Electric pulse stimulation type physiotherapy watch
By adopting the design of sliding electrode sheets and rubber limit sheets in the electrical pulse stimulation physiotherapy watch, the problem of inaccurate acupoint stimulation caused by the fixed position of the electrode sheet is solved, and the flexible adjustment and positioning of the electrode sheets are achieved, which improves the physiotherapy effect and stability of use.
Patent Information
- Application Number
- CN202521175226.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2035-06-10
AI Technical Summary
The electrode tabs of the existing electrical pulse stimulation physiotherapy watch are fixed and cannot be adjusted according to the user's arm diameter, resulting in the inability to accurately stimulate the corresponding acupoints, affecting the effect of physiotherapy.
The sliding electrode sheet design is combined with rubber limit sheet and magnetic sheet, allowing the electrode sheet to slide and position within the strap, adjust the position according to the wrist diameter, and fix it through the rubber limit sheet to ensure that the electrode sheet is flush with the inner surface of the strap.
It realizes flexible adjustment of the position of the electrode sheet, adapts to different wrist diameters, ensures that the electrode sheet accurately stimulates the acupoints, improves the physical therapy effect, and prevents falling off during exercise.
Smart Images

Figure CN223111992U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of physiotherapy watches, in particular to an electro-pulse stimulation type physiotherapy watch. Background Art
[0002] In modern life, smart wearable devices have become common wearable devices for people. These devices can achieve real-time monitoring and display of users' health data and exercise status by directly contacting the wearer and the small display screen built into the device. However, among the numerous brands of portable wrist-type smart watches and electrocardiogram monitors on the market currently, although such products focus on data collection and analysis, such as heart rate monitoring, to help users understand their physical conditions, they lack a direct physiological feedback and physiotherapy mechanism.
[0003] Traditional Chinese medicine is extensive and profound. Medical literature shows that acupuncture at acupoints has definite clinical effects on physiotherapy of arrhythmia and myocardial ischemia, and its mechanism of action is related to blocking calcium channels, improving autonomic nerve function, regulating the expression of myocardial tissue proteins and hormone levels.
[0004] According to the dialectical law of Chinese medicine acupoints, important cardiovascular corresponding acupoints such as "Neiguan Point" and "Shenmen Point" are just located near the wristband position. Therefore, a portable wearable household automatic electrocardiogram monitoring and physiotherapy instrument can be made by combining monitoring and stimulation physiotherapy, and it is also a smart watch with functions such as recording time in daily life.
[0005] After the above-mentioned watch was developed and produced, some problems existing in the above-mentioned watch were still found during the application process. The main problem is that when using a universal watchband, since the positions of the electrode patches are fixed, and the arm diameters of users are often different, it is impossible to accurately stimulate the corresponding acupoints. This greatly reduces the physiotherapy effect of the watch. Only by adjusting the position of the watchband cannot simultaneously satisfy that the dial is located directly above the arm and the electrode patches are located at the correct acupoints. Therefore, improvements are made to the existing watchband structure of this kind of watch. Summary of the Utility Model
[0006] The purpose of the utility model is to provide an electro-pulse stimulation type physiotherapy watch, which solves the problem that the fixed electrode patches on the watchband of the existing electro-pulse stimulation type physiotherapy watch cannot accurately perform electro-pulse stimulation on the corresponding acupoints of the user.
[0007] To solve the above technical problems, the utility model adopts the following technical solutions:
[0008] An electro-pulse stimulation type physiotherapy watch, comprising a watch body, a watch band and electrode plates. Both ends of the outer shell of the watch body are connected to the watch band through loop buckles. The electrode plates are electrically connected to a pulse generator arranged in the watch body through connecting wires. The electrode plates are arranged on the inner surface of the watch band. An electrode plate layout area is provided on the inner surface of the watch band. The electrode plate layout area is recessed towards the outer surface of the watch band in a groove shape. A groove bottom rubber magnet is attached to the electrode plate layout area. An electrode plate rubber magnet is attached to the connection surface of the electrode plate. The electrode plate is slidably adsorbed in the electrode plate layout area through the electrode plate rubber magnet. The electrode plate is positioned by a rubber limiting piece pasted in the electrode plate layout area. A limiting through hole adapted to the electrode plate is opened in the middle of the rubber limiting piece. After the electrode plate is arranged in place, its electronic pulse stimulation surface is flush with the inner surface of the watch band.
[0009] In this solution, the original fixed electrode plates are changed to sliding electrode plates that can slide and adsorb within a region, so that the position of the electrode plates can be adjusted according to the specific wrist diameter of the user. This kind of position adjustment is relatively small because the wrist diameter differences of ordinary people are not too large. Such adjustment can adapt to most situations. After adjustment, use the rubber limiting piece to position it. How to use the rubber limiting piece for positioning is actually very simple. That is, after adjusting the electrode plate to the appropriate position, first cover the rubber limiting piece on the electrode plate layout area. The rubber limiting piece has the same shape and size as the electrode plate layout area. Then draw the position of the electrode plate on the surface of the rubber limiting piece. Finally, use a hole opener to open a limiting through hole with the same shape and size as the rubber limiting piece, and then align the limiting through hole with the electrode plate and paste the rubber limiting piece on the electrode plate layout area with glue to achieve the positioning of the electrode plate. Such a structure solves the defects of the original fixed electrode plates, and the applied rubber magnets will not affect the electronic devices in the watch body because their magnetism is small. And although the magnetism is small, it mainly plays a positioning role at the beginning. After wearing the watch, it is located between the arm and the watch band, so it will not fall off either.
[0010] As a further preference of the present utility model, a data collection module, a data transmission module, a data storage module, a data analysis and processing module, an electro-stimulation control module, a stimulation feedback module, a motion monitoring module, a voice interaction module and a remote medical module are provided in the watch body. The output ends of the stimulation feedback module, the motion monitoring module and the voice interaction module are all electrically connected to the input end of the data collection module. The output end of the data collection module is electrically connected to the input end of the data transmission module. The data transmission module is electrically connected to the data analysis and processing module and the data storage module respectively. The output end of the data transmission module is also electrically connected to the output ends of the remote medical module and the electro-stimulation control module respectively. There is also an electrical connection between the data analysis and processing module and the data storage module.
[0011] The stimulation feedback module is used to receive and record the feedback signals of electrode stimulation, including but not limited to the user's skin impedance, nerve conduction velocity, etc. These feedback signals can help the device better adjust the stimulation parameters to achieve the best treatment effect; the motion monitoring module can monitor the user's motion state, such as the number of steps, heart rate variability, etc., and comprehensively analyze this data with health data, which can help the user better understand their motion state and provide more references for improving their health; the voice interaction module can implement the voice interaction function of the device, enabling the user to operate and interact through voice commands. For example, the user can query health data, adjust stimulation parameters, etc. through voice. The data collection module is used to receive the information collected by modules such as the stimulation feedback module, motion monitoring module, and voice interaction module, and transmit this information to the data analysis and processing module and storage module through the data transmission module. The data transmission module is responsible for tasks such as data acquisition, cleaning, transformation, and transmission, and can perform transformation and extraction to generate second health data that is easier to analyze and apply; and transmit the control signal of the data analysis and processing module to the electrical stimulation control module; it supports multiple data sources and target formats as well as two transmission modes, wired and wireless, and can automatically identify and convert these different formats, while ensuring data integrity and accuracy. The data analysis and processing module is the CPU core processing module, which can receive and analyze the second health data, analyze and judge to generate corresponding data reports. In addition, this module can also identify abnormal features based on the results of data analysis and generate corresponding control signals to regulate the electrical stimulation control module, that is, when the monitored induced heart rate conforms to certain specific patterns, it emits stimulation signals. After calibration and interference signal elimination, it controls the electrical stimulation control module to emit stimulation, and is designed as a multi-gear and multi-intensity adjustment mode. The data storage module is responsible for securely and efficiently storing the collected data and the user's usage data. It can classify and store data according to different types and importance levels of data to ensure data availability and security, support long-term data storage without the need to transmit to a smartphone. At the same time, it also supports fast data retrieval and access, enabling the user to conveniently and quickly obtain the required data. The electrical stimulation control module will adjust the intensity, frequency, and mode of the electrical signal according to the feedback signal generated by the data analysis and processing module. Through this module, the device can effectively convert the collected health data into electrical signals, and then realize the electrode stimulation treatment function. Finally, there is the remote medical module, which can realize the remote assisted medical function through communication with the cloud platform. The user can view their health data on the device and transmit the data to a doctor or professional health manager. The doctor or health manager can provide remote diagnosis and treatment for the user based on this data. The above-mentioned modules are all existing technologies and can be selected according to production requirements.
[0012] As a further preference of the present utility model, there are more than two electrode sheet laying areas on the inner surface of the watch band, and the electrode sheets are arranged corresponding to the electrode sheet laying areas.
[0013] Having more than two electrode sheet laying areas is for realizing acupoint stimulation of more than two. The main acupoints to be stimulated are the Shenmen acupoint and the Neiguan acupoint. More electrode sheet laying areas can also be designed according to requirements.
[0014] As a further preference of the present utility model, a watch positioning auxiliary fixing structure is also connected to the front end of the watch band.
[0015] Since the user does not always remain stationary when using the watch, the position of the watch band on the arm will shift during movement, which affects the accuracy of the electrical pulse stimulation. To solve the above problems, a watch positioning auxiliary fixing structure is added to the front end of the watch band, which can fix the positions of the watch band and the watch body on the arm and prevent them from shifting during movement.
[0016] As a further preference of the present utility model, the watch positioning auxiliary fixing structure includes a positioning auxiliary rubber band. The end of the positioning auxiliary rubber band is connected to a magnetic snap connection strip provided at the front end of the watch body through a magnetic snap connection structure. The magnetic snap connection structure includes a connection strip and a magnetic snap provided on the bottom surface of the connection strip. A magnetic snap clamping hole is provided on the top surface of the magnetic snap connection strip opposite to the magnetic snap.
[0017] During use, the positioning auxiliary rubber band is wound around the tiger's mouth position of the palm, and then one end provided with the magnetic snap connection structure is connected to the magnetic snap connection strip at the front end of the watch body. In this way, the magnetic snap at the bottom of the connection strip can be snapped into the magnetic snap clamping hole and magnetically attracted, which can conveniently and quickly realize the setting of the positioning auxiliary rubber band around the tiger's mouth. Through such a setting, the watch band and the watch body can be effectively prevented from shifting on the arm during the user's movement.
[0018] As a further preference of the present utility model, a sweat-absorbing cotton layer is adhered to the inner surface of the positioning auxiliary rubber band through a magic tape.
[0019] The sweat-absorbing layer can play a role in absorbing sweat. At the same time, since it is adhered through a magic tape, it is convenient to quickly replace and clean.
[0020] Compared with the prior art, the present utility model can at least achieve one of the following beneficial effects:
[0021] 1. In this solution, the original fixed electrode pads are changed to sliding electrode pads that can slide and adsorb within a certain area, so that the position of the electrode pads can be adjusted according to the specific wrist diameter of the user. This kind of position adjustment is relatively small because the wrist diameter differences among ordinary people are not too large. Such adjustment can adapt to most situations. After adjustment, use a rubber limit piece to position it. In fact, it is very simple to use the rubber limit piece for positioning. That is, after adjusting the electrode pad to the appropriate position, first cover the rubber limit piece on the electrode pad layout area. The rubber limit piece has the same shape and size as the electrode pad layout area. Then draw the position of the electrode pad on the surface of the rubber limit piece. Finally, use a hole cutter to open a limit through hole with the same shape and size as the rubber limit piece, and then align the limit through hole with the electrode pad and paste the rubber limit piece on the electrode pad layout area with glue to achieve the positioning of the electrode pad. Such a structure solves the defects of the original fixed electrode pads, and the applied rubber magnetic sheet will not affect the electronic devices inside the watch body because its magnetism is small. Moreover, although the magnetism is small, it mainly plays a positioning role at the beginning. After wearing the watch, it is located between the arm and the watch band, so it will not fall off either.
[0022] 2. There are more than two electrode pad layout areas to achieve the stimulation of more than two acupoints. The main acupoints to be stimulated are the Shenmen acupoint and the Neiguan acupoint. More electrode pad layout areas can also be designed according to needs.
[0023] 3. Since the user will not always stay still when using the watch, the position of the watch band on the arm will shift during exercise, which affects the accuracy of the electrical pulse stimulation. To solve the above problems, a watch positioning auxiliary fixing structure is added at the front end of the watch band, which can fix the positions of the watch band and the watch body on the arm and prevent them from shifting during exercise.
[0024] 4. When in use, pass the positioning auxiliary rubber band around the tiger's mouth position of the palm, and then connect the end with the magnetic snap connection structure to the magnetic snap connection strip at the front end of the watch body. In this way, the magnetic snap at the bottom of the snap connection strip can be snapped into the magnetic snap connection hole and magnetically attracted, which can conveniently and quickly realize the setting of the positioning auxiliary rubber band around the tiger's mouth. Through such a setting, it can effectively prevent the watch band and the watch body from shifting on the arm during the user's exercise.
[0025] 5. The sweat-absorbing layer can play a role in absorbing sweat. At the same time, because it is pasted by Velcro, it is convenient to replace and clean quickly. Description of the Drawings
[0026] Figure 1 It is a schematic structural diagram of the present utility model.
[0027] Figure 2This is a schematic diagram of the connection of each module within the watch body of the present utility model.
[0028] Figure 3 This is a schematic diagram of the connection structure of the positioning auxiliary rubber band of the present utility model with the watch body and the watch strap.
[0029] Figure 4 This is a schematic diagram of the structure of the positioning auxiliary rubber band of the present utility model.
[0030] 1 - Watch body, 2 - Watch strap, 21 - Electrode sheet layout area, 3 - Electrode sheet, 4 - Rubber limit piece, 5 - Positioning auxiliary rubber band, 6 - Magnetic snap connection structure, 61 - Snap strip, 62 - Magnetic snap, 7 - Magnetic snap connection strip, 8 - Sweat-absorbing cotton layer. Detailed implementation manners
[0031] To make the purpose, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all of the embodiments. Usually, the components of the embodiments of the present utility model described and illustrated herein can be arranged and designed in various different configurations.
[0032] Therefore, the following detailed description of the embodiments of the present utility model provided in the drawings is not intended to limit the scope of the present utility model claimed, but merely represents the selected embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0033] It should be noted that, without conflict, the embodiments in the present utility model and the features in the embodiments can be combined with each other.
[0034] It should be noted that: similar reference numerals and letters indicate similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0035] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present utility model is usually placed during use, or the orientation or positional relationship commonly understood by those skilled in the art. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model. In addition, the terms "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0036] In the description of the present utility model, it should also be noted that unless otherwise clearly specified and defined, the terms "set", "installed", "connected", "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances. Specific Embodiment 1:
[0038] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 Fig. shows an electro-pulse stimulation physiotherapy watch, which includes a watch body 1, a watch band 2 and electrode pads 3. Both ends of the outer shell of the watch body 1 are connected to the watch band 2 through a loop buckle. The electrode pads 3 are electrically connected to a pulse generator arranged inside the watch body 1 through connecting wires. The electrode pads 3 are arranged on the inner surface of the watch band 2. An electrode pad layout area 21 is provided on the inner surface of the watch band 2. The electrode pad layout area 21 is recessed in a groove shape towards the outer surface of the watch band 2. A groove-bottom rubber magnet is attached to the electrode pad layout area 21. An electrode-pad rubber magnet is attached to the connection surface of the electrode pads 3. The electrode pads 3 are slidably adsorbed in the electrode pad layout area 21 through the electrode-pad rubber magnets. The electrode pads 3 are positioned by rubber limit pieces 4 pasted in the electrode pad layout area 21. A limit through hole adapted to the electrode pads 3 is provided in the middle of the rubber limit pieces 4. After the electrode pads 3 are arranged in place, their electronic pulse stimulation surfaces are flush with the inner surface of the watch band 2.
[0039] In this solution, the original fixed electrode piece is changed to a sliding electrode piece that can slide and adsorb within a certain area, so that the position of the electrode piece can be adjusted according to the specific wrist diameter of the user. This kind of position adjustment is relatively small because the wrist diameter differences among ordinary people are not too large. Such adjustment can adapt to most situations. After the adjustment, a rubber limit piece is used to position it. Actually, it is very simple to use the rubber limit piece for positioning. That is, after adjusting the electrode piece to the appropriate position, first cover the rubber limit piece on the electrode piece layout area. The rubber limit piece has the same shape and size as the electrode piece layout area. Then, mark the position of the electrode piece on the surface of the rubber limit piece. Finally, use a hole cutter to cut a limit through hole with the same shape and size as the rubber limit piece, align the limit through hole with the electrode piece, and then paste the rubber limit piece on the electrode piece layout area with glue to achieve the positioning of the electrode piece. Such a structure solves the defects of the original fixed electrode piece, and the applied rubber magnetic sheet will not affect the electronic devices in the watch body because its magnetism is small. Moreover, although the magnetism is small, it mainly plays a role in initial positioning. After wearing the watch, it is located between the arm and the watch band, so it will not fall off either. Specific Embodiment 2:
[0041] This embodiment further describes the watch body 1 on the basis of Specific Embodiment 1. The watch body 1 is provided with a data collection module, a data transmission module, a data storage module, a data analysis and processing module, an electrical stimulation control module, a stimulation feedback module, a motion monitoring module, a voice interaction module, and a remote medical module. The output ends of the stimulation feedback module, the motion monitoring module, and the voice interaction module are all electrically connected to the input end of the data collection module. The output end of the data collection module is electrically connected to the input end of the data transmission module. The data transmission module is electrically connected to the data analysis and processing module and the data storage module respectively. The output end of the data transmission module is also electrically connected to the output ends of the remote medical module and the electrical stimulation control module respectively. There is also an electrical connection between the data analysis and processing module and the data storage module.
[0042] The stimulation feedback module is used to receive and record the feedback signals of electrode stimulation, including but not limited to the user's skin impedance, nerve conduction velocity, etc. These feedback signals can help the device better adjust the stimulation parameters to achieve the best treatment effect; the motion monitoring module can monitor the user's motion state, such as the number of steps, heart rate variability, etc., and comprehensively analyze this data with health data, which can help the user better understand their motion state and provide more references for improving their health; the voice interaction module can implement the voice interaction function of the device, enabling the user to operate and interact through voice commands. For example, the user can query health data, adjust stimulation parameters, etc. through voice. The data collection module is used to receive the information collected by modules such as the stimulation feedback module, motion monitoring module, and voice interaction module, and transmit this information to the data analysis and processing module and storage module through the data transmission module. The data transmission module is responsible for tasks such as data acquisition, cleaning, conversion, and transmission, and can perform conversion and extraction to generate second health data that is easier to analyze and apply; and transmit the control signal of the data analysis and processing module to the electrostimulation control module. It supports multiple data sources and target formats, as well as two transmission modes of wired and wireless, can automatically identify and convert these different formats, and can ensure data integrity and accuracy. The data analysis and processing module is the CPU core processing module, which can receive and analyze the second health data, analyze and judge to generate corresponding data reports. In addition, this module can also identify abnormal features based on the results of data analysis and generate corresponding control signals to regulate the electrostimulation control module, that is, send a stimulation signal when the monitored induced heart rate conforms to certain specific patterns. After calibration and interference signal elimination, it controls the electrostimulation control module to send a stimulation, and is designed as a multi-gear and multi-intensity adjustment mode. The data storage module is responsible for securely and efficiently storing the collected data and the user's usage data. It can classify and store according to the different types and importance levels of the data to ensure data availability and security, support long-term data storage without the need to transmit to a smartphone. At the same time, it also supports fast data retrieval and access, enabling the user to conveniently and quickly obtain the required data. The electrostimulation control module will adjust the intensity, frequency, and mode of the electrical signal according to the feedback signal generated by the data analysis and processing module. Through this module, the device can effectively convert the collected health data into electrical signals, and then achieve the electrode stimulation treatment function. Finally, there is the remote medical module, which can achieve remote assisted medical functions through communication with the cloud platform. The user can view their health data on the device and transmit the data to a doctor or professional health manager. The doctor or health manager can provide remote diagnosis and treatment for the user based on this data. The above-mentioned modules are all existing technologies and can be selected according to production requirements. Specific Embodiment 3:
[0044] This embodiment further describes the watch band 2 on the basis of the specific embodiment 1. There are more than two electrode patch layout areas 21 on the inner surface of the watch band 2, and the electrode patches 3 are correspondingly arranged with the electrode patch layout areas 21.
[0045] Having more than two electrode patch layout areas is to achieve stimulation of more than two acupoints. The main acupoints to be stimulated are the Shenmen acupoint and the Neiguan acupoint. More electrode patch layout areas can also be designed according to needs. Specific embodiment 4:
[0047] This embodiment further describes the watch band 2 on the basis of the specific embodiment 1. A watch positioning auxiliary fixing structure is also connected to the front end of the watch band 2.
[0048] Since the user does not always remain stationary when using the watch, the position of the watch band on the arm will shift during movement, which affects the accuracy of the electrical pulse stimulation. To solve the above problem, a watch positioning auxiliary fixing structure is added to the front end of the watch band, which can fix the positions of the watch band and the watch body on the arm and prevent them from shifting during movement. Specific embodiment 5:
[0050] This embodiment further describes the watch positioning auxiliary fixing structure on the basis of the specific embodiment 4. The watch positioning auxiliary fixing structure includes a positioning auxiliary rubber band 5. The end of the positioning auxiliary rubber band 5 is connected to a magnetic attraction buckle connection strip 7 provided at the front end of the watch body 1 through a magnetic attraction type buckling structure 6. The magnetic attraction type buckling structure 6 includes a buckling strip 61 and a magnetic attraction buckle 62 provided on the bottom surface of the buckling strip 61. A magnetic attraction buckle clamping hole is provided on the top surface of the magnetic attraction buckle connection strip 7 opposite to the magnetic attraction buckle 62.
[0051] During use, the positioning auxiliary rubber band is wound around the tiger's mouth position of the palm, and then the end with the magnetic attraction type buckling structure is connected to the magnetic attraction buckle connection strip at the front end of the watch body. In this way, the magnetic attraction buckle at the bottom of the buckling strip can be clamped into the magnetic attraction buckle clamping hole and magnetically attracted, which can conveniently and quickly realize the arrangement of the positioning auxiliary rubber band around the tiger's mouth. Through such an arrangement, it can effectively prevent the watch band and the watch body from shifting on the arm during the user's movement. Specific embodiment 6:
[0053] This embodiment further describes the positioning auxiliary rubber band 5 on the basis of the specific embodiment 5. A sweat-absorbing cotton layer 8 is adhered to the inner surface of the positioning auxiliary rubber band 5 through a magic tape.
[0054] The sweat-absorbing layer can play a role in absorbing sweat. At the same time, since it is adhered through a magic tape, it is convenient to quickly replace and clean.
[0055] Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An electro-pulse stimulation type physiotherapy watch, comprising a watch body (1), a watch band (2) and electrode pads (3). Both ends of the outer shell of the watch body (1) are connected to the watch band (2) through a loop buckle. The electrode pads (3) are electrically connected to a pulse generator arranged in the watch body (1) through connecting wires. The electrode pads (3) are arranged on the inner surface of the watch band (2), and it is characterized in that: The inner surface of the watch band (2) is provided with an electrode patch layout area (21). The electrode patch layout area (21) is recessed towards the outer surface of the watch band (2) in a groove shape. A bottom rubber magnet sheet is attached to the electrode patch layout area (21). An electrode patch rubber magnet sheet is attached to the connection surface of the electrode patch (3). The electrode patch (3) is slidably adsorbed in the electrode patch layout area (21) through the electrode patch rubber magnet sheet. The electrode patch (3) is positioned by a rubber limit sheet (4) pasted in the electrode patch layout area (21). A limit through hole adapted to the electrode patch (3) is provided in the middle of the rubber limit sheet (4). After the electrode patch (3) is arranged in place, its electronic pulse stimulation surface is flush with the inner surface of the watch band (2).
2. The electro-pulse stimulation type physiotherapy watch according to claim 1, wherein: The watch body (1) is provided with a data collection module, a data transmission module, a data storage module, a data analysis and processing module, an electrical stimulation control module, a stimulation feedback module, a motion monitoring module, a voice interaction module, and a remote medical module. The output ends of the stimulation feedback module, the motion monitoring module, and the voice interaction module are all electrically connected to the input end of the data collection module. The output end of the data collection module is electrically connected to the input end of the data transmission module. The data transmission module is electrically connected to the data analysis and processing module and the data storage module respectively. The output end of the data transmission module is also electrically connected to the output ends of the remote medical module and the electrical stimulation control module respectively. There is also an electrical connection between the data analysis and processing module and the data storage module.
3. The electro-pulse stimulation type physiotherapy watch according to claim 1, characterized in that: There are more than two electrode patch layout areas (21) on the inner surface of the watch band (2), and the electrode patches (3) are arranged corresponding to the electrode patch layout areas (21).
4. The electro-pulse stimulation type physiotherapy watch according to claim 1, characterized in that: A watch positioning auxiliary fixing structure is also connected to the front end of the watch band (2).
5. The electro-pulse stimulation physiotherapy watch according to claim 4, characterized in that: The watch positioning auxiliary fixing structure includes a positioning auxiliary rubber band (5). The end of the positioning auxiliary rubber band (5) is connected to a magnetic attraction buckle connection strip (7) provided at the front end of the watch body (1) through a magnetic attraction type buckling structure (6). The magnetic attraction type buckling structure (6) includes a buckling strip (61) and a magnetic attraction buckle (62) provided on the bottom surface of the buckling strip (61). A magnetic attraction buckle clamping hole is provided on the top surface of the magnetic attraction buckle connection strip (7) directly opposite to the magnetic attraction buckle (62).
6. The electro-pulse stimulation type physiotherapy watch according to claim 5, wherein: A sweat-absorbing cotton layer (8) is pasted on the inner surface of the positioning auxiliary rubber band (5) through a magic tape.