从而达到治疗疾病的目的,而灸法,即艾灸,简称灸疗或灸法,是用艾叶制成的艾条,艾柱,产生的艾热刺激人体穴位或特定部位,通过激发经气的活动来调整人体紊乱的生理生化功能,从而达到防病治病目的的一种治疗方法,其也与得气理论息息相关,例如陈日新等著的《灸之要气至而有效》(载于《中国针灸》2008年1月12日)中论述“艾灸确能像针刺一样高效激发经脉感传;艾灸必须激发经脉感传才能提高疗效。说明灸之要,仍然是气至而有效”,或如董善京等著的《灸疗贵在得气》(载于《中医临床研究》2016年06月20日)中论述:“灸疗得气表现为更宽泛的与疗效有着正相关的患者体验,灸疗时患者自觉酸、麻、重、胀、疼痛、触电样反应、灸感流注或气至病所,以及灸感由痛至不痛或不痛至痛等便是得气的表现”。
但本发明采用的激光治疗,属于激光针灸,是以低强度激光束直接或聚焦或扩束照射穴位的穴区表面或深部,对穴位进行有效的刺激,起到疏通经络、调节脏腑、行气活血和平衡阴阳等作用,从而达到扶正祛邪、治病保健的目的。现有论文如赫君等著《激光针灸的原理及其在临床上的应用》(载于《应用激光》,2008年01期)指出:“激光进行穴位照射时,既能穿透皮表,具有针刺的特点,同时约40%的能量被表皮吸收,转化成热能,起到灸疗的效果,所以它兼有针和灸的双重作用。另外,电磁场作用下,穴位组织中细胞内、外液中的正负离子分别朝相反方向运动,从而产生一个动作电位刺激,该动作电位电信号也会刺激穴位处的感受器”。
综上,由激光实施的针法和灸法均能产生得气效果,申请人经深入研究和反复实验,发现用一定强度一定波长的激光束照射穴位一定时间后,被照射部位普遍会和针灸得气一样产生酸胀、麻重、热、凉、痒、痛、抽搐、蚁行等感觉,或呈现沿着一定的方向和部位传导和扩散现象。
可见,上述公开的激光治疗装置,能够根据用户的医疗信息确定治疗穴位,并在治疗穴位时接收用户的得气反馈信息和反馈时间分析出得气参数,从而能够基于分析结果确定治疗 效果或调整治疗方案,有利于提高治疗效果和治疗效率。
可选的,本发明所述的激光治疗装置可以用于互联网平台,例如服务器上运行的互联网平台设置有诊疗数据库,其为每个穴位建立诊疗档案,同时该互联网平台内有多间门店,每间门店有至少一台本发明所述的激光治疗装置,所有用户在互联网平台内任一间门店或任一个激光治疗装置进行任何穴位的激光治疗,均能享受相同标准的诊疗服务并记录在互联网平台数据库。
作为一种可选的实施例,信息获取模块101所获取的医疗信息,可以为通过语音输入设备、图像输入设备或文字输入设备输入的语音类型、图像类型或是文字类型的资料,例如,可以获取医生口述或是用户自述的语音信息,并采用语音识别算法识别出其中的文本信息,以获得目标用户的医疗信息,又例如,可以获取用户的医疗记录本的图像,并采用图像识别算法如OCR识别算法,识别出其中的文本信息,以获得目标用户的医疗信息,又例如,可以直接由医生或用户通过键盘、手写设备等人机交互设备,输入对应的医疗信息。
可选的,上述医疗信息可以包括目标用户的过往病史信息、当前症状描述信息、历史治疗反馈信息、历史诊断信息、历史治疗建议信息、历史生物特征信息、当前生物特征信息和历史激光照射参数中的一种或多种,其中,目标用户的过往病史信息可以包括目标用户在历史时间段的患病信息、问诊信息、开药信息和治疗结果信息中的一种或多种。可选的,当前症状描述信息可以为目标用户对于其当前的病理症状的描述,以便更准确地确定出该治疗的穴位。可选的,历史穴位反馈信息为目标用户在历史时间段内接受激光治疗时的穴位反馈信息。可选的,历史生物特征信息,为目标用户在历史时间段内接受激光治疗时的生物特征信息。可选的,历史激光照射参数为目标用户在历史时间段内确定出的对应的激光照射参数,或是目标用户在历史时间段内进行的激光治疗所对应的激光照射参数。
作为一种可选的实施例,穴位确定模块102可以为具备计算能力的设备,其可以通过内置的算法直接根据医疗信息来确定出需要进行治疗的至少一个穴位,其也可以是具备数据传输能力的设备,其可以将医疗信息传输给目标服务器,并接收目标服务器发送的激光照射参数。具体的,目标服务器可以采用预设的诊疗策略进行诊断,以得到用户对应的激光照射穴位和激光照射参数,并发送给穴位确定模块102,穴位确定模块102再控制激光发射设备进行激光治疗。可选的,穴位确定模块102可以为具备通讯功能的硬件通信设备,或是集成在控制芯片中的软件代码。可选的,穴位确定模块102与目标服务器通信的方式可以为有线通信或无线通信,其中有线通信可以为通过相互之间连接的通信光缆进行,而无线通信可以通过蓝牙、WIFI等无线通信电磁波进行。
可选的,激光发射设备为连接有运动控制设备的激光发射设备,其可以根据激光照射参数或激光照射穴位的指示,对用户的穴位发射激光进行治疗,以达到类似针灸的效果。
可选的,激光照射参数用于指示欲进行激光照射的照射时间、照射强度和激光照射功率密度中的一种或多种,其中,照射时间可以包括单次照射持续时长、或是多次照射的总时长或中间的暂停时长,而照射强度可以用于指示激光发射的功率、波长或是激光的光强。
可选的,目标服务器可以通过代码的方式设置有医疗平台,以与多个诊疗终端连接,从而,目标服务器可以将用户的医疗信息,分配给相应的诊疗终端,由诊疗终端进行诊断,以得到相应的激光照射参数,其中具体的,诊疗终端可以为具有计算能力的终端,也可以为由医护人员控制的固定终端或移动终端,并有医护人员进行相应的诊断,从而实现对大量的诊断需求进行合理的分配和消化,以缓解医疗资源紧缺的情况。
可选的,穴位确定模块102或目标服务器内也可以设置有神经网络算法如卷积神经网络,并通过包括有医疗信息和激光照射穴位的训练集进行训练直至收敛,得到训练好的算法模块,该算法模块可以在接收到医疗信息的情况下计算出最合适的激光照射的穴位,以达到最好的治疗效果,且能够提高治疗的效率。
作为一种可选的实施例,反馈采集模块103可以为设置在用户的身上或周围的传感设备,以采集目标用户在接收照射时的用户反馈信息,具体的,上述得气反馈信息可以用于反映用 户的穴位在接受照射时的包括酸胀、麻重等自觉反应,或热、凉、痒、痛、抽搐、蚁行等感觉,或呈现沿着一定的方向和部位传导和扩散现象的感觉,具体的其可以包括穴位酸感信息、穴位胀感信息、穴位麻感信息、穴位重感信息、穴位热感信息、穴位凉感信息、穴位痒感信息、穴位痛感信息、穴位抽搐感信息、穴位蚁行感信息、穴位特定感觉传导信息和穴位特定感觉扩散信息中的至少一种。
作为一种可选的实施例,如图2a所示,得气分析模块104包括:
得气类型分析单元1041,用于根据得气反馈信息,确定至少一个激光照射穴位对应的健康状态。
可选的,得气类型分析单元1041可以根据预设的得气-穴位健康状态对应关系,直接根据某一穴位的得气反馈信息,确定该穴位对应的健康状态,例如,穴位痛感较强例如高于一定的痛感阈值,是指接受照射的穴位正气较强,穴位痒感较强例如高于一定的痒感阈值,则是邪气较强,或是穴位同时存在痛感和痒感,则是指示该穴位中正气与邪气正在博弈,根据研究或者数据分析,可以得出穴位的痒感较强或同时存在痛感和痒感,则是指示穴位的健康状态较差,而随着信息采集数据的积累,对穴位健康状态的分析会越来越准确。
作为一种可选的实施例,如图2b所示,得气分析模块104包括:
得气激光量分析单元1042,用于根据得气反馈信息和得气反馈产生时间信息,确定至少一个激光照射穴位对应的达到目标得气效果需要的激光照射量。
可选的,所需的激光照射量,可以被定义为是目标穴位要获得得气的效果,需要的照射在穴位上的激光光子数量。可选的,穴位吸收激光光子数量具有累积效应,得气所需的激光照射量可以用照射在穴位上的激光功率密度(表示单位时间内,激光辐照在单位面积靶材上的能量大小)乘以照射时间计算。在一些其他情况中,也可以通过数学模型来根据多个实验数据来描述激光功率密度、照射时间和得气所需的激光照射量之间的关系。
作为一种可选的实施例,得气反馈产生时间信息包括对激光照射穴位开始进行激光照射的开始时间到得气反馈信息的产生时间之间的时间差。具体的,得气激光量分析单元1042根据得气反馈信息和得气反馈产生时间信息,确定至少一个激光照射穴位对应的达到目标得气效果需要的激光照射量的具体方式,包括:
根据得气反馈信息,判断目标激光照射穴位是否与目标得气效果相匹配;
若判断结果为是,根据得气反馈产生时间信息,以及对目标激光照射穴位进行激光照射时的激光功率密度,确定目标激光照射穴位对应的达到目标得气效果需要的激光照射量。
具体的,可以通过预先建立的得气反馈产生时间、激光功率密度和激光照射量之间的数学关系模型,根据得气反馈产生时间信息,以及激光功率密度,确定达到目标得气效果需要的激光照射量,在一种可能的情况中,可以直接计算得气反馈产生时间和对目标激光照射穴位进行激光照射时的激光功率密度的乘积,以得到目标激光照射穴位对应的达到目标得气效果需要的激光照射量,在一些情况中,可以通过实验获得多个包括多次照射对应的得气反馈产生时间、激光功率密度和激光照射量的实验数据,并根据这些实验数据建立起数学关系分析模型,例如通过多项式关系拟合模型以及拟合算法来实现拟合分析,以建立起数学关系分析模型,并在后续通过该数学关系分析模型来实现上述激光照射量的计算。
作为一种可选的实施例,如图2c所示,得气分析模块104包括:
得气比较分析单元1043,用于根据激光照射量与参考照射量之间的比较结果,确定至少一个激光照射穴位对应的健康状态。
具体的,该参考照射量可以为该激光照射穴位对应的健康人群的一次标准激光照射量或多次激光照射量的平均值,或为该激光照射穴位对应的目标用户在历史时间段的单次激光照射量,或多次激光照射量的平均值。例如,与健康人群同一穴位相比较,该穴位的得气所需的激光照射量明显偏大,该穴位对应的脏腑可能处于亚健康或不健康状态,或是,与本人前次或前数次对同一穴位的激光照射量相比较,该穴位的得气所需的激光照射量减少,说明该穴位对应的脏腑治疗效果较好,反之,则没有效果或效果较差。
作为一种可选的实施例,如图3a所示,反馈采集模块103包括:
按键采集单元1031,用于接收目标用户的按键反馈信息,根据按键反馈信息确定至少一个激光照射穴位对应的用户反馈信息。
具体的,按键反馈信息为目标用户通过按键设备上的不同按键触发的。
在一个具体的实施方案中,可以设置一个遥控装置,上有A、B、C、D……键,分别代表不同的得气反馈信息,当用户的目标穴位产生得气效果时,目标用户根据得气类型按相应的键,以确定出得气反馈信息,同时,可以计算从开始照射到目标用户按下相应键的时间差,从而得到激光照射时间。
作为一种可选的实施例,如图3b所示,反馈采集模块103包括:
声音采集单元1032,用于获取目标用户被激光照射时的声音信息,根据声音信息确定至少一个激光照射穴位对应的用户反馈信息。
在一个具体的实施方案中,可以设置一个语音交互装置,上有语音识别功能,当目标穴位产生得气效果时,目标用户对该装置说出得气类型,以确定出得气反馈信息,同时,可以计算从开始照射到目标用户说出语音的时间差,从而得到激光照射时间。
作为一种可选的实施例,如图3c所示,反馈采集模块103包括:
生物特征采集单元1033,用于获取目标用户被激光照射时的生物特征变化信息,根据生物特征变化信息确定至少一个激光照射穴位对应的用户反馈信息。
可选的,生物特征变化信息可以包括目标用户的血压变化信息、血氧含量变化信息、心率变化信息、脉象变化信息和体温变化信息中的一种或多种。可选的,生物特征采集单元可以通过设置在目标用户的身上或周围的集成式的采集设备,如智能手表、智能腕带或智能探头,或是多个分别的采集设备所组成的采集系统,如包括有多个采集探头的生物特征采集系统来获取生物特征变化信息。通过这样设置,目标用户的生物特征信息可以被及时地采集。
可选的,生物特征采集单元1033可以通过内置的神经网络算法,通过生物特征变化信息来直接确定得气反馈信息,例如,可以预先收集得到不同生物特征变化信息对应的得气反馈信息类型的数据训练集,并通过数据训练集对神经网络模型进行训练以得到训练好的算法模型,后续可以直接通过该算法模型根据生物特征变化信息来直接确定得气反馈信息。
作为一种可选的实施例,该装置还包括:
穴位分析模块,用于根据目标用户的至少一个激光照射穴位对应的得气参数,确定目标用户的待治疗穴位。
具体的,待治疗穴位用于在后续的治疗中继续接受激光治疗。
作为一种可选的实施例,穴位分析模块确定目标用户的待治疗穴位的具体方式,包括:
根据目标用户的至少一个激光照射穴位对应的得气参数,确定目标用户的所有激光照射穴位中的健康状态为不健康的穴位;
将所有激光照射穴位中的健康状态为不健康的穴位,确定为目标用户的待治疗穴位。
可选的,可以通过上述得气分析模块104根据目标用户得气参数,确定目标用户的所有激光照射穴位中健康状态为不健康或亚健康的穴位或与其穴性相同的穴位,从而得到待治疗穴位。
在一个具体的实施方式中,可以发射激光对确定出的所有激光照射穴位逐个进行照射,每个穴位的照射直至用户产生用户反馈为止,或在一定时间内无反馈信息时强制结束,待所有穴位全部照射结束后,对本轮照射采集到的穴位对应的用户反馈信息进行分析,挑选出亚健康或不健康状态的穴位,例如得气反馈信息是痒、又痛又痒或没有得气反馈的穴位,或得气所需的激光照射量较大的穴位,又或是基于上述穴位匹配同经络的其他穴性相同的穴位,以得到待治疗穴位,在单位时间内对上述挑选出的穴位进行循环照射。
作为一种可选的实施例,该装置还包括:
参数分析模块,用于在进行新的穴位照射时,根据目标用户本次照射对应的多个目标穴位分别对应的激光照射量,确定每一目标穴位在新的穴位照射时对应的激光功率密度。
作为一种可选的实施例,参数分析模块确定每一目标穴位在新的穴位照射时对应的激光功率密度的具体方式,包括:
对于多个目标穴位,获取每一目标穴位对应的激光照射量;
根据所有目标穴位的激光照射量,确定每一目标穴位在新的穴位照射时对应的激光功率密度,以使得任意两个目标穴位对应的激光照射时间之间的时间差小于预设的时间差阈值;
和/或,
对于多个目标穴位,获取每一目标穴位对应的得气反馈产生时间信息;
对于任一目标穴位,计算该目标穴位的得气反馈产生时间信息与预设的时间参考值之间的时间差数据,确定该目标穴位在新的穴位照射时对应的激光功率密度,以使得任意一个目标穴位对应的激光照射时间与时间参考值之间的时间差小于时间差数据。
具体的,可以对本轮照射的穴位数据进行分析,对得气需要的激光照射量偏大的穴位,在下一轮照射中提高激光照射功率密度,以减少获得得气效果所需的照射时间,对得气需要的激光照射量偏小的穴位,在下一轮照射中降低激光照射功率密度,以增加获得得气效果所需的照射时间,最终使下一轮照射中每个穴位获得得气效果所需要的时间趋近。
可见,上述改进可以使得对没有获得得气效果的穴位,在下一轮照射中提高激光照射功率密度,争取让目标穴位获得得气效果,提高治疗效果,而对获得得气效果需要激光照射量偏大的穴位,在下一轮照射中提高激光照射功率密度,以减少所述目标穴位获得得气效果所需的照射时间,可以提高单位时间内装置对穴位治疗效率,从而可以兼顾效果和效率,并提高最终的治疗效果。
可选的,也可以对获得得气效果时间明显偏短(远远小于预设的上述时间参考值)的穴位降低激光照射功率密度,可以让可能已经引起目标用户感觉不舒适的穴位的照射强度降低,使目标用户在获得得气感觉的同时感觉舒适,提高目标用户的心理接受程度,同时有利于提高治疗效果,或是对获得得气效果时间明显偏长(远远大于预设的上述时间参考值)的穴位提高激光照射功率密度,可以让目标用户没有感觉到治疗感的穴位的照射强度提高,使目标用户更快获得得气感觉,有利于提高治疗效果。
作为一种可选的实施例,该装置还包括:
数据储存模块,用于将医疗信息、得气反馈信息、穴位的健康状态、激光照射量和激光功率密度中的一种或多种组成目标用户对应的医疗档案,并将医疗档案进行储存,和/或,将医疗档案发送至目标服务器进行储存。
可选的,数据储存模块可以为具备通讯功能的设备或是具备储存功能的硬件或软件代码。
显然本发明实施例中阐述的上述治疗装置,能够利用激光具有光源稳定、功率恒定的特点,以及激光照射在穴位上,穴位会随着时间的增长累积激光照射量,当穴位吸收一定数量的激光照射量后,就会产生针灸得气效果的特点,通过对得气效果进行量化分析,可以得出诊断结论和治疗建议,提高治疗效果。而且,通过对激光照射剂量和得气类型进行量化分析,可以发现穴位与得气效果的联系,从而发现穴位与疾病的对应关系,实现诊断疾病的目的。通过诊断结论,挑选出更有针对性或治疗效果更好的穴位,并通过激光照射使所述目标穴位产生得气效果,提高治疗效果。
实施例二
请参阅图4,图4是本发明实施例公开的一种基于穴位反馈的激光治疗系统的结构示意图。如图4所示,该激光治疗系统可以包括有服务器20,以及连接至服务器的多个激光治疗装置10和以及多个连接至激光治疗装置10的激光发射设备30,其中该服务器20可以为本地服务器或云端服务器,而多个激光治疗装置10与服务器20的连接方式可以为有线连接方式或无线连接方式。具体的,服务器20可以用于接收目标用户上传的医疗信息并传输至至少一个激光治疗装置10。可选的,本发明所述的激光治疗装置10可以用于互联网平台,例如服务器20上运行的互联网平台设置有诊疗数据库,其为每个穴位建立诊疗档案,同时该互联网平台内有多间门店,每间门店有至少一台本发明所述的激光治疗装置,所有用户在互联网 平台内任一间门店或任一个激光治疗装置进行任何穴位的激光治疗,均能享受相同标准的诊疗服务并记录在互联网平台数据库。
具体的,如图1所示,该激光治疗装置10可以包括有信息获取模块101,穴位确定模块102,反馈采集模块103和得气分析模块104,其中,信息获取模块101用于获取目标治疗用户的医疗信息,而穴位确定模块102用于根据目标用户的医疗信息,确定出目标用户对应的至少一个激光照射穴位,其中激光照射穴位用于后续指引激光发射设备对其进行照射以达到针灸治疗效果。具体的,反馈采集模块103用于在对至少一个激光照射穴位进行激光照射时,获取至少一个激光照射穴位对应的用户反馈信息,可选的,用户反馈信息包括得气反馈信息和得气反馈产生时间信息中的至少一种。
在一个具体的实施方案中,激光发射设备可以发射激光对激光照射穴位逐个进行照射,每个穴位的照射在接收到用户反馈信息时结束,或在一定时间内无任何用户反馈信息强制结束,用户每次反馈的信息均上传中央服务器。可选的,照射结束,可以对本次照射采集到的信息与中央服务器中的数据库信息进行比对分析,得出本次诊断结论和治疗效果评估及下一次治疗建议。
具体的,得气分析模块104用于根据用户反馈信息,确定至少一个激光照射穴位对应的得气参数。
可见,上述公开的激光治疗系统,能够根据用户的医疗信息确定治疗穴位,并在治疗穴位时接收用户的得气反馈信息和反馈时间分析出得气参数,从而能够基于分析结果确定治疗效果或调整治疗方案,有利于提高治疗效果和治疗效率
作为一种可选的实施例,信息获取模块101所获取的医疗信息,可以为通过语音输入设备、图像输入设备或文字输入设备输入的语音类型、图像类型或是文字类型的资料,例如,可以获取医生口述或是用户自述的语音信息,并采用语音识别算法识别出其中的文本信息,以获得目标用户的医疗信息,又例如,可以获取用户的医疗记录本的图像,并采用图像识别算法如OCR识别算法,识别出其中的文本信息,以获得目标用户的医疗信息,又例如,可以直接由医生或用户通过键盘、手写设备等人机交互设备,输入对应的医疗信息。
可选的,上述医疗信息可以包括目标用户的过往病史信息、当前症状描述信息、历史治疗反馈信息、历史诊断信息、历史治疗建议信息、历史生物特征信息、当前生物特征信息和历史激光照射参数中的一种或多种,其中,目标用户的过往病史信息可以包括目标用户在历史时间段的患病信息、问诊信息、开药信息和治疗结果信息中的一种或多种。可选的,当前症状描述信息可以为目标用户对于其当前的病理症状的描述,以便更准确地确定出该治疗的穴位。可选的,历史穴位反馈信息为目标用户在历史时间段内接受激光治疗时的穴位反馈信息。可选的,历史生物特征信息,为目标用户在历史时间段内接受激光治疗时的生物特征信息。可选的,历史激光照射参数为目标用户在历史时间段内确定出的对应的激光照射参数,或是目标用户在历史时间段内进行的激光治疗所对应的激光照射参数。
作为一种可选的实施例,穴位确定模块102可以为具备计算能力的设备,其可以通过内置的算法直接根据医疗信息来确定出需要进行治疗的至少一个穴位,其也可以是具备数据传输能力的设备,其可以将医疗信息传输给目标服务器,并接收目标服务器发送的激光照射参数。具体的,目标服务器可以采用预设的诊疗策略进行诊断,以得到用户对应的激光照射穴位和激光照射参数,并发送给穴位确定模块102,穴位确定模块102再控制激光发射设备进行激光治疗。可选的,穴位确定模块102可以为具备通讯功能的硬件通信设备,或是集成在控制芯片中的软件代码。可选的,穴位确定模块102与目标服务器通信的方式可以为有线通信或无线通信,其中有线通信可以为通过相互之间连接的通信光缆进行,而无线通信可以通过蓝牙、WIFI等无线通信电磁波进行。
可选的,激光发射设备为连接有运动控制设备的激光发射设备,其可以根据激光照射参数或激光照射穴位的指示,对用户的穴位发射激光进行治疗,以达到类似针灸的效果。
可选的,激光照射参数用于指示欲进行激光照射的照射时间、照射强度和激光照射功率 密度中的一种或多种,其中,照射时间可以包括单次照射持续时长、或是多次照射的总时长或中间的暂停时长,而照射强度可以用于指示激光发射的功率、波长或是激光的光强。
可选的,目标服务器可以通过代码的方式设置有医疗平台,以与多个诊疗终端连接,从而,目标服务器可以将用户的医疗信息,分配给相应的诊疗终端,由诊疗终端进行诊断,以得到相应的激光照射参数,其中具体的,诊疗终端可以为具有计算能力的终端,也可以为由医护人员控制的固定终端或移动终端,并有医护人员进行相应的诊断,从而实现对大量的诊断需求进行合理的分配和消化,以缓解医疗资源紧缺的情况。
可选的,穴位确定模块102或目标服务器内也可以设置有神经网络算法如卷积神经网络,并通过包括有医疗信息和激光照射穴位的训练集进行训练直至收敛,得到训练好的算法模块,该算法模块可以在接收到医疗信息的情况下计算出最合适的激光照射的穴位,以达到最好的治疗效果,且能够提高治疗的效率。
作为一种可选的实施例,反馈采集模块103可以为设置在用户的身上或周围的传感设备,以采集目标用户在接收照射时的用户反馈信息,具体的,上述得气反馈信息可以用于反映用户的穴位在接受照射时的包括酸胀、麻重等自觉反应,或热、凉、痒、痛、抽搐、蚁行等感觉,或呈现沿着一定的方向和部位传导和扩散现象的感觉,具体的其可以包括穴位酸感信息、穴位胀感信息、穴位麻感信息、穴位重感信息、穴位热感信息、穴位凉感信息、穴位痒感信息、穴位痛感信息、穴位抽搐感信息、穴位蚁行感信息、穴位特定感觉传导信息和穴位特定感觉扩散信息中的至少一种。
作为一种可选的实施例,如图2a所示,得气分析模块104包括:
得气类型分析单元1041,用于根据得气反馈信息,确定至少一个激光照射穴位对应的健康状态。
可选的,得气类型分析单元1041可以根据预设的得气-穴位健康状态对应关系,直接根据某一穴位的得气反馈信息,确定该穴位对应的健康状态,例如,穴位痛感较强例如高于一定的痛感阈值,是指接受照射的穴位正气较强,穴位痒感较强例如高于一定的痒感阈值,则是邪气较强,或是穴位同时存在痛感和痒感,则是指示该穴位中正气与邪气正在博弈,根据研究或者数据分析,可以得出穴位的痒感较强或同时存在痛感和痒感,则是指示穴位的健康状态较差,而随着信息采集数据的积累,对穴位健康状态的分析会越来越准确。
作为一种可选的实施例,如图2b所示,得气分析模块104包括:
得气激光量分析单元1042,用于根据得气反馈信息和得气反馈产生时间信息,确定至少一个激光照射穴位对应的达到目标得气效果需要的激光照射量。
可选的,所需的激光照射量,可以被定义为是目标穴位要获得得气的效果,需要的照射在穴位上的激光光子数量。可选的,穴位吸收激光光子数量具有累积效应,得气所需的激光照射量可以用照射在穴位上的激光功率密度(表示单位时间内,激光辐照在单位面积靶材上的能量大小)乘以照射时间计算。在一些其他情况中,也可以通过数学模型来根据多个实验数据来描述激光功率密度、照射时间和得气所需的激光照射量之间的关系。
作为一种可选的实施例,得气反馈产生时间信息包括对激光照射穴位开始进行激光照射的开始时间到得气反馈信息的产生时间之间的时间差。具体的,得气激光量分析单元1042根据得气反馈信息和得气反馈产生时间信息,确定至少一个激光照射穴位对应的达到目标得气效果需要的激光照射量的具体方式,包括:
根据得气反馈信息,判断目标激光照射穴位是否与目标得气效果相匹配;
若判断结果为是,根据得气反馈产生时间信息,以及对目标激光照射穴位进行激光照射时的激光功率密度,确定目标激光照射穴位对应的达到目标得气效果需要的激光照射量。
具体的,可以通过预先建立的得气反馈产生时间、激光功率密度和激光照射量之间的数学关系模型,根据得气反馈产生时间信息,以及激光功率密度,确定达到目标得气效果需要的激光照射量,在一种可能的情况中,可以直接计算得气反馈产生时间和对目标激光照射穴位进行激光照射时的激光功率密度的乘积,以得到目标激光照射穴位对应的达到目标得气效 果需要的激光照射量,在一些情况中,可以通过实验获得多个包括多次照射对应的得气反馈产生时间、激光功率密度和激光照射量的实验数据,并根据这些实验数据建立起数学关系分析模型,例如通过多项式关系拟合模型以及拟合算法来实现拟合分析,以建立起数学关系分析模型,并在后续通过该数学关系分析模型来实现上述激光照射量的计算。
作为一种可选的实施例,如图2c所示,得气分析模块104包括:
得气比较分析单元1043,用于根据激光照射量与参考照射量之间的比较结果,确定至少一个激光照射穴位对应的健康状态。
具体的,该参考照射量可以为该激光照射穴位对应的健康人群一次标准激光照射量或多次激光照射量的平均值,或为该激光照射穴位对应的目标用户在历史时间段的单次激光照射量,或多次激光照射量的平均值。例如,与健康人群同一穴位相比较,该穴位的得气所需的激光照射量明显偏大,该穴位对应的脏腑可能处于亚健康或不健康状态,或是,与本人前次或前数次对同一穴位的激光照射量相比较,该穴位的得气所需的激光照射量减少,说明该穴位对应的脏腑治疗效果较好,反之,则没有效果或效果较差。
作为一种可选的实施例,如图3a所示,反馈采集模块103包括:
按键采集单元1031,用于接收目标用户的按键反馈信息,根据按键反馈信息确定至少一个激光照射穴位对应的用户反馈信息。
具体的,按键反馈信息为目标用户通过按键设备上的不同按键触发的。
在一个具体的实施方案中,可以设置一个遥控装置,上有A、B、C、D……键,分别代表不同的得气反馈信息,当用户的目标穴位产生得气效果时,目标用户根据得气类型按相应的键,以确定出得气反馈信息,同时,可以计算从开始照射到目标用户按下相应键的时间差,从而得到激光照射时间。
作为一种可选的实施例,如图3b所示,反馈采集模块103包括:
声音采集单元1032,用于获取目标用户被激光照射时的声音信息,根据声音信息确定至少一个激光照射穴位对应的用户反馈信息。
在一个具体的实施方案中,可以设置一个语音交互装置,上有语音识别功能,当目标穴位产生得气效果时,目标用户对该装置说出得气类型,以确定出得气反馈信息,同时,可以计算从开始照射到目标用户说出语音的时间差,从而得到激光照射时间。
作为一种可选的实施例,如图3c所示,反馈采集模块103包括:
生物特征采集单元1033,用于获取目标用户被激光照射时的生物特征变化信息,根据生物特征变化信息确定至少一个激光照射穴位对应的用户反馈信息。
可选的,生物特征变化信息可以包括目标用户的血压变化信息、血氧含量变化信息、心率变化信息、脉象变化信息和体温变化信息中的一种或多种。可选的,生物特征采集单元可以通过设置在目标用户的身上或周围的集成式的采集设备,如智能手表、智能腕带或智能探头,或是多个分别的采集设备所组成的采集系统,如包括有多个采集探头的生物特征采集系统来获取生物特征变化信息。通过这样设置,目标用户的生物特征信息可以被及时地采集。
可选的,生物特征采集单元1033可以通过内置的神经网络算法,通过生物特征变化信息来直接确定得气反馈信息,例如,可以预先收集得到不同生物特征变化信息对应的得气反馈信息类型的数据训练集,并通过数据训练集对神经网络模型进行训练以得到训练好的算法模型,后续可以直接通过该算法模型根据生物特征变化信息来直接确定得气反馈信息。
作为一种可选的实施例,该装置还包括:
穴位分析模块,用于根据目标用户的至少一个激光照射穴位对应的得气参数,确定目标用户的待治疗穴位。
具体的,待治疗穴位用于在后续的治疗中继续接受激光治疗。
作为一种可选的实施例,穴位分析模块确定目标用户的待治疗穴位的具体方式,包括:
根据目标用户的至少一个激光照射穴位对应的得气参数,确定目标用户的所有激光照射穴位中的健康状态为不健康的穴位;
将所有激光照射穴位中的健康状态为不健康的穴位,确定为目标用户的待治疗穴位。
可选的,可以通过上述得气分析模块104根据目标用户得气参数,确定目标用户的所有激光照射穴位中健康状态为不健康或亚健康的穴位或与其穴性相同的穴位,从而得到待治疗穴位。
在一个具体的实施方式中,可以发射激光对确定出的所有激光照射穴位逐个进行照射,每个穴位的照射直至用户产生用户反馈为止,或在一定时间内无反馈信息时强制结束,待所有穴位全部照射结束后,对本轮照射采集到的穴位对应的用户反馈信息进行分析,挑选出亚健康或不健康状态的穴位,例如得气反馈信息是痒、又痛又痒或没有得气反馈的穴位,或得气所需的激光照射量较大的穴位,又或是基于上述穴位匹配同经络的其他穴性相同的穴位,以得到待治疗穴位,在单位时间内对上述挑选出的穴位进行循环照射。
作为一种可选的实施例,该装置还包括:
参数分析模块,用于在进行新的穴位照射时,根据目标用户本次照射对应的多个目标穴位分别对应的激光照射量,确定每一目标穴位在新的穴位照射时对应的激光功率密度。
作为一种可选的实施例,参数分析模块确定每一目标穴位在新的穴位照射时对应的激光功率密度的具体方式,包括:
对于多个目标穴位,获取每一目标穴位对应的激光照射量;
根据所有目标穴位的激光照射量,确定每一目标穴位在新的穴位照射时对应的激光功率密度,以使得任意两个目标穴位对应的激光照射时间之间的时间差小于预设的时间差阈值;
和/或,
对于多个目标穴位,获取每一目标穴位对应的得气反馈产生时间信息;
对于任一目标穴位,计算该目标穴位的得气反馈产生时间信息与预设的时间参考值之间的时间差数据,确定该目标穴位在新的穴位照射时对应的激光功率密度,以使得任意一个目标穴位对应的激光照射时间与时间参考值之间的时间差小于时间差数据。
具体的,可以对本轮照射的穴位数据进行分析,对得气需要的激光照射量偏大的穴位,在下一轮照射中提高激光照射功率密度,以减少获得得气效果所需的照射时间,对得气需要的激光照射量偏小的穴位,在下一轮照射中降低激光照射功率密度,以增加获得得气效果所需的照射时间,最终使下一轮照射中每个穴位获得得气效果所需要的时间趋近。
可见,上述改进可以使得对没有获得得气效果的穴位,在下一轮照射中提高激光照射功率密度,争取让目标穴位获得得气效果,提高治疗效果,而对获得得气效果需要激光照射量偏大的穴位,在下一轮照射中提高激光照射功率密度,以减少所述目标穴位获得得气效果所需的照射时间,可以提高单位时间内装置对穴位治疗效率,从而可以兼顾效果和效率,并提高最终的治疗效果。
可选的,也可以对获得得气效果时间明显偏短(远远小于预设的上述时间参考值)的穴位降低激光照射功率密度,可以让可能已经引起目标用户感觉不舒适的穴位的照射强度降低,使目标用户在获得得气感觉的同时感觉舒适,提高目标用户的心理接受程度,同时有利于提高治疗效果,或是对获得得气效果时间明显偏长(远远大于预设的上述时间参考值)的穴位提高激光照射功率密度,可以让目标用户没有感觉到治疗感的穴位的照射强度提高,使目标用户更快获得得气感觉,有利于提高治疗效果。
作为一种可选的实施例,该装置还包括:
数据储存模块,用于将医疗信息、得气反馈信息、穴位的健康状态、激光照射量和激光功率密度中的一种或多种组成目标用户对应的医疗档案,并将医疗档案进行储存,和/或,将医疗档案发送至目标服务器进行储存。
可选的,数据储存模块可以为具备通讯功能的设备或是具备储存功能的硬件或软件代码。
显然本发明实施例中阐述的上述治疗系统,能够利用激光具有光源稳定、功率恒定的特点,以及激光照射在穴位上,穴位会随着时间的增长累积激光照射量,当穴位吸收一定数量的激光照射量后,就会产生针灸得气效果的特点,通过对得气效果进行量化分析,可以得出 诊断结论和治疗建议,提高治疗效果。而且,通过对激光照射剂量和得气类型进行量化分析,可以发现穴位与得气效果的联系,从而发现穴位与疾病的对应关系,实现诊断疾病的目的。通过诊断结论,挑选出更有针对性或治疗效果更好的穴位,并通过激光照射使所述目标穴位产生得气效果,提高治疗效果。
以上所描述的装置实施例仅是示意性的,其中所述作为分离部件说明的模块可以是或者也可以不是物理上分开的,作为模块显示的部件可以是或者也可以不是物理模块,即可以位于一个地方,或者也可以分布到多个网络模块上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性的劳动的情况下,即可以理解并实施。
通过以上的实施例的具体描述,本领域的技术人员可以清楚地了解到各实施方式可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件。基于这样的理解,上述技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在计算机可读存储介质中,存储介质包括只读存储器(Read-Only Memory,ROM)、随机存储器(RandomAccess Memory,RAM)、可编程只读存储器(Programmable Read-only Memory,PROM)、可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EPROM)、一次可编程只读存储器(One-time Programmable Read-Only Memory,OTPROM)、电子抹除式可复写只读存储器(Electrically-Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储器、磁盘存储器、磁带存储器、或者能够用于携带或存储数据的计算机可读的任何其他介质。
最后应说明的是:本发明实施例所揭露的仅为本发明较佳实施例而已,仅用于说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解;其依然可以对前述各项实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或替换,并不使相应的技术方案的本质脱离本发明各项实施例技术方案的精神和范围。

Claims (10)

  1. 一种基于得气分析的激光治疗装置,其特征在于,所述装置包括:
    信息获取模块,用于获取目标治疗用户的医疗信息;
    穴位确定模块,用于根据所述目标用户的医疗信息,确定出所述目标用户对应的至少一个激光照射穴位;
    反馈采集模块,用于在对所述至少一个激光照射穴位进行激光照射时,获取至少一个所述激光照射穴位对应的用户反馈信息;所述用户反馈信息包括得气反馈信息和得气反馈产生时间信息中的至少一种;
    得气分析模块,用于根据所述用户反馈信息,确定至少一个所述激光照射穴位对应的得气参数。
  2. 根据权利要求1所述的基于得气分析的激光治疗装置,其特征在于,所述医疗信息包括所述目标用户的过往病史信息、当前症状描述信息、历史治疗反馈信息、历史诊断信息、历史治疗建议信息、历史生物特征信息、当前生物特征信息和历史激光照射参数中的一种或多种;和/或,所述得气反馈信息包括穴位酸感信息、穴位胀感信息、穴位麻感信息、穴位重感信息、穴位热感信息、穴位凉感信息、穴位痒感信息、穴位痛感信息、穴位抽搐感信息、穴位蚁行感信息、穴位特定感觉传导信息和穴位特定感觉扩散信息中的至少一种。
  3. 根据权利要求1所述的基于得气分析的激光治疗装置,其特征在于,所述得气分析模块包括:
    得气类型分析单元,用于根据所述得气反馈信息,确定至少一个所述激光照射穴位对应的健康状态;
    和/或,
    得气激光量分析单元,用于根据所述得气反馈信息和得气反馈产生时间信息,确定至少一个所述激光照射穴位对应的达到目标得气效果需要的激光照射量;
    和/或,
    得气比较分析单元,用于根据所述激光照射量与参考照射量之间的比较结果,确定至少一个所述激光照射穴位对应的健康状态。
  4. 根据权利要求3所述的基于得气分析的激光治疗装置,其特征在于,所述得气反馈产生时间信息包括对所述激光照射穴位开始进行激光照射的开始时间到所述得气反馈信息的产生时间之间的时间差;所述得气激光量分析单元根据所述得气反馈信息和得气反馈产生时间信息,确定至少一个所述激光照射穴位对应的达到目标得气效果需要的激光照射量的具体方式,包括:
    根据所述得气反馈信息,判断目标激光照射穴位是否与所述目标得气效果相匹配;
    若判断结果为是,根据所述得气反馈产生时间信息,以及对所述目标激光照射穴位进行激光照射时的激光功率密度,确定所述目标激光照射穴位对应的达到目标得气效果需要的激光照射量。
  5. 根据权利要求3所述的基于得气分析的激光治疗装置,其特征在于,所述装置还包括:
    穴位分析模块,用于根据所述目标用户的至少一个所述激光照射穴位对应的得气参数,确定所述目标用户的待治疗穴位;所述待治疗穴位用于在后续的治疗中继续接受激光治疗;
    和/或,
    参数分析模块,用于在进行新的穴位照射时,根据所述目标用户本次照射对应的多个目标穴位分别对应的所述激光照射量,确定每一所述目标穴位在所述新的穴位照射时对应的激 光功率密度。
  6. 根据权利要求5所述的基于得气分析的激光治疗装置,其特征在于,所述穴位分析模块确定所述目标用户的待治疗穴位的具体方式,包括:
    根据所述目标用户的至少一个所述激光照射穴位对应的得气参数,确定所述目标用户的所有所述激光照射穴位中的健康状态为不健康的穴位;
    将所有所述激光照射穴位中的健康状态为不健康的穴位,确定为所述目标用户的所述待治疗穴位。
  7. 根据权利要求5所述的基于得气分析的激光治疗装置,其特征在于,所述参数分析模块确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度的具体方式,包括:
    对于多个所述目标穴位,获取每一所述目标穴位对应的所述激光照射量;
    根据所有所述目标穴位的激光照射量,确定每一所述目标穴位在所述新的穴位照射时对应的激光功率密度,以使得任意两个所述目标穴位对应的激光照射时间之间的时间差小于预设的时间差阈值;
    和/或,
    对于多个所述目标穴位,获取每一所述目标穴位对应的所述得气反馈产生时间信息;
    对于任一所述目标穴位,计算该目标穴位的得气反馈产生时间信息与预设的时间参考值之间的时间差数据,确定该目标穴位在所述新的穴位照射时对应的激光功率密度,以使得任意一个所述目标穴位对应的激光照射时间与所述时间参考值之间的时间差小于所述时间差数据。
  8. 根据权利要求1所述的基于得气分析的激光治疗装置,其特征在于,所述反馈采集模块包括:
    按键采集单元,用于接收所述目标用户的按键反馈信息,根据所述按键反馈信息确定至少一个所述激光照射穴位对应的用户反馈信息;所述按键反馈信息为所述目标用户通过按键设备上的不同按键触发的;
    和/或,
    声音采集单元,用于获取所述目标用户被激光照射时的声音信息,根据所述声音信息确定至少一个所述激光照射穴位对应的用户反馈信息;
    和/或,
    生物特征采集单元,用于获取所述目标用户被激光照射时的生物特征变化信息,根据所述生物特征变化信息确定至少一个所述激光照射穴位对应的用户反馈信息。
  9. 根据权利要求1所述的基于得气分析的激光治疗装置,其特征在于,所述装置还包括:
    数据储存模块,用于将所述医疗信息、所述得气反馈信息、所述穴位的健康状态、所述激光照射量和所述激光功率密度中的一种或多种组成所述目标用户对应的医疗档案,并将所述医疗档案进行储存,和/或,将所述医疗档案发送至目标服务器进行储存。
  10. 一种基于得气分析的激光治疗系统,其特征在于,所述系统包括:
    服务器;
    连接至所述服务器的,如权利要求1-9任一项中所述的基于得气分析的激光治疗装置;
    以及,连接至所述激光治疗装置的激光发射设备。
PCT/CN2023/120221 2022-11-22 2023-09-21 基于得气分析的激光治疗装置及系统 WO2024109300A1 (zh)

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