WO2020007267A1 - 远端智能穴位刺激器以及应用于其的刺激装置 - Google Patents
远端智能穴位刺激器以及应用于其的刺激装置 Download PDFInfo
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- WO2020007267A1 WO2020007267A1 PCT/CN2019/094259 CN2019094259W WO2020007267A1 WO 2020007267 A1 WO2020007267 A1 WO 2020007267A1 CN 2019094259 W CN2019094259 W CN 2019094259W WO 2020007267 A1 WO2020007267 A1 WO 2020007267A1
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL 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
- A61H39/00—Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
Definitions
- the present invention relates to medical equipment, and more particularly, it relates to a remote intelligent acupoint stimulator and a stimulating device applied thereto.
- Acupoints scientific names of acupoints, refer to special points on the meridian line of the human body. Chinese medicine can use acupuncture or massage, tap, moxibustion to stimulate the corresponding meridian points to treat diseases.
- Acupuncture is a typical representative of this type.
- Acupuncture is a traditional Chinese medicine method that stimulates acupuncture points to prevent and treat diseases.
- electroacupuncture is generally the most successful in clinical application, but most of them are inserted into the body with an electroacupuncture, and then inserted into another acupuncture point with another electroacupuncture, and the current is passed between the two points with a potential difference, which cannot be proved by current medical technology.
- the path taken by the current is the meridian, but electrical stimulation has its medical effects on acupoints, or human tissues and nerve fibers, and many fields have been proven by many studies.
- an object of the present invention is to provide a remote intelligent acupoint stimulator and a stimulating device applied to the remote intelligent acupoint stimulator. Monitor and treat patients.
- a remote intelligent acupoint stimulator comprising a main body of a photoelectric therapy box, a data transmission device, and a remote control device
- the main body of the photoelectric therapy box comprising a control device for a therapy box And a plurality of stimulation devices connected to it
- the data transmission device communicates with the therapy box control device and the remote control device
- the remote control device obtains external data and outputs control instructions according to the external data
- the data transmission device accepts And transmitting a control instruction to the treatment box control device, which controls the operation of the stimulation device according to the control instruction, the stimulation device is used to perform photoelectric stimulation on the patient
- the data transmission device includes a wireless transmission part, and the wireless transmission Piece of wireless connection between the therapy box control device and the remote control device, the therapy box control device and the remote control device exchange data
- the main body of the photoelectric therapy box is connected to a body temperature detection mechanism
- the remote control device includes data Handle components and human-computer interaction interfaces
- the present invention is further configured that: the treatment box control device is connected to a body temperature detection mechanism, the body temperature detection mechanism detects and outputs a body temperature detection value to the treatment box control device, and the treatment box control device pre-stores a standard body temperature range value. The body temperature detection value exceeds a standard body temperature range value, and the treatment box control device controls the stimulation device to perform photoelectric stimulation on the patient.
- the invention is further configured that the therapy box control device transmits data output by the body temperature detection mechanism to a remote control device, and the remote control device controls the stimulation device to perform photoelectric stimulation on the patient according to the data transmitted by the therapy box control device.
- the body temperature detecting mechanism includes a plurality of first temperature sensors for detecting body temperature in a single point of the human body and a plurality of double point detection groups for detecting body temperature in two points symmetrical to the human body.
- the acupoint detection group includes two second temperature sensors; when the temperature detection value output by the first temperature sensor exceeds a standard body temperature range value, the therapy box control device controls the stimulation device to work; The body temperature detection value output by the two temperature sensors is different, or the body temperature detection value output by the second temperature sensor exceeds a standard body temperature range value, and the treatment box control device controls the stimulation device to work.
- the treatment box control device is connected to a pulse detection mechanism
- the pulse detection mechanism includes a pulse sensor
- the pulse sensor detects and outputs a pulse detection value to the treatment box control device.
- the invention is further configured that the remote control device further includes a warning mechanism, and the remote control device pre-stores a standard body temperature range value and a standard pulse range value, and when the body temperature detection value accepted by the remote control device exceeds the standard body temperature range Value, two second temperature sensors of the same double-acuity detection group have different body temperature detection values or pulse detection values that exceed the standard pulse range value, the warning mechanism outputs warning information to alert the staff, and the treatment box control device controls the stimulation device Do a stimulus
- the therapy box control device is connected with a timer, the timer counts and outputs a timing value, the therapy box control device controls the stimulation device to turn on according to the timer value, and the remote control device operates the therapy box
- the control device controls the timer; the therapy box control device can also control the stimulation device to turn off according to the timing value.
- the treatment box control device is provided with an extended interface for electrically connecting a human biological information detection mechanism with an electric signal.
- a stimulation device applied to a remote intelligent acupoint stimulator comprising a housing, a battery pack installed in the housing, and a battery pack connected below the battery pack.
- An adapter device, the casing is in the shape of a circular ring with upper and lower openings, and the lower part of the casing is expanded and provided with double-sided adhesive.
- the battery pack includes a battery, a base detachably connected below the battery, and
- the conductive connecting piece for forming a current at the positive and negative terminals of the battery further includes a charger for charging the battery.
- the charger includes an induction coil 1 and a plug on one side of the battery. There is a second induction coil adapted to the first induction coil, and the second induction coil is in communication with the positive or negative terminal of the battery.
- the present invention is further provided that the lower end of the battery pack passes through the base downward and is connected to an adapter device.
- the adapter device is provided with at least two wires, and one end of each of the wires is connected to the adapter. The other end of the switching device is connected to the positive or negative terminal of the battery.
- the invention is further provided that the extension device is detachably connected to the lower end of the adapter device.
- the extension device is provided with a conductive wire and a contact terminal adapted to fit a human body acupoint, the contact terminal is connected to an end of the conductive wire remote from the battery pack, and is fixed on the peripheral side of the acupoint by medical tape.
- a lower end of the adapter device is detachably connected with an LED light emitting component, and the LED light emitting component can be replaced with one of red light, yellow light, blue light, green light, far-infrared light emitting diode and laser diode. Or more than one light emitting component.
- the invention is further configured that: a micro-electrode is detachably connected to the lower end of the adapter device, and the micro-electrode is provided with two equal-length electrical conductors, and the electrical conductor generates a potential difference when it contacts the surface skin for stimulating the body surface Or acupuncture points.
- the micro-electrode includes two electrical conductors, one of which is controlled by a circuit and is arranged in the form of a ring-shaped discontinuity, and a potential difference is generated when the other electrical conductor contacts the surface skin for use in Stimulate the body surface or acupuncture points.
- micro-electrode has a hole-shaped design, which can be combined with an acupuncture needle discharge to stimulate acupuncture points or to be treated in a diseased place.
- a stimulation device applied to a remote intelligent acupoint stimulator comprising a housing, a battery pack installed in the housing, and a battery pack connected below the battery pack.
- the shell of the adapter device is a circular ring with an upper and lower opening. The lower part is expanded outward and is provided with a double-sided tape.
- the battery pack is electrically connected with a charging plug.
- the present invention has the following beneficial effects: the main body of the photoelectric therapy box is connected with a biological information acquisition device and a wireless transmission part, and the remote control device is wirelessly connected through the wireless transmission part, so that the staff can remotely monitor the patient through the remote control device
- the human body information assists in judging the treatment effect and controls the main body of the phototherapy box to perform the treatment.
- FIG. 1 is a system block diagram I of a first embodiment of the present invention, which is mainly used to show the overall structure;
- Embodiment 1 of the present invention is a system block diagram 2 of Embodiment 1 of the present invention, which is mainly used to show the structure of the main body of the phototherapy box;
- 3 and 5 are the structures of the stimulating device according to the first embodiment when they are LED light, laser, and electric;
- FIG. 6 is a system block diagram 3 of Embodiment 1 of the present invention, which is mainly used to show the structure of a body temperature detection mechanism;
- FIG. 7 is a schematic diagram of the installation and use structure of the pulse detection mechanism according to the first embodiment of the present invention.
- FIG. 8 is an exploded view of Embodiment 3 of the present invention
- FIG. 9 is a partial sectional view of Embodiment 3 of the present invention.
- FIG. 10 is an enlarged view of part A of FIG. 9;
- FIG. 11 is an enlarged view of part B of FIG. 9;
- FIG. 12 is a perspective view of a charger according to a third embodiment of the present invention.
- FIG. 13 is a perspective view of a fourth embodiment of the present invention.
- 15 is a cross-sectional view of a fifth embodiment of the present invention, which is mainly used to display LED light emitting components;
- 16 is a cross-sectional view of a sixth embodiment of the present invention, which is mainly used to show two conductors of equal length;
- FIG. 17 is a cross-sectional view of Embodiment 8 of the present invention, which is mainly used to show the connection structure of acupuncture needles.
- Pulse detection mechanism 51, pulse sensor; 6, timer; 121, housing; 122, battery pack; 123, adapter; 125, double-sided tape; 126, battery; 127, base; 128, conductive connecting piece; 129, wire 1210, contact terminal; 1211, LED light-emitting component; 1212, extension device; 1213, micro-electrode; 1214, acupuncture needle; 1218, charger; 1219, induction coil 1; 1220, plug; 1221, induction coil 2; 1222 1223, conductive body; 1225, conductive wire; 7, charging plug.
- the remote intelligent acupoint stimulator includes a phototherapy box main body 1.
- the phototherapy box main body 1 includes a plurality of stimulation devices 12 for performing photoelectric stimulation on a patient and a treatment box control device 11 for controlling the same. .
- the therapy box control device 11 includes an MCU and a plurality of electronic switches (which include at least one controllable electronic driver such as a transistor, a relay, and the like) connected to the electrical signals.
- the plurality of electronic switches are connected in series to the master of one or more stimulation devices 12 respectively.
- the MCU can control the opening and closing of the stimulation device 12 by controlling the electronic switch, that is, the staff can control the work of the stimulation device 12 through the therapy box control device 11.
- the stimulus of the stimulating device 12 may be a light stimulus or an electrical stimulus. If the stimulus is a light stimulus, the stimulating device 12 includes at least an LED lamp or a laser transmitter; if the stimulating device is a stimulus, the stimulating device 12 includes at least an electrode for conducting a microcurrent. (Conducting pin, conductive sheet).
- the treatment box control device 11 is integrated on the PCB and installed in a lightweight protective box made of plastic or alloy.
- the stimulation device 12 selects an LED light
- the treatment box control device 11 can be connected to an LED drive controller to control the connection.
- the phototherapy box main body 1 is provided with a housing 13 for mounting and fixing the stimulation device 12.
- the style of the housing 13 can be selected in various forms. Two examples are exemplified in the embodiment of the present invention: one is referred to the patent with publication number CN106621067A.
- the housing 13 is substantially cylindrical, and one end is open
- the stimulating device 12 is installed inside the cylindrical housing, and the stimulating end faces the open end of the cylindrical housing, or the body surface; the end face of the casing 13 contacting the human body is installed with adhesive to assist the stimulating device 12 connected to the human body.
- the casing 13 is configured as a wound-stick structure, or a flexible patch structure. At this time, the light generator and the current generator both adopt a patch type to achieve the use effect.
- the main body 1 of the photoelectric therapy box When in use, the main body 1 of the photoelectric therapy box is first connected to a power source, and then the stimulation device 12 is controlled by the therapy box control device 11 to perform photoelectric stimulation on the patient to achieve the purpose of treatment.
- the phototherapy box body 1 is connected to a data transmission device 2, and a remote control device 3 is connected to the data transmission device 2, that is, a worker can cooperate with the data transmission device 2 to the phototherapy box body through the remote control device 3. 1 is remotely controlled, so that the use of the phototherapy box main body 1 by the staff is not restricted by the region, which is more convenient for the staff.
- the data transmission device 2 includes a wireless transmission member 21.
- the wireless transmission member 21 uses a 3G / 4G / GPRS DTU communication module, a Bluetooth module, and the like, which have relatively appropriate specifications.
- the wireless transmission member 21 is integrated on the PCB of the treatment box control device 11; the wireless transmission member 21 is data connected to the treatment box control device 11 (labeled in Figure 2), or the photoelectric treatment
- the MCU of the box body 1 is wirelessly connected to a cloud server and performs data interaction with the cloud server; at this time, the phototherapy box body 1 can feed back real-time data of each module to the cloud for users to monitor it, and the user can remotely
- the terminal control device 3 cooperates with the server to send a control instruction to control the phototherapy box main body 1.
- the wireless transmitting member 21 can also directly wirelessly connect to the remote control device 3. If a Bluetooth module is used, the wireless transmission member 21 can directly wirelessly connect to a remote control device 3 configured with a Bluetooth module.
- the specific selection of the wireless transmission member 21 may be a short-distance or long-distance transmission selection according to the actual needs of the staff.
- the remote control device 3 includes a data processing component 31 and a human-computer interaction interface 32.
- the remote control device 3 may be a computer, a mobile phone, or a tablet computer.
- the data processing component 31 and the human-computer interaction interface 32 respectively correspond to the data chip of the device. (Main control board), keyboard and display.
- a computer, a mobile phone, or a tablet computer needs to be equipped with a network card, a Bluetooth module, and the like.
- a tablet computer is preferred. It has cloud access capabilities, can be carried around, can be used for data processing, and has a relatively large touch display screen for human-computer interaction, which is convenient for workers to operate.
- the remote control device 3 is wirelessly connected to the cloud server, and the data connection between the remote control device 3 and the therapy box control device 11 is realized through the cloud server; or the remote control device 3 is directly connected to the wireless transmission member 21 wirelessly, so that the staff can use the remote control device 3 to pair the photoelectricity.
- the treatment box main body 1 is remotely controlled.
- a body temperature detection mechanism 4 for monitoring the body surface temperature of each acupoint of the patient is connected to the main body 1 of the phototherapy box.
- the body temperature detection mechanism 4 includes a plurality of first temperature sensors 41 and a plurality of double-acuity detection groups 42;
- the first temperature sensor 41 is used to detect the temperature of a single point of the human body, and the double point detection group 42 is used to detect the temperature of the left and right symmetrical two points of the human body.
- the double point detection group 42 includes two second temperature sensors 421.
- the body temperature detection settings at the single and double acupoints of the human body are more in line with the requirements of traditional Chinese medicine acupuncture therapy, and on the other hand, the main effect of the photoelectric therapy box body can be better.
- the first temperature sensor 41 and the second temperature sensor 421 can be directly installed on the casing 13 provided with the stimulating device 12 for convenience of operation; the detection ends of the first temperature sensor 41 and the second temperature sensor 421 are directed to the body surface. In the measurement, the detection end abuts the body surface.
- the first temperature sensor 41 and the second temperature sensor 421 are used to detect the body surface temperature and output the body temperature detection value to the treatment box control device 11.
- the worker pre-stores the standard body temperature range value in the treatment box control device 11.
- the treatment box control device 11 controls the stimulation device 12 to work;
- the therapy box control device 11 controls the stimulation device 12 to work for stimulation and treatment.
- a pulse detection mechanism 5 is further connected to the main body 1 of the photoelectric therapy box.
- the pulse detection mechanism 5 includes a pulse sensor 51, and the electrical signal of the pulse sensor 51 is connected to the control device 11 of the therapy box. Or a ring-shaped elastic band structure is used for detecting and outputting the pulse detection value to the treatment box control device 11.
- the worker pre-stores the standard pulse range value in the treatment box control device 11.
- the therapy box control device 11 controls the stimulation device 12 to work.
- the therapy box control device 11 controls the stimulation device 12 to work; the therapy box control device 11 sets the activated stimulation device 12 to be designated and is attached to a special acupuncture point. Stimulation device 12 to enhance the patient's pulse) to ensure the effect of treatment.
- the number of stimulation devices 12 can be set equal to the sum of the number of the first temperature sensor 41 and the second temperature sensor 421; each stimulation device 12 and the first temperature sensor 41 installed on its casing
- the second temperature sensors 421 are connected one-to-one correspondingly.
- the one-to-one corresponding connection refers to a corresponding connection on the control structure.
- first temperature sensor 41, the second temperature sensor 421, and the stimulation device 12 may be labeled separately. If the stimulation device 12 is labeled A, the first temperature sensor 41 or the second temperature sensor 421 installed in the casing is also A, and so on. In use, if the A-number temperature sensor is abnormal, the therapy box control device 11 correspondingly controls the A-number stimulation device 12.
- the therapy box control device 11 (labeled in FIG. 2) uploads the body temperature detection value and the pulse detection value to the cloud server through the wireless transmission member 21, and then the cloud server
- the temperature detection value and the pulse detection value are transmitted to the remote control device 3; or directly transmitted to the remote control device 3 through the wireless transmission member 21, so that the staff can remotely obtain the body temperature detection value and the pulse detection value, and operate according to the detection values.
- the remote control device 3 outputs an appropriate control instruction to control the phototherapy box main body 1 more accurately.
- the remote control device 3 in order to enable the staff to detect the patient's abnormality (temperature abnormality or pulse abnormality) in time, the remote control device 3 further includes a warning mechanism 34.
- the warning mechanism 34 includes a digital display screen of the remote control device 3, which is stored in the remote control device 3 in a program manner.
- the warning mechanism 34 outputs a warning message to remind the staff, it can also be said that the remote control device 3 outputs a warning message.
- the warning information may be an information box annotated with the warning content, and when the condition is satisfied, the information box pops up.
- the warning mechanism 34 may also be configured to include an LED warning light or a buzzer, which is connected to the data processing component 31 and installed on the outer wall of the remote control device 3.
- an LED warning light or a buzzer which is connected to the data processing component 31 and installed on the outer wall of the remote control device 3.
- a timer 6 is mounted on the phototherapy box main body 1.
- the timer 6 signal is connected to the therapy box control device 11, and measures and outputs the timing value to the therapy box control device 11.
- the timer 6 is controlled by the remote control device 3 by operating the therapy box control device 11. At this time, it can be set to be controlled by the staff to turn on the timer 6, and when the timing value output by the timer 6 is equal to the preset timing value, the therapy box control device 11 Automatically controlled stimulation device 12 is turned on. With this setting, after the timer 6 is set by the worker, the main body 1 of the phototherapy box can automatically start the treatment work at a regular time.
- the timer 6 can also be set to: pre-store the self-starting time value in the treatment box control device 11, when the body temperature detection value exceeds the standard body temperature range value, or the body temperature output by two second temperature sensors 421 of the same double-acuity detection group 42
- the therapy box control device 11 controls the timer 6 to start timing; subsequently, when the timer 6 counts equal to the self-starting time value, the therapy box control device 11 controls the stimulation device 12 to work.
- the setting of the timer 6 makes the main body 1 of the phototherapy box not perform the treatment immediately after detecting the abnormal body temperature of the patient, and it will wait for a period of time. If the staff does not respond during this period, and the timer 6 reaches the self-starting time Value, the phototherapy box body 1 will automatically perform the treatment.
- the preset timing value and self-starting time value are set by the worker through the remote control device 3.
- the treatment box control device 11 is equipped with an expansion interface 110.
- the expansion interface 110 selects a common universal serial interface or an IEEE 1451 protocol family interface for sensors, so that subsequent users can externally connect blood glucose, blood oxygen, Human biological information detection mechanism such as blood pressure, thereby enhancing the applicability of the present invention.
- the staff first fixes each stimulation device 12 on the single and double acupoints of the patient, and turns on the main body 1 of the phototherapy box. At this time, the worker can remotely control the phototherapy box main body 1 through the remote control device 3 to perform the treatment work --- manual control mode.
- the warning mechanism 34 of the remote control device 3 sends a warning message to the worker to remind the worker.
- the therapy box control device 11 controls the stimulation device 12 to work according to the control instruction output by the remote control device 3 --- Manual operation mode
- the timer 6 on the main body 1 of the phototherapy box starts timing.
- the treatment box control device 11 automatically controls the operation of the stimulation device 12 --- self-starting mode.
- the remote intelligent acupoint stimulator differs from the first embodiment in that it is not necessary to preset various human health data reference indicators in the treatment box control device 11, for example, a standard temperature range value and a standard pulse range value, and the treatment box control device 11 Do not do comparative analysis and processing of relevant data, that is, the treatment box control device 11 processes the signal (such as digital-to-analog conversion, amplification, and filtering) after receiving the signal from the sensor (module), and then transmits it to the wireless transmission part 21, Or directly transmitted to the wireless transmission member 21, and then the wireless transmission member 21 sends the data to the remote control device 3; the above-mentioned various human health data reference indicators can be set in the remote control device 3, and it performs automatic response control, Or the remote control device 3 only receives the relevant data, and depends on the medical staff, that is, the user's operation response.
- the treatment box control device 11 processes the signal (such as digital-to-analog conversion, amplification, and filtering) after receiving the signal from the sensor (modul
- the stimulating device applied to a remote intelligent acupoint stimulator differs from the first or second embodiment in that: Referring to FIGS. 8, 9 and 14, the stimulating device 12 includes a housing 121 and a battery pack 122 installed in the housing 121. And an adapter 123 connected below the battery pack 122.
- the casing 121 is formed in a circular shape with upper and lower openings, and a layer of annular double-sided adhesive 125 is expanded and attached to the lower portion of the casing 121.
- the battery pack 122 includes a battery 126, a base 127 detachably connected below the battery 126, and a conductive connection piece 128 for connecting to the positive and negative terminals of the battery 126 to form a current.
- the battery 126 is a button battery, which is integrated in a hollow cylinder and is inserted in the upper part of the housing 121.
- the base 127 may be configured to cover and connect to the lower opening of the hollow cylinder.
- the lower end of the battery pack 122 is connected to the switching device 123.
- At least two wires 129 are connected to the switching device 123.
- One end of each wire 129 is connected to the switching device 123, and the other end is connected to the switching device 123.
- the positive terminal or the negative terminal of the battery 126 is connected.
- an extension device 1212 is detachably connected to the lower end of the adapter device 123, and the adapter device 123 and the extension device 1212 are connected and fixed in a threaded manner.
- positive and negative terminals can be fixed in the extension device 1212; the wires in the adapter device 123 are respectively connected to the positive and negative terminals of the extension device 1212 that can be fixed with positive and negative terminals.
- the positive terminal in the adapter device 123 is connected to the positive terminal in the extension device 1212
- the negative terminal in the adapter device 123 is connected to the extension device 1212.
- the internal negative terminals are connected, so that the current can be conducted from the above-mentioned adapter device 123 to the extension device 1212.
- the lower end of the extension device 1212 extends downward and is installed with two conductive wires 1225.
- the conductive wire 1225 is connected to a contact terminal 1210 for fitting the human body acupuncture point.
- the contact terminal 1210 is connected to an end of the conductive wire 1225 away from the battery pack 122, and It is fixed on the side of the acupoint with medical tape.
- the lower port needs to be adhered to the skin with a double-sided adhesive 125. If a lead wire 129 is present at this time, the stimulation device 12 will be fixed on the skin. Therefore, in order to improve the stability of the phototherapy box during installation, six clamping grooves 1222 are provided at the lower end of the housing 121 for the wires 129 to pass through. In this way, the lead wire 129 can pass out of the casing 121 from the above-mentioned clamping groove 1222, and does not need to be connected to the lower end opening of the casing 121, thereby improving the stability of the stimulation device 12 during installation, which is very convenient. .
- the stimulating device 12 further includes a charger 1218 for charging the battery 126.
- the charger 1218 includes an induction coil 1219, which is electrically connected with An adapted plug 1220; an induction coil two 1221 adapted to the induction coil 1 1219 is provided above the battery pack 122, and the induction coil two 1221 is in communication with the positive or negative terminal of the battery 126. Therefore, when the power in the battery 126 is used up, the operator can reverse the upper end of the stimulation device 12 to the upper end surface of the electrical appliance. At this time, the induction coil 1 1219 and the induction coil 2 12 are close to each other. According to the principle of electromagnetic induction, The wireless transmission of electric energy is realized, so that the battery 126 is charged, and thus the charging effect of the stimulation device 12 can be realized, which is very convenient and labor-saving.
- the stimulation device applied to a remote intelligent acupoint stimulator differs from the third embodiment in that, as shown in FIG. 13, the lower end of the above-mentioned extension device 1212 extends and is installed with four conductive wires 1225 and contacts for conforming to the human acupuncture point.
- the terminal 1210, the contact terminal 1210 is connected to an end of the corresponding conductive wire 1225 away from the battery pack 122, and is fixed on the side of the acupuncture point with medical tape. Therefore, the operator only needs to install one stimulation device 12 to perform acupuncture treatment on multiple points at the same time, thereby improving the utilization rate of the stimulation device 12.
- the stimulation device applied to a remote intelligent acupoint stimulator differs from the third embodiment in that the difference is that, as shown in FIG. 15, an LED light emitting component 1211 is detachably connected to the lower end of the above-mentioned adapter 123, and the LED light emitting component 1211 is mounted on another extension device 1212, and the LED light emitting component 1211 is a small light emitting diode. Therefore, the operator only needs to remove the original extension device 1212, and at the same time, the extension device 1212 with the LED light-emitting component 1211 is re-threaded to the adapter device 123 for replacement.
- the light emitting diode can be selected from an infrared diode or a laser diode.
- the stimulation device applied to the remote intelligent acupoint stimulator differs from the third embodiment in that, as shown in FIG. 16, a micro electrode 1213 is detachably connected to the lower end of the adapter 123, and the micro electrode 1213 is installed in another extension device.
- two equal-length electrical conductors 1223 are fixed on the lower end of the micro-electrode 1213.
- two conductors 1223 are arranged in parallel at an interval of 1-2 cm, and a potential difference can be generated when the two conductors 1223 contact the superficial skin, which can be used to stimulate the body surface or acupuncture points.
- the potential generated by the micro-electrode 1213 is used to stimulate the acupoints of the human body, which can achieve the same effect when using acupuncture needles to penetrate into the surface layer of the human skin. Therefore, when the micro-electrode 1213 is used to stimulate the acupuncture points instead of the traditional acupuncture Health and safety.
- the stimulation device applied to the remote intelligent acupoint stimulator differs from the sixth embodiment in that in order to improve the stimulation and effect on the acupoint and the surrounding skin, the micro-electrode 1213 includes two electrical conductors 1223, and one of the electrical conductors 1223 It is controlled by a circuit and is set in the form of a ring-shaped discontinuity. When it comes into contact with another conductor 1223, it generates a potential difference to stimulate the body surface or acupoints. From this, the operator only made one of the conductors 1223 into a ring shape with a notch at one end (ie, a hook shape), and the free end of the other conductor 1223 was placed at the center of the conductor 1223 in the annular discontinuous form.
- the electrodes contact the skin acupuncture points and form a current turbine, thereby performing uniform electrical stimulation around the acupuncture points, thereby improving the acupuncture points. And the irritating effects and effects of its surrounding skin.
- the stimulation device applied to a remote intelligent acupoint stimulator differs from the sixth embodiment in that, as shown in FIG. 17, a micro electrode 1213 is detachably connected to the lower end of the adapter 123, and the micro electrode 1213 is installed in another extension device. 1212 on.
- the above-mentioned micro-electrode 1213 has a hole-shaped design, or a hole is opened at the lower end, which can be inserted with an acupuncture needle 1214 to discharge, and is used to stimulate acupuncture points or locations to be treated.
- the operator inserts the acupuncture needle 1214 into the end of the miniature electrode 1213.
- the current is passed through the acupuncture needle 1214.
- the current also stimulates the human epidermis, thereby improving Stimulating effects on acupuncture points and surrounding skin.
- the stimulation device applied to a remote intelligent acupoint stimulator differs from the third embodiment in that: Referring to FIG. 14, the battery of the battery pack 122 is a rechargeable battery, and the positive and negative lead wires are electrically connected with the charging plug 7.
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Abstract
一种远端智能穴位刺激器以及应用于其的刺激装置,包括光电疗盒主体(1)、数据传输装置(2)以及远端控制装置(3),数据传输装置(2)连通光电疗盒主体(1)和远端控制装置(3),光电疗盒主体(1)连接有体温检测机构(4)。该远端智能穴位刺激器以及应用于其的刺激装置,可对人体做光疗和电疗,以治疗疾病,同时其可方便医护人员远程对患者做监控和治疗。
Description
本发明涉及医疗设备,更具体地说,它涉及一种远端智能穴位刺激器以及应用于其的刺激装置。
穴位,学名腧穴,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疾病。
随着科技的发展和社会的进步,中医逐渐开始结合科技,以更加合理和有效的形式得到发展,针灸就是这一类的典型代表。针灸是以刺激人体穴位预防、治疗疾病的中医疗法。
中医理论认为,经络为五脏六腑之气通于体表路径,使用微型电极产生的电流刺激体表穴位,通过局部电流刺激经络之气的活动来调整人体功能,可达到防病治病的治疗方法。
目前临床应用普遍以电针治疗最为成功,但是大多以电针进入人体后,再以另一电针插入另一疗治穴位后,将电流以电位差在两点间通过,以现今医学技术无法证明电流所走通路即为经络,但是电刺激对穴位、或人体组织神经纤维等多个领域有其医疗效果,已有诸多研究证明。
既然电流所走通路系依导电系数而非必然由经络运行,那么在中医理论中,透过针灸刺激特定穴位以达到治疗该疾病的理论,一旦使用电针治疗就会产生许多不确定性,因为人体为导电体,该电流所行走的非规范性通路有许多可能通过其他穴位与经络,而产生未知因素致而会影响治疗,因此需要提出一种新的方案来解决这个问题。
发明内容
针对现有技术存在的不足,本发明的目的在于提供一种远端智能穴位刺激器以及应用于其的刺激装置,其可对人体做光疗和电疗,以治疗疾病,同时其可方便医护人员远程对患者做监控和治疗。
本发明的上述技术目的是通过以下技术方案得以实现的:一种远端智能穴位刺激器,包括光电疗盒主体、数据传输装置以及远端控制装置,所述光电疗盒主体包括疗盒控制装置以及多个与之连接的刺激装置,所述数据传输装置连通疗盒控制装置和远端控制装置,所述远端控制装置获取外部数据,并根据外部数据输出控制指令,所述数据传输装置接受并传输控制指令到疗盒控制装置,所述疗盒控制装置根据控制指令控制刺激装置工作,所述刺激装置用于对患者做光电刺激;所述数据传输装置包括无线传输件,所述无线传输件无线连通疗盒控制装置和远端控制装置,所述疗盒控制装置和远端控制装置互传数据;所述光电疗盒主体电信号连接有体温检测机构;所述远端控制装置包括数据处理组件和人机交互界面。
本发明进一步设置为:所述疗盒控制装置连接有体温检测机构,所述体温检测机构检测并输出体温检测值到疗盒控制装置,所述疗盒控制装置预存储有标准体温范围值,当体温检测值超出标准体温范围值,所述疗盒控制装置控制刺激装置对患者做光电刺激。
本发明进一步设置为:所述疗盒控制装置传输体温检测机构输出的数据至远端控制装置,所述远端控制装置根据疗盒控制装置传输的数据控制刺激装置对患者做光电刺激。
本发明进一步设置为:所述体温检测机构包括若干用于对人体单穴做体温检测的第一温度传感器以及若干用于对人体左右对称的双穴做体温检测的双穴检测组,所述双穴检测组包括两个第二温度传感器;当所述第一温度传感器输出的温度检测值超出标准体温范围值,所述疗盒控制装置控制刺激装置工作;当同一双穴检测组的两个第二温度传感器输出的体温检测值不同,或第二温度传感器输出的体温检测值超出标准体温范围值,所述疗盒控制装置控制刺激装置工作。
本发明进一步设置为:所述疗盒控制装置连接有脉搏检测机构,所述脉搏检测机构包括脉搏传感器,所述脉搏传感器检测并输出脉搏检测值到疗盒控制装置。
本发明进一步设置为:所述远端控制装置还包括警示机构,所述远端控制装置内预存储标准体温范围值和标准脉搏范围值,当远端控制装置接受的体温检测值超出标准体温范围值、同一双穴检测组的两个第二温度传感器输出的体温检测值不同或脉搏检测值超出标准脉搏范围值,所述警示机构输出警示信息提示工作人员,所述疗盒控制装置控制刺激装置做刺激动作
本发明进一步设置为:所述疗盒控制装置连接有定时器,所述定时器计时并输出计时值,所述疗盒控制装置根据计时值控制刺激装置开启,所述远端控制装置操纵疗盒控制装置对定时器控制;所述疗盒控制装置还可根据计时值控制刺激装置关闭。
本发明进一步设置为:所述疗盒控制装置设置有用于电信号连接人体生物讯息检测机构的拓展接口。
为实现上述目的,本发明提供还了如下技术方案:一种应用于远端智能穴位刺激器的刺激装置,包括壳体、安装在所述壳体内的电池组以及连接在所述电池组下方的转接装置,所述壳体呈上下开口的圆环状,在壳体下部外扩并设有双面胶,所述电池组包括电池、可拆卸连接在所述电池下方的底座以及用于与所述电池正负极端形成电流的导电连接片,还包括用于所述电池充电的充电器,所述充电器内设有感应线圈一,其一侧设有插头;所述电池组的上方设有与所述感应线圈一相适配的感应线圈二,所述感应线圈二与电池正极端或者负极端相连通。
本发明进一步设置为:所述电池组的下端向下穿过所述底座并连接于转接装置,所述转接装置上设有至少两根导线,每根所述导线的一端连接于所述转接装置,其另一端与所述电池正极端或者负极端相连接。
本发明进一步设置为:所述转接装置的下端可拆卸连接有延伸装置。
本发明进一步设置为:所述延伸装置上设有导电线和用于贴合人体穴位的接触端子,接触端子连接在所述导电线远离电池组的一端,且采用医用胶带固定在穴位周侧。
本发明进一步设置为:所述转接装置的下端可拆卸连接有LED发光组件,所述LED发光组件可置换为红光、黄光、蓝光、绿光、远红外线发光二极管和激光二极管中的一种或一种以上的发光组件。
本发明进一步设置为:所述转接装置的下端可拆卸连接有微型电极,所述微型电极设置有两根等长导电体,所述导电体接触表层皮肤时产生电位差以用于刺激体表或穴位。
本发明进一步设置为:所述微型电极包括两根导电体,其中一根所述导电体由电路控制并设置为环状间断形式,与另一根导电体接触表层皮肤时产生电位差以用于刺激体表或穴位。
本发明进一步设置为:所述微型电极呈孔状设计,可结合一针灸针放电,用以刺激穴位或需治疗病所。
为实现上述目的,本发明提供还了如下技术方案:一种应用于远端智能穴位刺激器的刺激装置,包括壳体、安装在所述壳体内的电池组以及连接在所述电池组下方的转接装置,所述壳体呈上下开口的圆环状,下部外扩并设有双面胶,所述电池组电连接有充电插头。
综上所述,本发明具有以下有益效果:光电疗盒主体连接生物信息采集装置、无线传输件,并通过无线传输件无线连接远端控制装置,从而工作人员可以通过远端控制装置远程监控患者的人体信息,辅助判断治疗效果,控制光电疗盒主体进行治疗工作。
图1为本发明的实施例一的系统框图一,主要用以展示整体结构;
图2为本发明的实施例一的系统框图二,主要用以展示光电疗盒主体的结构;
图3、图4和图5分别是实施例一的刺激装置以LED光、激光以及电方式时的结构;
图6为本发明的实施例一的系统框图三,主要用以展示体温检测机构的结构;
图7为本发明的实施例一的脉搏检测机构的安装使用结构示意图;
图8为本发明的实施例三的爆炸图;图9为本发明的实施例三的局部剖视图;
图10为图9的A部放大图;图11为图9的B部放大图;
图12为本发明的实施例三的充电器的立体图;
图13为本发明的实施例四的立体图;
图14为本发明的实施例三和实施例九的局部爆炸图;
图15为本发明的实施例五的剖视图,主要用于展示LED发光组件;
图16为本发明的实施例六的剖视图,主要用于展示两根等长导电体;
图17为本发明的实施例八的剖视图,主要用于展示针灸针的连接结构。
图中:1、光电疗盒主体;11、疗盒控制装置;110、拓展接口;12、刺激装置;13、外壳;2、数据传输装置;21、无线传输件;3、远端控制装置;31、数据处理组件;32、人机交互界面;34、警示机构;4、体温检测机构;41、第一温度传感器;42、双穴检测组;421、第二温度传感器;5、脉搏检测机构;51、脉搏传感器;6、定时器;121、壳体;122、电池组;123、转接装置;125、双面胶;126、电池;127、底座;128、导电连接片;129、导线;1210、接触端子;1211、LED发光组件;1212、延伸装置;1213、微型电极;1214、针灸针;1218、充电器;1219、感应线圈一;1220、插头;1221、感应线圈二;1222、卡接槽;1223、导电体;1225、导电线;7、充电插头。
下面结合附图和实施例,对本发明进行详细描述。
实施例一
远端智能穴位刺激器,参照图1和图2,包括光电疗盒主体1,光电疗盒主体1包括多个用于对患者进行光电刺激的刺激装置12以及对其控制的疗盒控制装置11。
疗盒控制装置11包括MCU以及多个与之电信号连接的电子开关(其至少包括一个晶体管、继电器等可控电子驱动件),多个电子开关分别串联至一个或多个刺激装置12的主电路上,使得MCU可以通过控制电子开关来控制刺激装置12启闭,即工作人员可以通过疗盒控制装置11控制刺激装置12工作。
刺激装置12的刺激可以是光刺激或是电刺激,若是光刺激,则刺激装置12至少包括LED灯或是激光发射器;若是电刺激,则刺激装置12至少包括用于导电传输微电流的电极件(导电针、导电片)。
疗盒控制装置11集成于PCB上,并安装在一塑料或合金的轻质防护盒体内;当刺激装置12选择LED灯,疗盒控制装置11除了可以连接LED驱动控制器对其连接控制,还可选择直接连接,例如:选择芯片的1个引脚(I/O)接电阻,电阻一端接芯片,另一端接的LED的负极,LED的正极接电源,此时即可利用芯片对其LED做控制。
由于使用时,需要将刺激装置12固定在人体指定部位,所以光电疗盒主体1设置包括用于安装固定刺激装置12的外壳13。外壳13的样式可选择多种形式,本发明的实施例中例举两种:一种参考公布号为CN106621067A的专利,如图3、4或5所示,外壳13大致呈柱状,其一端开口,刺激装置12安装在柱状壳体内部,且刺激端朝向柱状壳体端部开口侧,或者说朝向体表;外壳13接触人体的端面安装设置粘胶,以辅助将刺激装置12连接在人体上。另一种的,外壳13设置为创口贴结构,或者说柔性贴片结构,此时光发生器和电流发生器均对应采用贴片式类型,以达到使用效果。
使用时,光电疗盒主体1先连通电源,再通过疗盒控制装置11控制刺激装置12工作,即对患者进行光电刺激,达到治疗的目的。
参照图1,光电疗盒主体1连接有数据传输装置2,并通过数据传输装置2连接有远端控制装置3,即工作人员可以通过远端控制装置3配合数据传输装置2对光电疗盒主体1进行远程操控,从而工作人员对光电疗盒主体1的使用不受地域限制,进而更方便工作人员使用。
参照图1,数据传输装置2包括无线传输件21,无线传输件21采用规格相对合适的3G/4G/GPRS DTU通讯模块、蓝牙模块等。
若采用3G/4G/GPRS DTU通讯模块,无线传输件21集成于疗盒控制装置11的PCB板上;无线传输件21数据连接于疗盒控制装置11(标示于图2),或者说光电疗盒主体1的MCU,且无线连接一云端服务器,并和该云端服务器进行数据交互;此时光电疗盒主体1可以将各模块的实时数据反馈至云端,供用户对其监控,同时用户可以通过远端控制装置3配合服务器发送控制指令对光电疗盒主体1控制。
无线传输件21还可以直接无线数据连接远端控制装置3。若采用蓝牙模块,无线传输件21可直接无线数据连接配置有蓝牙模块的远端控制装置3。无线传输件21的具体选择可以根据工作人员的实际需求是短距,或是长距传输选择。
远端控制装置3包括数据处理组件31和人机交互界面32;远端控制装置3可以是计算机、手机或平板电脑等,此时数据处理组件31和人机交互界面32分别对应设备的数据芯片(主控板)、键盘和显示屏。为实现和无线传输件21互连,计算机、手机或平板电脑需要配备网卡、蓝牙模块等。平板电脑为优选,其具有云端访问能力,可随身携带,可以进数据处理,且用作人机交互的触摸显示屏相对较大,方便工作人员进行操作。
远端控制装置3无线连接于云端服务器,通过云端服务器实现和疗盒控制装置11数据连接;或远端控制装置3直接无线连接无线传输件21,从而工作人员可以通过远端控制装置3对光电疗盒主体1进行远程控制。
参照图1和图6,在光电疗盒主体1连接有用于监测患者各个穴位的体表温度的体温检测机构4,体温检测机构4包括若干第一温度传感器41和若干双穴检测组42;其中第一温度传感器41用于对人体单穴做体温检测,而双穴检测组42用于对人体左右对称的双穴做体温检测,双穴检测组42包括两个第二温度传感器421。
人体单双穴处的体温检测设置一方面更符合中医针灸疗法要求,另一方面可以使得光电疗盒主体的治疗效果更佳。
第一温度传感器41和第二温度传感器421为方便操作,可直接安装在设置刺激装置12的外壳13上;第一温度传感器41和第二温度传感器421的检测端朝向体表,若为接触式测量,则检测端抵触体表,第一温度传感器41和第二温度传感器421用于检测体表温度,并输出体温检测值给疗盒控制装置11。
使用时,工作人员在疗盒控制装置11内预存储标准体温范围值。
A、当第一温度传感器41输出给疗盒控制装置11的温度检测值超出标准体温范围值时,疗盒控制装置11控制刺激装置12工作;
B、当同一双穴检测组42的两个第二温度传感器421输出给疗盒控制装置11的体温检测值不同,或第二温度传感器421输出给疗盒控制装置11的体温检测值超出标准体温范围值时,疗盒控制装置11控制刺激装置12工作,做刺激、治疗工作。
参照图1和图7,在光电疗盒主体1上还连接有脉搏检测机构5,脉搏检测机构5包括脉搏传感器51,脉搏传感器51电信号连接于疗盒控制装置11,可以安装设置在手环或指环式松紧带结构的一壳体上,用于检测并输出脉搏检测值到疗盒控制装置11。
使用时,工作人员在疗盒控制装置11内预存储标准脉搏范围值。当脉搏检测值超出标准脉搏范围值,疗盒控制装置11控制刺激装置12工作。为加强使用效果,脉搏检测值超出标准脉搏范围值时,疗盒控制装置11控制刺激装置12工作;疗盒控制装置11设置启用的刺激装置12为指定的,是附着于特殊穴位(刺激后可以增强患者脉搏)的刺激装置12,以保证治疗效果。
为了保证治疗的精度和效果,刺激装置12的数量可以设置为等于第一温度传感器41、第二温度传感器421的数量之和;各个刺激装置12与安装在其壳体上的第一温度传感器41、第二温度传感器421一一对应连接。该一一对应连接是指控制结构上的对应连接。
进一步,还可以对第一温度传感器41、第二温度传感器421以及刺激装置12分别标号,若刺激装置12标号为A,则安装其壳体的第一温度传感器41或第二温度传感器421同样为A,以此类推。使用时,A编号的温度传感器异常,则疗盒控制装置11对应控制A编号的刺激装置12。
参照图1,疗盒控制装置11(标示于图2)在接受到体温检测值和脉搏检测值后,通过无线传输件21将体温检测值和脉搏检测值上传到云端服务器,再通过云端服务器将体温检测值和脉搏检测值传输到远端控制装置3上;或直接通过无线传输件21传输到远端控制装置3上,以便工作人员远程获取体温检测值和脉搏检测值,并根据检测值操纵远端控制装置3输出合适的控制指令,更加准确的对光电疗盒主体1控制。
参照图1,为了使得工作人员能够及时发现患者出现异常(体温异常或脉搏异常),远端控制装置3还包括警示机构34。
警示机构34包括远端控制装置3的数显屏,其以程序的方式设置存储于远端控制装置3内。当远端控制装置3接受的体温检测值超出标准体温范围值、同一双穴检测组42的两个第二温度传感器421输出的体温检测值不同、或脉搏检测值超出标准脉搏范围值,警示机构34输出警示信息提示工作人员,也可以说远端控制装置3输出警示信息。警示信息可以为一注释有警示内容的信息框,条件满足时,弹出该信息框。
警示机构34还可以设置为包括LED报警灯或是蜂鸣器,其连接于数据处理组件31,安装在远端控制装置3的外壁。当远端控制装置3接受的体温检测值超出标准体温范围值、同一双穴检测组42的两个第二温度传感器421输出的体温检测值不同、或脉搏检测值超出标准脉搏范围值,数据处理组件31控制LED报警灯,或是蜂鸣器开启,以输出警示信息提示工作人员。
参照图2,在光电疗盒主体1上安装有在定时器6,定时器6信号连接于疗盒控制装置11,计时并输出计时值到疗盒控制装置11。
定时器6由远端控制装置3操纵疗盒控制装置11控制,此时可以设置为工作人员控制定时器6开启,且当定时器6输出的计时值等于预设定时值时,疗盒控制装置11自动控制刺激装置12开启。采用该设置,工作人员在设置好定时器6后,光电疗盒主体1可以定时自动开始治疗工作。
定时器6还可以设置为:在疗盒控制装置11内预存储自启动时间值,当体温检测值超出标准体温范围值,或同一双穴检测组42的两个第二温度传感器421输出的体温检测值不同时,疗盒控制装置11控制定时器6开启计时;后续当定时器6计时等于自启动时间值,疗盒控制装置11控制刺激装置12工作。定时器6的设置使得本发明检测到患者体温异常后,光电疗盒主体1不会立刻进行治疗工作,其会等待一段时间,如果在此期间工作人员无回应,且定时器6达到自启动时间值,光电疗盒主体1才会自动进行治疗工作。
预设定时值、自启动时间值由工作人员通过远端控制装置3设置。
参照图2,疗盒控制装置11安装有拓展接口110,拓展接口110选择常见的通用串行接口、或是传感器用IEEE 1451协议族接口,以便后续使用者根据实际需求,外接血糖、血氧、血压等人体生物讯息检测机构,从而增强本发明的适用性。
使用过程:工作人员先将各刺激装置12分别固定在患者的单、双穴位上,并开启光电疗盒主体1。此时工作人员可以通过远端控制装置3远程控制光电疗盒主体1进行治疗工作---人工操控模式。
当体温检测机构4输出的体温检测值超出标准体温范围值、或同一双穴检测组42的两个第二温度传感器421输出的体温检测值不同时、或脉搏检测机构5输出的脉搏检测值超出标准脉搏范围值时,远端控制装置3的警示机构34向工作人员发出警示信息提示工作人员。
后续分为两种情况:
当工作人员及时获取提示信息,并根据体温检测值和脉搏检测值对远端控制装置3做相应操作,疗盒控制装置11根据远端控制装置3输出的控制指令控制刺激装置12工作---人工操作模式;
当工作人员没有及时根据体温检测值和脉搏检测值对远端控制装置3进行控制,做出反应,光电疗盒主体1上的定时器6开始定时,当定时器6计时等于自启动时间值,疗盒控制装置11自动控制刺激装置12工作---自启动模式。
实施例二
远端智能穴位刺激器,与实施例一的区别在于:在疗盒控制装置11内不必预设各种人体健康数据参考指标,例如:标准体温范围值和标准脉搏范围值,且疗盒控制装置11不做相关数据的对比分析处理,即疗盒控制装置11在接收传感器(模块)反馈的信号后,对其做处理(例如:数模转化、放大、滤波)后传输至无线传输件21,或直接传输至无线传输件21,再由无线传输件21将数据发送至远端控制装置3;上述各种人体健康数据参考指标可设置于远端控制装置3内,由其做自动响应控制,或远端控制装置3仅仅接收相关数据,依靠医护人员,即使用者操作响应。
实施例三
应用于远端智能穴位刺激器的刺激装置,与实施例一或二的区别在于:参照图8、图9和图14,刺激装置12包括壳体121、安装在壳体121内的电池组122以及连接在电池组122下方的转接装置123。
参照图9,壳体121呈上下开口的圆环状,在壳体121下部外扩并贴附有一层环形的双面胶125。同时,电池组122包括电池126、可拆卸连接在电池126下方的底座127以及用于与上述电池126正负极端连接、形成电流的导电连接片128。其中电池126为纽扣电池,其集成于一个空心柱体内,插设于壳体121的上部;底座127可设置为盖合连接于空心柱体的下开口。
其中如图8和图10所示,电池组122的下端连接转接装置123,转接装置123上连接至少两根导线129,每根导线129的一端连接于转接装置123,其另一端与电池126正极端或者负极端相连接。与此同时,在转接装置123的下端可拆卸连接有延伸装置1212,转接装置123和延伸装置1212之间设置为以螺纹连接的方式连接固定。
参照图10,延伸装置1212内可固定有正、负接线柱;转接装置123内的导线分别连接有适配延伸装置1212内可固定有正、负接线柱的正、负接线柱。当转接装置123和延伸装置1212相互贴合旋紧时,转接装置123内的正接线柱与延伸装置1212内的正接线柱相连,而转接装置123内的负接线柱与延伸装置1212内的负接线柱相连,由此电流可以从上述转接装置123导通到延伸装置1212处。
同时该延伸装置1212的下端向下延伸并安装有两根导电线1225,导电线1225连接有用于贴合人体穴位的接触端子1210,接触端子1210连接在导电线1225远离电池组122的一端,且采用医用胶带固定在穴位周侧。
如图8和图9所示,由于刺激装置12在使用时,需要将其下端口采用双面胶125黏贴在皮肤上,此时若存在导线129则会影响到刺激装置12固定在皮肤上的稳定性,因此为了提高光电疗盒在安装时的稳定性,在壳体121下端开设有六个供上述导线129穿过的卡接槽1222。由此导线129可从上述卡接槽1222处穿出到壳体121外,而不需要可接在壳体121的下端开口处,由此提高了刺激装置12在安装时的稳定性,十分方便。
为了方便对刺激装置12进行充电,如图11和图12所示,该刺激装置12还包括用于对电池126充电的充电器1218,充电器1218内设有感应线圈一1219,其电连接有适配的插头1220;电池组122的上方设有与感应线圈一1219相适配的感应线圈二1221,感应线圈二1221与电池126正极端或者负极端相连通。由此当电池126内的电量用完后,操作者可将上述刺激装置12的上端倒扣在电器的上端面,此时感应线圈一1219和感应线圈二 1221之间相互靠近,根据电磁感应原理实现电能的无线传输,从而对电池126充电,由此即可实现对刺激装置12的充电作用,十分的方便和省力。
实施例四
应用于远端智能穴位刺激器的刺激装置,与实施例三的区别在于:如图13所示,上述延伸装置1212的下端延伸并安装有四根导电线1225和用于贴合人体穴位的接触端子1210,上述接触端子1210连接在相对应导电线1225远离电池组122的一端,且采用医用胶带固定在穴位周侧。由此操作者只需安装一个刺激装置12即可同时对多处穴位进行针灸治疗,从而提高了对上述刺激装置12的利用率。
实施例五
应用于远端智能穴位刺激器的刺激装置,与实施例三的区别在于:的区别在于:如图15所示,上述转接装置123的下端可拆卸连接有LED发光组件1211,该LED发光组件1211安装在另一延伸装置1212上,该LED发光组件1211为一个小型的发光二极管。由此操作者只需取下原先的延伸装置1212,同时将上述带有LED发光组件1211的延伸装置1212重新螺纹连接在转接装置123上即可进行更换十分的方便。发光二极管可选择红外二极管或激光二极管。
实施例六
应用于远端智能穴位刺激器的刺激装置,与实施例三的区别在于:如图16所示,转接装置123的下端可拆卸连接有微型电极1213,该微型电极1213安装在另一延伸装置1212上,其中上述微型电极1213下端固定有两根等长导电体1223。其中,两根导电体1223之间间隔1-2cm平行设置,并且当上述两根导电体1223接触表层皮肤时能够产生电位差,由此即可用于刺激体表或穴位。由此采用微型电极1213产生的电位对人体的穴位进行刺激,能够达到用针灸针深入到人体肌肤表层时同样的效果,由此在采用微型电极1213代替传统针灸针刺的方式刺激穴位时更加的卫生和安全。
实施例七
应用于远端智能穴位刺激器的刺激装置,与实施例六的区别在于:为了提高对穴位及其周边皮肤的刺激作用和效果,微型电极1213包括两根导电体1223,其中一根导电体1223由电路控制并设置为环状间断形式,与另一根导电体1223接触表层皮肤时产生电位差以用于刺激体表或穴位。由此操作者仅将其中一根导电体1223制成一端缺口的环状形式(即圆钩形状),其另一根导电体1223的自由端放置在上述环状间断形式的导电体1223的中心部位处。由此操作者在将上述两根导电体1223贴在皮肤上时,此时电极接触皮肤穴位,并形成电流涡轮,由此即可在上述穴位的四周进行均匀电刺激,从而提高了对上述穴位及其周边皮肤的刺激作用和效果。
实施例八
应用于远端智能穴位刺激器的刺激装置,与实施例六的区别在于:如图17所示,转接装置123的下端可拆卸连接有微型电极1213,该微型电极1213安装在另一延伸装置1212上。其中,上述微型电极1213呈孔状设计,或者说下端开有孔洞,其可插接一针灸针1214放电,用以刺激穴位或需治疗的位置。由此操作者将针灸针1214插入到微型电极1213的端部,此时针灸针1214通入电流,此时不仅能够达到针灸刺激穴位的效果,而且电流也会对人体表皮进行刺激,从而提高了对穴位及其周边皮肤的刺激效果。
实施例九
应用于远端智能穴位刺激器的刺激装置,与实施例三的区别在于:参照图14,电池组122的电池为充电电池,其正负极引出导线电连接有充电插头7。
以上所述仅是本发明的优选实施方式,本发明的保护范围并不仅局限于上述实施例,凡属于本发明思路下的技术方案均属于本发明的保护范围。
Claims (18)
- 一种远端智能穴位刺激器,其特征在于:包括光电疗盒主体(1)、数据传输装置(2)以及远端控制装置(3),所述光电疗盒主体(1)包括疗盒控制装置(11)以及多个与之连接的刺激装置(12),所述数据传输装置(2)连通疗盒控制装置(11)和远端控制装置(3),所述远端控制装置(3)获取外部数据,并根据外部数据输出控制指令,所述数据传输装置(2)接受并传输控制指令到疗盒控制装置(11),所述疗盒控制装置(11)根据控制指令控制刺激装置(12)工作,所述刺激装置(12)用于对患者做光电刺激;所述数据传输装置(2)包括无线传输件(21),所述无线传输件(21)无线连通疗盒控制装置(11)和远端控制装置(3),所述疗盒控制装置(11)和远端控制装置(3)互传数据;所述光电疗盒主体(1)电信号连接有体温检测机构(4);所述远端控制装置(3)包括数据处理组件(31)和人机交互界面(32)。
- 根据权利要求1所述的远端智能穴位刺激器,其特征在于:所述疗盒控制装置(11)连接有体温检测机构(4),所述体温检测机构(4)检测并输出体温检测值到疗盒控制装置(11),所述疗盒控制装置(11)预存储有标准体温范围值,当体温检测值超出标准体温范围值,所述疗盒控制装置(11)控制刺激装置(12)对患者做光电刺激。
- 根据权利要求1所述的远端智能穴位刺激器,其特征在于:所述疗盒控制装置(11)传输体温检测机构(4)输出的数据至远端控制装置(3),所述远端控制装置(3)根据疗盒控制装置(11)传输的数据控制刺激装置(12)对患者做光电刺激。
- 根据权利要求2所述的远端智能穴位刺激器,其特征在于:所述体温检测机构(4)包括若干用于对人体单穴做体温检测的第一温度传感器(41)以及若干用于对人体左右对称的双穴做体温检测的双穴检测组(42),所述双穴检测组(42)包括两个第二温度传感器(421),当所述第一温度传感器(41)输出的温度检测值超出标准体温范围值,所述疗盒控制装置(11)控制刺激装置(12)工作;当同一双穴检测组(42)的两个第二温度传感器(421)输出的体温检测值不同,或第二温度传感器(421)输出的体温检测值超出标准体温范围值,所述疗盒控制装置(11)控制刺激装置(12)工作。
- 根据权利要求4所述的远端智能穴位刺激器,其特征在于:所述疗盒控制装置(11)连接有脉搏检测机构(5),所述脉搏检测机构(5)包括脉搏传感器(51),所述脉搏传感器(51)检测并输出脉搏检测值到疗盒控制装置(11)。
- 根据权利要求5所述的远端智能穴位刺激器,其特征在于:所述远端控制装置(3)还包括警示机构(34),所述远端控制装置(3)内预存储标准体温范围值和标准脉搏范围值,当远端控制装置(3)接受的体温检测值超出标准体温范围值、同一双穴检测组(42)的两个第二温度传感器(421)输出的体温检测值不同或脉搏检测值超出标准脉搏范围值,所述警示机构(34)输出警示信息提示工作人员。
- 根据权利要求6所述的远端智能穴位刺激器,其特征在于:当远端控制装置(3)接受的体温检测值超出标准体温范围值、同一双穴检测组(42)的两个第二温度传感器(421)输出的体温检测值不同或脉搏检测值超出标准脉搏范围值,所述疗盒控制装置(11)控制刺激装置(12)做刺激动作。
- 根据权利要求6所述的远端智能穴位刺激器,其特征在于:所述疗盒控 制装置(11)连接有定时器(6),所述定时器(6)计时并输出计时值,所述疗盒控制装置(11)根据计时值控制刺激装置(12)开启,所述远端控制装置(3)操纵疗盒控制装置(11)对定时器(6)控制;所述疗盒控制装置(11)还可根据计时值控制刺激装置(12)关闭。
- 根据权利要求1所述的远端智能穴位刺激器,其特征在于:所述疗盒控制装置(11)设置有用于电信号连接人体生物讯息检测机构的拓展接口(110)。
- 一种应用于远端智能穴位刺激器的刺激装置,包括壳体(121)、安装在所述壳体(121)内的电池组(122)以及连接在所述电池组(122)下方的转接装置(123),所述壳体(121)下部外扩并设有双面胶(125),所述电池组(122)包括电池(126)、可拆卸连接在所述电池(126)下方的底座(127)以及用于与所述电池(126)正负极端形成电流的导电连接片(128),其特征在于:还包括用于所述电池(126)充电的充电器(1218),所述充电器(1218)内设有感应线圈一(1219),其一侧设有插头(1220);所述电池组(122)的上方设有与所述感应线圈一(1219)相适配的感应线圈二(1221),所述感应线圈二(1221)与电池(126)正极端或者负极端相连通。
- 根据权利要求10所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述电池组(122)的下端向下穿过所述底座(127)并连接于所述转接装置(123),所述转接装置(123)上设有至少两根导线(129),每根所述导线(129)的一端连接于所述转接装置(123),其另一端与所述电池(126)正极端或者负极端相改连接。
- 根据权利要求11所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述转接装置(123)的下端可拆卸连接有延伸装置(1212)。
- 根据权利要求12所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述延伸装置(1212)上设有导电线(1225)和用于贴合人体穴位的接触端子(1210),接触端子(1210)连接在所述导电线(1225)远离电池组(122)的一端,且采用医用胶带固定在穴位周侧。
- 根据权利要求12所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述转接装置(123)的下端可拆卸连接有LED发光组件(1211),所述LED发光组件(1211)可置换为红光、黄光、蓝光、绿光、远红外线发光二极管和激光二极管中的一种或一种以上的发光组件。
- 根据权利要求12所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述转接装置(123)的下端可拆卸连接有微型电极(1213),所述微型电极(1213)设置有两根等长导电体(1223),所述导电体(1223)接触表层皮肤时产生电位差以用于刺激体表或穴位。
- 根据权利要求15所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述微型电极(1213)包括两根导电体(1223),其中一根所述导电体(1223)由电路控制并设置为环状间断形式,与另一根导电体(1223)接触表层皮肤时产生电位差以用于刺激体表或穴位。
- 根据权利要求16所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述微型电极(1213)呈孔状设计,可结合一针灸针(1214)放电,用以刺激穴位或需治疗病所。
- 根据权利要求10所述的一种应用于远端智能穴位刺激器的刺激装置,其特征在于:所述电池组(122)电连接有充电插头(7)。
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