WO2018149202A1 - Procédé et dispositif de simulation d'acupuncture - Google Patents

Procédé et dispositif de simulation d'acupuncture Download PDF

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Publication number
WO2018149202A1
WO2018149202A1 PCT/CN2017/112423 CN2017112423W WO2018149202A1 WO 2018149202 A1 WO2018149202 A1 WO 2018149202A1 CN 2017112423 W CN2017112423 W CN 2017112423W WO 2018149202 A1 WO2018149202 A1 WO 2018149202A1
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Prior art keywords
acupuncture
simulation
data
user
module
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PCT/CN2017/112423
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English (en)
Chinese (zh)
Inventor
包磊
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深圳市善行医疗科技有限公司
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Publication of WO2018149202A1 publication Critical patent/WO2018149202A1/fr

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    • 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
    • A61H39/08Devices for applying needles to such points, i.e. for acupuncture ; Acupuncture needles or accessories therefor

Definitions

  • the invention belongs to the technical field of wearable electronic devices, and in particular relates to acupuncture simulation method and device.
  • Acupuncture is the effect of massage and health care by stimulating specific acupuncture points on the human body.
  • the term acupuncture covers both acupuncture and moxibustion.
  • the needle refers to the physical needle.
  • Acupoints stimulate the meridians; moxibustion stimulates the meridians with warm materials such as ignited wormwood.
  • the acupuncture process has also been realized through electronic devices. The device is used to output the somatosensory signals at specific acupuncture points of the human body, so as to simulate the stimulation of needles and moxibustion, so that users can enjoy without leaving home.
  • the benefits of acupuncture is used to output the somatosensory signals at specific acupuncture points of the human body, so as to simulate the stimulation of needles and moxibustion, so that users can enjoy without leaving home.
  • the current electronic acupuncture instruments are simulated acupuncture after being directly opened.
  • the specific acupuncture points and acupuncture durations are adjusted by the user according to experience and personal feelings, and the personal feelings and the actual physiological data of the human body are greatly different, and the actual situation of the user.
  • the degree of matching is not high; and the change of the user's physical condition after the simulated acupuncture depends on the user's personal feeling, and the acupuncture simulation effect is less controllable. It can be seen that the existing acupuncture simulation can not accurately control the acupuncture simulation, and the acupuncture simulation effect has low controllability.
  • the embodiments of the present invention provide a method and a device for simulating acupuncture to solve the problem of low accuracy and controllability of acupuncture simulation in the prior art.
  • an acupuncture simulation method comprising:
  • the control acupuncture simulation module outputs an acupuncture analog signal to the attached human body position according to the simulation mode
  • the second data parameter of the user during the acupuncture simulation is obtained, and the preset processing is performed based on the second data parameter.
  • an acupuncture analog signal output device including:
  • a data acquisition module configured to acquire a first condition data parameter, where the data parameter includes environmental data and/or physiological data of the user;
  • a mode determining module configured to determine, according to the first data parameter, an analog mode of the activated acupuncture simulation module and the acupuncture simulation module disposed on the wearable device;
  • An output control module for controlling the acupuncture simulation module to output an acupuncture analog signal to the attached human body position according to the simulation mode
  • the effect analysis module is configured to acquire a second data parameter of the user during the acupuncture simulation, and perform preset processing based on the second data parameter.
  • the present invention has at least the following advantages: first acquiring the first data parameter composed of the environmental data and/or the physiological data of the user, and then outputting the corresponding acupuncture analog signal, that is, the output of the acupuncture analog signal is based on the acupuncture simulation Based on the actual physical or environmental conditions of the previous user, determining the acupuncture simulation signal based on the objective data of the user before the acupuncture simulation can improve the matching degree between the acupuncture simulation and the user, and achieve the effect of accurate acupuncture simulation.
  • the second data parameter of the user is also obtained, so that the effect of the acupuncture simulation can be objectively evaluated; and the data of the acupuncture simulation can be specifically adjusted according to the obtained second data parameter, thereby Improve the controllability of acupuncture simulation effects.
  • FIG. 1 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 2 of the present invention
  • FIG. 3 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 3 of the present invention.
  • FIG. 4 is a flowchart showing an implementation of a method for outputting acupuncture analog signals according to Embodiment 4 of the present invention
  • FIG. 5 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 5 of the present invention.
  • FIG. 6 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 6 of the present invention.
  • FIG. 7 is a flowchart showing an implementation of a method for outputting acupuncture analog signals according to Embodiment 7 of the present invention.
  • Embodiment 8 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 8 of the present invention.
  • FIG. 9 is a flowchart showing an implementation of a method for outputting acupuncture analog signals according to Embodiment 9 of the present invention.
  • FIG. 10 is a flowchart showing an implementation of a method for outputting an acupuncture analog signal according to a tenth embodiment of the present invention
  • FIG. 11 is a flowchart showing an implementation of an acupuncture analog signal output method according to Embodiment 11 of the present invention.
  • Figure 12 is a block diagram showing the structure of an acupuncture analog signal output device according to a twelfth embodiment of the present invention.
  • the present invention provides an acupuncture simulation method and apparatus, the method comprising: acquiring a first data parameter, the data parameter including environmental data and physiological data of the user; generating an analog mode matching the first data parameter, the simulation mode specifies The driving mode of the acupuncture simulation module and the acupuncture simulation signal are required to be driven on the acupuncture simulation module; the simulation mode is adjusted based on the user's use effect data when the acupuncture analog signal is output; based on the adjusted simulation mode, the acupuncture simulation module in the control device Acupuncture analog signals are output to the human body position attached to the acupuncture simulation module, and the acupuncture analog signals include electrical stimulation signals and heating Signal and vibration signals.
  • the wearable device can be a wearable acupuncture product, which can be a garment made of a flexible fabric, pants, gloves, etc., and a plurality of acupuncture simulation modules are embedded on the side of the flexible fabric close to the human skin.
  • Each acupuncture simulation module is distributed at different locations so that after the user wears the product, each acupuncture simulation module can be attached to each acupuncture point of the user's body.
  • At least one control module is also embedded, and each acupuncture analog module is respectively connected to the control module via a communication bus.
  • the control module sends the control information to the acupuncture simulation module by means of the communication bus
  • the MCU Microcontroller Unit
  • the acupuncture simulation module determines the acupuncture simulation parameters to be output according to the control information, thereby outputting different acupunctures.
  • the analog signal is used to stimulate the user's various acupoints in different ways.
  • a plurality of different somatosensory sensors such as a temperature sensor, a humidity sensor, a myoelectric sensor, and an electroencephalogram electrode, are also included, and the somatosensory sensors are disposed in the wearable device and each Various parts related to physiological data, to collect different physiological data of the user, such as setting a temperature sensor on the forehead, back and chest to collect the user's body temperature data, and setting the brain electrical electrode in multiple parts of the head to collect the user's EEG data.
  • the wearable device may further be provided with a wire and a circuit board, wherein the circuit board is used for fixing various communication buses and fixing various types of connector males, so that the corresponding connectors are provided on the outer casing.
  • Each acupuncture simulation module of the female head can be flexibly connected to the male connector of the fixed connector on any circuit board, thereby ensuring that the acupuncture simulation module is fixed at a preset position of the wearable device.
  • the connection structure between the male connector of the connector and the female connector of the connector may be, for example, a snap structure, a pin connector fixing structure, a magnetic structure or the like.
  • the circuit board and its various solder joints are wrapped with waterproof glue.
  • each feedback module can be detached from the circuit board. As another specific implementation, it can also be passed on the clothes.
  • the waterproof waterproof wiring and the connecting device integrally disassemble the feedback module and the control circuit board on which the feedback module is mounted, so that the wearable device can be washed.
  • each acupuncture simulation module corresponds to one body point (acupoint), and each acupuncture simulation module integrates three kinds of body sensores: an electrode, a heating piece and a vibration module:
  • the number of electrodes in each acupuncture simulation module can be one or two.
  • the number of electrodes is one, at least two acupuncture simulation modules need to receive control information based on electrical stimulation parameters and simultaneously output electrical stimulation signals, so that between the two electrodes corresponding to the two acupuncture simulation modules and the user's body
  • the electric shock circuit is formed to generate an electrical stimulation simulation effect, that is, the "needle" in the acupuncture is simulated.
  • an electric shock circuit can be formed directly between the two electrodes inside the user and the user's body to generate an electrical stimulation simulation effect.
  • each acupuncture simulation module is further provided with a heating piece and a vibration module and the like.
  • the acupuncture simulation module uses the corresponding internal components to make the somatosensory feedback.
  • the temperature control is performed by using the heating sheet, so that the acupuncture simulation module can generate the moxibustion heating effect of the corresponding temperature value at the position of the human body to which it is attached.
  • the heating sheet in the acupuncture simulation module may be a graphene heating sheet.
  • the user's body receives the infrared rays generated by the graphene heating sheet, it can further promote the metabolism of the cells and achieve a better cell repairing effect.
  • FIG. 1 is a flowchart showing an implementation process of an acupuncture analog signal output method according to Embodiment 1 of the present invention, which is described in detail as follows:
  • Step S101 Acquire a first condition data parameter, where the data parameter includes environmental data and/or physiological data of the user.
  • the first data parameter includes the first environmental data and/or the first physiological data of the user.
  • the type of the first physiological data that needs to be obtained may be determined by a technician according to actual needs, such as including only electrocardiogram data, electroencephalogram data, and body temperature data, and may also include users that can be collected by the wearable device. All physiological data.
  • the first Environmental data refers to data related to the environment in which the user performs acupuncture simulation using a wearable device, such as temperature data, humidity data, brightness data, and noise data.
  • the first data parameter that needs to be acquired includes the first environment data and the first physiological data.
  • the physiological data is used to judge the physical condition of the user, so that the simulation mode is sometimes inaccurate, such as judging the user's state of rapid heartbeat through physiological data, which may be caused by pathological factors. It may be caused by excessive psychological stress in the environment when the environment is too closed.
  • the user's acupuncture needs cannot be clarified.
  • the first environmental data of the user is also collected.
  • the oxygen content data of the environment is collected, the oxygen content data is much lower than the oxygen content of the normal air, and the collected user's heartbeat data is too fast, it is determined that the user is currently in a relatively closed environment, and the heart skips.
  • the reason for the quickness is not caused by pathological factors, but may be caused by air circulation or psychological stress.
  • the output acupuncture simulation program needs to have a soothing health care effect, and a simulation mode corresponding to the effect is generated.
  • Step S102 determining an analog mode of the activated acupuncture simulation module and the acupuncture simulation module disposed on the wearable device according to the first data parameter.
  • the simulation mode refers to the specific output scheme of the acupuncture analog signal in the acupuncture simulation module during the acupuncture simulation, which includes the type of the analog signal and the corresponding acupuncture simulation parameters.
  • a plurality of stimulation combinations are used to perform acupuncture simulation, including using an electrical stimulation signal to simulate acupuncture, a heating signal to simulate moxibustion, and a vibration signal to simulate a massage function.
  • the wearable device After collecting the first physiological data and the first environmental data, the wearable device starts comprehensive analysis on the two sets of data, and determines the specific physical condition of the user. In the embodiment of the present invention, after determining the specific physical condition, the wearable device automatically determines the acupuncture simulation module to be activated and the corresponding simulation mode according to the physical condition.
  • the acquired data parameters may be sent to a professional data analysis institution or a professional through the Internet to match the simulation mode corresponding to the acupuncture simulation module through a specialized data analysis means.
  • medical experts determine the simulation mode that matches the data parameters to improve the professionalism of acupuncture simulation.
  • Step S103 the control acupuncture simulation module outputs an acupuncture analog signal to the attached human body position according to the simulation mode.
  • the acupuncture analog signal includes an electrical stimulation signal, a heating signal, and a vibration signal.
  • the wearable device controls the acupuncture simulation module, and outputs acupuncture simulation signals to the user according to the simulation mode, and performs acupuncture simulation.
  • each acupuncture analog signal is set with the corresponding acupuncture simulation parameters:
  • the corresponding acupuncture simulation parameters include the shock interval, the duration of the shock, and the shock intensity.
  • the control electrode When simulating the effect of needle penetration, only the control electrode outputs a single electrical stimulation signal to the human body position; when simulating the effect of the needle movement, the control electrode is preset to an electric shock within the duration of the shock interval.
  • the frequency outputs an electrical stimulation signal of the shock intensity to the human body position. For example, if the shock interval is 1 second, the shock duration is 9 seconds, and the shock intensity is 20V, then every 1 second, the control electrode outputs 20V to the human body at a preset frequency of 10KHz for 9 seconds. Stimulus signal.
  • the corresponding acupuncture simulation parameters include temperature control mode, temperature control intensity and temperature control time, wherein the temperature control mode includes three kinds of temperature rise, temperature drop and hold; the temperature control intensity can be the degree of temperature rise, the degree of temperature drop, It can also be a specific temperature value; the temperature control time represents the duration of temperature rise, temperature drop or hold.
  • the corresponding acupuncture simulation parameters include vibration intensity, vibration frequency and vibration time, which can massage and stimulate the acupuncture points through the vibration at the acupuncture points of the human body.
  • An acupuncture simulation module can output a variety of acupuncture analog signals for a full range of acupuncture simulations.
  • the electrical stimulation signal is output to simulate acupuncture
  • the heating signal is outputted to simulate moxibustion heat
  • the vibration signal is output to simulate massage.
  • the acupuncture simulation parameter corresponding to any acupuncture analog signal is null, it means that the acupuncture simulation module does not need to output such acupuncture analog signals.
  • the electrical stimulation frequency in the acupuncture simulation parameter corresponding to the electrical stimulation signal is null, the electrode inside the acupuncture simulation module is not subjected to electric shock control, that is, no electrical stimulation signal is generated.
  • Step S104 Acquire a second data parameter of the user during the acupuncture simulation, and perform preset processing based on the second data parameter.
  • the second data parameter includes second environmental data and/or second physiological data of the user.
  • the second data parameter of the user is also obtained in real time during the acupuncture simulation, and the preset processing is performed based on the second data parameter.
  • the specific content of the second physiological data and the second environmental data included in the second data parameter may be determined by a technician according to actual needs, such as the type of user physiological data included in the second physiological data, and the first physiological data.
  • the user physiological data included in the same type may also include the physiological data types owned by the user.
  • the preset processing method based on the second data parameter is not limited in the embodiment of the present invention, and the specific processing method may also be determined by a technician according to actual conditions, such as the type of user physiological data included in the second physiological data and the first When the physiological data is the same, the second physiological data may be compared with the first physiological data and the simulation mode may be adjusted as a method of analyzing the second physiological data.
  • the method includes:
  • the second data parameter is analyzed to update the user's usage effect data.
  • the usage effect data of the user is obtained for various purposes, including but not limited to using the use effect data to evaluate the use effect of the acupuncture simulation, and the next acupuncture simulation according to the use effect data.
  • the simulation mode is adjusted as described below.
  • monitoring the second environmental data mainly has two purposes: 1. directly using the environmental data to determine whether the environment in which the user is located is suitable for acupuncture, and recording the usage effect data for analysis, such as when monitoring In the environmental data, the temperature is too low, and the temperature is too low for the user to perform acupuncture. At this time, it is determined that the environment in which the user is located is not suitable for acupuncture, and the acupuncture simulation of the user is stopped. 2, using the environmental data + second physiological data comprehensive analysis mode to enhance the user's physical condition determination when simulating acupuncture Accuracy for subsequent analysis of the second physiological data, making the generated usage effect data more accurate.
  • the wearable device will first relax the user's massage, and then perform acupuncture simulation.
  • the method further includes:
  • Step S201 Acquire feature information of the user.
  • the characteristic information refers to the user's physical symptom information, such as shoulder acid, rapid heartbeat, fever and headache.
  • Step S202 determining first physiological data that needs to be collected according to the feature information.
  • the user can directly input his or her own symptom information, such as rapid heartbeat, fever, and headache, because the user sometimes has difficulty determining the true physical condition of the user.
  • the wearable device judges the user's possible physical condition according to the symptoms, and may cause the abnormal physiological data to be the first physiological data to be collected in the first data parameter. .
  • the physiological data to be collected is determined according to the actual symptom information of the user, so that the determination of the physical condition has a higher accuracy rate, and at the same time, the collection and processing of the first physiological data in the present invention is reduced. The amount of work.
  • step S102 includes:
  • Step S301 comparing the first data parameter with the pre-stored reference parameter, and determining the position of the activated one or more acupuncture simulation modules disposed on the wearable device according to the comparison result.
  • the preset reference parameter is used to compare and analyze the obtained first data parameter to obtain a physical condition (ie, a comparison result) of the user, such as hypertension, hyperglycemia, arrhythmia, lumbar vertebrae. Strain, and so on.
  • a physical condition ie, a comparison result
  • acupuncture needs to be performed on the corresponding acupuncture points Therefore, after determining the physical condition of the user, the embodiment of the present invention determines the acupuncture simulation module of the corresponding acupoint position to be activated according to the physical condition of the user.
  • Step S302 Determine, according to the comparison result, an simulation mode of the activated acupuncture simulation module, where the simulation mode includes: a type of the analog signal and a corresponding acupuncture simulation parameter.
  • the simulation mode corresponding to each acupuncture simulation module is also It may be different.
  • the simulation mode corresponding to each acupuncture simulation module is determined according to the feature value.
  • the user is found to be in a state of muscle fatigue.
  • the corresponding acupuncture simulation module is activated, and the corresponding muscles are activated and activated by the acupuncture simulation module. Simulation mode.
  • the acupuncture simulation module to be activated and the corresponding simulation mode are automatically determined, so that the acupuncture simulation is accurately controlled.
  • the method includes:
  • each acupuncture analog signal corresponds to a simulation unit, and the simulated unit simulates the corresponding acupuncture stimulation, and outputs corresponding acupuncture analog signals, such as an electric shock unit for outputting an electrical stimulation signal, a heating unit for outputting a heating signal, and a vibration unit. Used to output vibration signals.
  • the acupuncture simulation schemes of each acupuncture point may be different, and the simulation units required to be activated by different acupuncture simulation schemes are also different.
  • Step S402 the analog unit of the acupuncture simulation module is activated according to the type of the analog signal, and the simulation unit comprises: an electric shock unit, a heating unit and a vibration unit.
  • the analog unit required to be activated by the acupuncture simulation module is determined according to the type of the acupuncture analog signal included in the simulation mode. For example, when the simulation mode includes the electrical stimulation signal and the vibration signal, the corresponding shock unit is activated. And the vibration unit for subsequent output of the acupuncture analog signal.
  • step S403 the simulation unit outputs the acupuncture analog signal according to the corresponding acupuncture simulation parameter.
  • the acupuncture simulation module controls the analog unit to output the corresponding acupuncture analog signal according to the acupuncture simulation parameters in the simulation mode, such as the vibration unit according to the vibration intensity, the vibration frequency and the vibration time in the simulation mode. Simulate parameters to output the corresponding vibration signal.
  • the acupuncture simulation module performs the accurate output of the acupuncture simulation signal according to the analog signal type in the simulation mode and the corresponding acupuncture simulation parameter, so that the acupuncture simulation can be quantitatively controlled, so that the acupuncture simulation can achieve precise control.
  • the method includes:
  • Step S501 collecting physiological data of the same kind as the first physiological data as the second physiological data in the second data parameter.
  • the second physiological data is set to be the same as the user physiological data included in the first physiological data, so as to be compared and analyzed with the first physiological data.
  • Step S502 comparing the second data parameter with the corresponding physiological data in the first data parameter, and obtaining the use effect data. Comparing the second data parameter with the physiological data for the first data parameter, and when there is physiological data that changes in the second physiological data, it indicates that the acupuncture simulation has a certain effect, such as the second physiological
  • the blood pressure data in the data is significantly reduced, indicating that the acupuncture simulation has a certain effect on blood pressure regulation, and the comparison result is recorded as the use effect data.
  • the effect of discomfort after the user is used may be generated. For example, when the intensity of the vibration massage is too high, the muscle of the user may be caused. In the event of damage, the discomfort at this time should also be recorded in the usage data.
  • the comparison result can effectively reflect the actual acupuncture simulation use effect of the user, and the obtained use effect data is more reliable.
  • the physiological data having abnormality in all the physiological data that can be collected by the user is used as the second physiological data of the required collection and analysis, and the second physiological data and the first physiological data are The data were compared and analyzed to obtain the changes of the physical condition before and after the user's acupuncture simulation, and the actual physical condition after the acupuncture simulation, and the corresponding actual effect data were analyzed.
  • the embodiment of the present invention needs to occupy With a large amount of processor resources, it brings a large load to the chip of the wearable device, and requires a long analysis time to obtain the usage effect data. It should be understood that although the embodiment of the present invention is generally inferior to the fifth embodiment of the present invention, the embodiment of the present invention may still be an optional implementation manner of S104, and should belong to the protection scope of the present invention.
  • the method further includes:
  • the abnormal physiological data is taken as the first physiological data of the user.
  • the specific steps are: detecting the first physiological data of the user, and determining the physiological data to be collected in the first data parameter according to the first physiological data having the abnormality.
  • the first physiological data may be all physiological data of the user, or may be physiological data collected during a common physical examination, and may be determined by a technician and a physician according to actual conditions.
  • the first physiological data is preferably all physiological data that can be collected by the wearable device.
  • the processing chip of the wearable device is greatly burdened, and the processing time is changed. Long, and if the type of physiological data is too small, it will affect the accuracy of the user's physical condition. Therefore, in the embodiment of the present invention, in order to ensure the accuracy of the physical condition determination as much as possible, while reducing the time of the determination process and reducing the processor operation load, the abnormal physiological data will be used as the physiological data to be collected. In the simulation mode matching, the calculation pressure of the matching process is greatly reduced, and the accuracy of the physical condition determination can also be guaranteed.
  • the method includes:
  • Step S701 generating a plurality of sets of simulation modes that match the first data parameter.
  • the doctor will provide a variety of different acupuncture programs for massage and health care according to the actual situation of the user.
  • an optional acupuncture program to increase the stimulation intensity is provided, and for some users with weaker body functions, while providing a common acupuncture program
  • An optional acupuncture program to reduce the stimulation intensity is also available.
  • different acupuncture programs may have different acupuncture cycles and acupuncture costs, they give users more choices, so that users can be based on actual conditions. Choose the acupuncture program that works best for you. Therefore, the user cannot select or change the determined simulation mode as compared with determining only one simulation mode.
  • a plurality of different different types are generated in advance. The simulation mode is available for the user to select.
  • Step S702 receiving a mode selection instruction input by the user, and selecting a set of simulation modes from the plurality of sets of simulation modes according to the mode selection instruction.
  • the wearable device After selecting the desired simulation mode, the user issues a corresponding mode selection command.
  • the wearable device selects a final simulation mode from the generated plurality of simulation modes according to a mode selection instruction input by the user.
  • the embodiment of the invention pre-generates a plurality of simulation modes, and determines the simulation mode that needs to be finally adopted according to the user's selection, so that the user has more room for selection, and the resulting final simulation mode can be more suitable for the actual needs of the user. To make the acupuncture simulation effect more accurate.
  • a preferred embodiment 8 of the present invention it comprises:
  • the body state of the human body is divided into a virtual state and a state of evil.
  • acupuncture can play a role in tonic, and the body Acupuncture can play a role in diarrhea in the case of being evil and showing the reality of the heat.
  • the simulation mode is determined in step S102, the physiological data of the user is detected, and the actual physical state of the user is determined according to the detected physiological data, thereby determining the subsequent adjustment of the simulation mode. .
  • the electrical stimulation acupuncture analog signal output is set when the user performs inhalation.
  • the user When the user is in a state of emptiness, he needs to use acupuncture to make up the deficiency. According to the theory of respiration and diarrhea in the traditional Chinese acupuncture theory, it is believed that the needle can play a tonic effect when the body exhales. Therefore, at this time, the user exhales. Acupuncture is best when used.
  • the simulation mode when it is detected that the user is in a virtual state, the simulation mode is modified, and the electrical stimulation is started when the user exhales.
  • the user When the user is in a state of evil, he needs to use acupuncture to diarrhea. According to the theory of respiration and diarrhea in the traditional Chinese acupuncture theory, it is believed that the needle can have a diarrhea effect when inhaling, so at this time, the user inhales. Acupuncture is best when used.
  • the simulation mode when it is detected that the user is in an evil state, the simulation mode is modified, and the electrical stimulation is started when the user inhales.
  • the combination of the diarrhea theory and the application of the present invention enables the user's acupuncture simulation effect to be further improved.
  • the method further includes:
  • Step S901 Acquire a second data parameter of the user.
  • the wearable device can only perform acupuncture simulation on the user by using the pre-stored simulation mode, and can only adjust the simulation mode before or after the acupuncture simulation starts, and at the same time, each time between the acupuncture simulations They are independent of each other, that is, they have nothing to do with the previous acupuncture simulation, which makes the matching of the analog mode applicability lower.
  • Step S902 adjusting the simulation mode based on the acquired second data parameter.
  • the simulated mode is determined according to the second data parameter saved in the history. The adjustment, if the vibration intensity is too large, causes the user to have muscle damage. After reading the second data parameter, the embodiment of the present invention limits the vibration intensity in the simulation mode to ensure the user's use safety.
  • the method includes:
  • Step S1001 Based on the simulation mode, the acupuncture simulation module in the control device outputs the acupuncture analog signal to the human body position attached to the acupuncture simulation module, and simultaneously acquires the second data parameter of the user.
  • the embodiment of the invention is mainly for the acupuncture simulation, and the real-time feedback adjustment according to the second data parameter
  • the second data parameter of the analysis user is collected in real time, and the simulation mode being executed is adjusted in real time according to the obtained usage effect data. For example, when any one or two of the second physiological data and the second environmental data are detected to exceed a preset threshold, it is determined that the usage effect data is abnormal, and the wearable device stops the acupuncture simulation to the user to ensure the safety of the user.
  • the preset threshold corresponding to the second physiological data and the second environmental data is set by the technician according to actual needs.
  • Step S1002 Perform real-time adjustment on the simulation mode based on the acquired second data parameter.
  • the embodiment of the invention obtains the second data parameter of the acupuncture simulation in real time, and adjusts the simulation mode of the acupuncture simulation in real time, so that the acupuncture simulation can realize the real-time adaptation to the actual situation of the user, and can ensure the safety of the user during the acupuncture simulation.
  • Another specific embodiment 11 of the present invention further includes:
  • Step S1101 Acquire personal information of the user.
  • the embodiment of the present invention needs to read the personal information data input by the user after generating the simulation mode.
  • Personal information data includes, but is not limited to, the user's gender, age, and history of the disease.
  • step S1102 the simulation mode is adjusted according to the personal information.
  • the technician pre-stores the adjustment relationship between the personal information data and the simulation mode in the wearable device. For example, when the user age is less than 18 years old, all the stimulation strengths in the simulation mode are reduced to the original one. 0.7 times.
  • the generated simulation mode is modified and adjusted according to the adjustment relationship corresponding to the personal information data and the simulation mode.
  • the generated simulation mode is modified and adjusted by combining the personal information data of the user, so that the finally generated simulation mode is more in line with the user's personal situation.
  • the first data parameter formed by the environmental data and/or the physiological data of the user is first acquired,
  • the corresponding output acupuncture analog signal that is, the output of the acupuncture analog signal is determined according to the actual physical or environmental condition of the user before the acupuncture simulation, and the acupuncture simulation signal can be acupuncture simulation based on the objective data of the user before the acupuncture simulation.
  • the user's matching degree is improved to achieve the effect of accurate acupuncture simulation.
  • the second data parameter of the user is also obtained, so that the effect of the acupuncture simulation can be objectively evaluated; and the data of the acupuncture simulation can be specifically adjusted according to the obtained use effect data, thereby improving The controllability of the acupuncture simulation effect.
  • FIG. 12 is a block diagram showing the structure of the acupuncture analog signal output device provided in Embodiment 12 of the present invention.
  • the acupuncture analog signal output device includes:
  • the data obtaining module 121 is configured to acquire a first condition data parameter, where the data parameter includes environment data and/or physiological data of the user.
  • the mode determining module 122 is configured to determine, according to the first data parameter, an analog mode of the activated acupuncture simulation module and the acupuncture simulation module disposed on the wearable device.
  • the output control module 123 is configured to control the acupuncture simulation module to output an acupuncture analog signal to the attached human body position according to the simulation mode.
  • the effect analysis module 124 is configured to acquire a second data parameter of the user during the acupuncture simulation, and perform preset processing based on the second data parameter.
  • the device further includes:
  • the feature acquisition module is configured to acquire feature information of the user.
  • a data determining module configured to determine, according to the feature information, the first physiological data that needs to be collected.
  • the mode determining module 122 includes:
  • the location determining submodule is configured to compare the first data parameter with a pre-stored reference parameter, and determine, according to the comparison result, the location of the activated one or more acupuncture simulation modules disposed on the wearable device.
  • the mode determining sub-module is configured to determine, according to the comparison result, a simulation mode of the activated acupuncture simulation module, the simulation mode includes: a type of the analog signal and a corresponding acupuncture simulation parameter.
  • the effect analysis module 124 includes:
  • the second data parameter is analyzed to update the user's usage effect data.
  • the effect analysis module 124 includes:
  • An effect obtaining module configured for a second data parameter of the user
  • the mode adjustment module is configured to adjust the simulation mode based on the acquired second data parameter.
  • the disclosed systems, systems, and methods may be implemented in other ways.
  • the system embodiment described above is merely illustrative.
  • the division of the unit is only a logical function division, and the actual implementation may have another division manner, for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, system or unit, and may be electrical, mechanical or otherwise.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the embodiments of the present invention.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

Abstract

L'invention concerne un procédé et un dispositif de simulation d'acupuncture. Le procédé comprend : l'acquisition de premiers paramètres de données de condition (S101) ; la détermination, en fonction des premiers paramètres de données, d'un module de simulation d'acupuncture activé et d'un mode de simulation (S102) ; la commande du module de simulation d'acupuncture pour l'amener à délivrer un signal de simulation d'acupuncture en direction d'une partie du corps associée en fonction du mode de simulation (S103) ; l'acquisition de seconds paramètres de données d'un utilisateur pendant une simulation d'acupuncture et la mise en œuvre d'un traitement prédéfini sur la base des seconds paramètres de données (S104). Le procédé permet de déterminer un signal de simulation d'acupuncture en fonction de données objectives d'un utilisateur avant une simulation d'acupuncture, permet de renforcer le degré de correspondance entre la simulation d'acupuncture et l'utilisateur et permet d'obtenir un effet de simulation d'acupuncture précis. Des données physiologiques de l'utilisateur sont également acquises après la mise en œuvre de l'acupuncture, de façon à ce que l'effet de la simulation d'acupuncture puisse être évalué objectivement. De plus, des ajustements ciblés peuvent être apportés aux données de simulation d'acupuncture en fonction des données d'effet d'utilisation acquises, de façon à renforcer la maîtrise de l'effet de simulation d'acupuncture.
PCT/CN2017/112423 2017-02-14 2017-11-22 Procédé et dispositif de simulation d'acupuncture WO2018149202A1 (fr)

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