Electrical stimulation host and control method thereof
The electric stimulator system addresses inefficiencies in low-frequency stimulators by using a centralized control unit to distribute stimulation schemes to multiple devices, improving efficiency and flexibility.
Patent Information
- Application Number
- CN202510243645.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-04
- Filing Date
- 2025-03-03
- Publication Date
- 2025-07-15
AI Technical Summary
Existing low-frequency stimulators have limited pre-set stimulation schemes due to limited interfaces and excessive cable entanglement, leading to inefficient setup and stimulation when multiple targets are involved, resulting in low operational efficiency.
An electric stimulator system with a communication charging base that allows multiple electric stimulators to connect, receiving stimulation schemes from a control unit, enabling efficient and flexible operation through a centralized control system.
The system enhances operational efficiency and flexibility by allowing multiple stimulators to receive schemes from a central control unit, reducing setup time and cable clutter, and supporting various stimulation targets.
Smart Images

Figure CN120305557A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical devices, and particularly to an electrical stimulation host and its control method. Background Art
[0002] Electrotherapy refers to a method of treating diseases using different types of currents and electromagnetic fields, and is one of the most commonly used methods in physical therapy. It mainly includes direct current electrotherapy, low-frequency pulsed electrotherapy, medium-frequency pulsed electrotherapy, high-frequency electrotherapy, and static electrotherapy.
[0003] The current low-frequency host has the following defects when in use: The number of preset electrical stimulation programs of the low-frequency host is limited. Due to the limited interfaces on the low-frequency host and to avoid the mess caused by too many wires, generally 2-4 programs are preset for electrical stimulation. At the same time, the number of target objects for electrical stimulation is limited. In addition, when the number of target objects that need to be electrically stimulated exceeds the number of programs that can be preset by the low-frequency host, it is necessary to add electrical stimulation programs on the spot, and setting the electrotherapy program takes a lot of time. Therefore, when there are many target objects that need to be electrically stimulated, the efficiency of setting the electrical stimulation program is low, which in turn leads to low efficiency of electrical stimulation. Summary of the Invention
[0004] The purpose of the present invention is to provide an electrical stimulation host and its control method to overcome the defect of low operation efficiency in the prior art.
[0005] In a first aspect, an electrical stimulation host includes: A power supply communication module, when the electrical stimulation host is located on a position of a communication charging stand, the power supply communication module is connected to this position and receives a first electrical stimulation program corresponding to this position; A main control module, used to store the first electrical stimulation program; A stimulation output module, used to perform electrical stimulation on a target object according to the first electrical stimulation program.
[0006] In one embodiment, the electrical stimulation host further includes an interaction module, and the interaction module includes a display screen and a plurality of buttons; Each of the buttons is used to provide a window for a user to operate the electrical stimulation host; The display screen is used to display the content corresponding to the operation instruction in response to the operation instruction of the user.
[0007] In one embodiment, the electrical stimulation host further includes: A storage battery, connected to the power supply communication module, used to obtain power when the power supply communication module is connected to a specified position, and supply power to the electrical stimulation host when the power supply communication module disconnects from the specified position.
[0008] In one embodiment, the electrical stimulation host further includes: Contacts, which are used to achieve electrical connection between the electrical stimulation host and the communication charging dock when the electrical stimulation host is placed on a position of the communication charging dock.
[0009] In a second aspect, the present application proposes a control method for an electrical stimulation host, which is applicable to the electrical stimulation host described in any one of the above first aspects. The method includes: When the electrical stimulation host is located on a position of the communication charging dock, receiving a first electrical stimulation scheme generated by a control host.
[0010] In one embodiment, the first electrical stimulation scheme received by the electrical stimulation host is generated by the control host in response to a user's operation instruction and transmitted to the electrical stimulation host through the communication charging dock; Or, the first electrical stimulation scheme received by the electrical stimulation host is generated by the control host in response to a user's operation instruction and pre-stored in the communication charging dock.
[0011] In one embodiment, the method further includes: The electrical stimulation host stores the received first electrical stimulation scheme to form a scheme library; After receiving a user's operation instruction, parsing the operation instruction to obtain call information; According to the call information, searching for the corresponding first electrical stimulation scheme in the scheme library; According to the found first electrical stimulation scheme, performing electrical stimulation on a target object.
[0012] In one embodiment, the method further includes: After receiving a user's operation instruction, parsing the operation instruction to obtain parameter information of the electrical stimulation; Generating a corresponding first electrical stimulation scheme according to the parameter information of the electrical stimulation; According to the generated first electrical stimulation scheme, performing electrical stimulation on a target object.
[0013] In one embodiment, the method further includes: After receiving a user's operation instruction, verifying the user's permission; In the case of successful verification, parsing the operation instruction.
[0014] In one embodiment, the verification method of the user permission includes: Verifying the input order of each button of the electrical stimulation host; If the input order meets a preset order, it is considered that the verification is successful.
[0015] The above-mentioned electrical stimulation host and its control method have at least the following advantages: The electrical stimulation host of the present application can obtain a first electrical stimulation plan from a control host or a communication charging stand, and perform electrical stimulation on a target object according to the first electrical stimulation plan. Further, the electrical stimulation host of the present application can also save the received first electrical stimulation plan for subsequent user calls. Further, the electrical stimulation host of the present application can also generate a new first electrical stimulation plan according to the user's instructions, which is convenient for the user to use. Further, the electrical stimulation host of the present application also has a protection mechanism, allowing the user's operation only when the verification is passed, ensuring safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural block diagram of an electrical stimulation control system in an embodiment; Figure 2 It is a schematic structural diagram of a communication charging stand in an embodiment; Figure 3 It is a schematic structural diagram of the communication charging stand and the control host in a connected state in an embodiment; Figure 4 It is a schematic structural diagram of an electrical stimulation host in an embodiment; Figure 5 It is a schematic flow diagram of an electrical stimulation control method in an embodiment; Figure 6 It is a schematic flow diagram of an electrical stimulation control method in another embodiment; Figure 7 It is a schematic flow diagram of an electrical stimulation control method in another embodiment; Figure 8 It is a schematic diagram of a setting interface of the control host display screen in an embodiment; Figure 9 It is a schematic diagram of another setting interface of the control host display screen in an embodiment.
[0017] Reference Signs: 1. Communication charging stand; 2. Electrical stimulation host; 3. Control host; 4. Machine position; 5. First contact; 10. First wire; 11. Second wire; 12. Communication interface; 13. Communication interface; 14. Expansion interface; 16. Magnetic buckle.
[0018] 101. Third main control module; 102. Third power communication module; 201. First main control module; 202. First power communication module; 203. First interaction module; 204. First stimulation output module; 205. Second contact; 206. Magnetic buckle; 301. Second main control module; 302. Second power supply communication module; 303. Second interaction module; 304. Second stimulation output module. Detailed implementation manners
[0019] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention. Unless otherwise defined, the technical terms or scientific terms used herein shall have the ordinary meanings as understood by those of ordinary skill in the art to which the present invention pertains. The words such as "including" used herein are intended to mean that the elements or items appearing before this word cover the elements or items listed after this word and their equivalents, without excluding other elements or items.
[0020] Please refer to Figure 1 , in one embodiment, an electrical stimulation control system is provided. The electrical stimulation control system includes: a communication charging stand 1, an electrical stimulation host 2, and a control host 3. Among them, the control host 3 is electrically connected to the electrical stimulation host 2 through the communication charging stand 1.
[0021] Please refer to Figure 2 , a plurality of positions 4 distributed in an array are provided on the communication charging stand 1, and each position 4 is provided with a contact integrating charging and communication (see the first contact 5 in Figure 2 ) for supplying power to and / or communicating with the electrical stimulation host 2. Further, each position 4 can accommodate an electrical stimulation host 2. When an electrical stimulation host 2 is placed on a position 4, this position 4 can supply power to this electrical stimulation host 2. At the same time, the control host 3 also realizes a communication connection with the electrical stimulation host 2 through the first contact 5, and transmits a first electrical stimulation scheme generated according to the user's operation instruction to the electrical stimulation host 2, so that the electrical stimulation host 2 performs electrical stimulation on the target object according to this first electrical stimulation scheme. It should be noted that the above first electrical stimulation scheme can be a low-frequency, medium-frequency or high-frequency electrical stimulation scheme.
[0022] It should be understood that the above-mentioned positions 4 of each machine can be connected in series or in parallel, or can be independent of each other. The control host 3 transmits a first electrostimulation scheme to any one or more designated positions 4. When the electrostimulation host 2 is placed on the above-mentioned designated position 4, these electrostimulation hosts 2 can obtain the first electrostimulation scheme through the above-mentioned designated position, greatly improving the operation efficiency. Further, the control host 3 can also transmit multiple first electrostimulation schemes to multiple different designated positions 4. In this way, the electrostimulation host 2 placed on each designated position 4 will obtain the first electrostimulation scheme corresponding to the designated position 4, improving the operation efficiency and operation flexibility at the same time, and being applicable to various types of target objects.
[0023] Further, the electrostimulation control system of the present application further includes: at least one electrode patch.
[0024] Each electrode patch is electrically connected to the electrostimulation host 2, and the electrostimulation host 2 transmits an electrostimulation signal to the target object through the electrode patch to perform electrostimulation on it.
[0025] In the above electrostimulation control system, after receiving the operation instruction of the user, the control host 3 generates a corresponding first electrostimulation scheme according to the operation instruction, and transmits the first electrostimulation scheme to the electrostimulation host 2 placed on the position 4 of the communication charging base 1 through the position 4 of the communication charging base 1. In this way, the electrostimulation host 2 can perform electrostimulation on the target object according to the first electrostimulation scheme. In the present application, only by placing the electrostimulation host 2 on the corresponding position, the first electrostimulation scheme can be obtained, greatly improving the operation efficiency and operation flexibility.
[0026] Please refer to Figure 2 and Figure 3 , a communication interface 12 and a communication interface 13 are correspondingly provided on the communication charging base 1 and the control host 3, and a second wire 11 is provided between the communication interface 12 and the communication interface 13. The reason for adopting the wired connection method is to avoid the interference of the magnetic field generated during the electrostimulation process and improve the reliability of the electrostimulation control system of the present application. Exemplarily, the communication interface 12 and the communication interface 13 can be set as Lemo interfaces, and both ends of the second wire 11 are provided with Lemo connectors. When the Lemo connectors are inserted into the Lemo interfaces, the electrical connection between the control host 3 and the communication charging base 1 is realized.
[0027] Optionally, the communication charging base 1 and the control host 3 of the present application are also respectively provided with a wireless communication module to realize wireless communication between the two.
[0028] Optionally, a plurality of communication interfaces 13 are provided on the control host 3, and each communication interface 13 is independent of each other. Adopting this scheme, the control host 3 can be electrically connected to multiple communication charging bases 1 at the same time.
[0029] Please refer to Figure 1 andFigure 4 , optionally, the electrical stimulation host 2 includes: a main control module (see the first main control module 201 in Figure 1 ), a power supply communication module (see the first power supply communication module 202 in Figure 1 ), a stimulation output module (see the first stimulation output module 204 in Figure 1 ), and a contact (see the second contact 205 in Figure 4 ).
[0030] The first power supply communication module 202 is connected to the second contact 205. When the electrical stimulation host 2 is located on a machine position 4, the second contact 205 is electrically connected to the first contact 5 of this machine position 4. At this time, the first power supply communication module 202 is connected to the first contact 5 through the second contact 205, receives the first electrical stimulation scheme corresponding to this machine position 4, and transmits it to the first main control module 201.
[0031] Optionally, the electrical stimulation host 2 further includes a wireless communication module. Through this wireless communication module, the electrical stimulation host 2 can be wirelessly connected to the communication charging stand 1 or the control host 3. Adopting this solution, the electrical stimulation host 2 can obtain the first electrical stimulation scheme from the communication charging stand 1 or the control host 3.
[0032] The first main control module 201 is used to store the above-mentioned first electrical stimulation scheme.
[0033] The first stimulation output module 204 is used to output an electrical stimulation signal according to the first electrical stimulation scheme and perform electrical stimulation on the target object.
[0034] Adopting the above solution, the user can place the electrical stimulation host 2 on a machine position 4, and then operate the control host 3 to generate the first electrical stimulation scheme, transmit it to the first power supply communication module 202, and finally store it in the first main control module 201. After removing the electrical stimulation host 2 from the machine position 4, it can be applied to the target object for electrical stimulation.
[0035] Optionally, the electrical stimulation host 2 further includes: an interaction module (see the first interaction module 203 in Figure 1 ). The first interaction module 203 includes a display screen and a plurality of buttons.
[0036] Each button is used to provide a window for the user to operate the electrical stimulation host.
[0037] A display screen is configured to display content corresponding to an operation instruction in response to a user's operation instruction. Exemplarily, the display screen can display a menu according to the user's operation instruction, and enter the next-level menu corresponding to the selected option after the user selects an option in the menu. For example, after the user selects to view the stored first electrostimulation program, the stored program library is displayed for the user. If the user selects to view a prescription in the program library, the first electrostimulation program corresponding to the prescription is displayed for the user. In addition, the display screen is also used to display the usage status information of the electrostimulation host 2. The usage status information includes the power information of the electrostimulation host 2, whether it is in the standby state, and whether the electrostimulation program is successfully saved, etc.
[0038] Exemplarily, when the electrostimulation host 2 is placed in the machine position 4, when the words "Standby state" are displayed on the display screen of the electrostimulation host 2, it means that the power meets the requirements and the electrostimulation host 2 can be used to perform electrostimulation on the target object; when the electrostimulation host 2 is placed in the machine position 4, when the words "Charging" are displayed on the display screen of the electrostimulation host 2, it means that the power in the electrostimulation host 2 does not meet the requirements and the electrostimulation host 2 is charging; when the electrostimulation host 2 starts to read the electrostimulation program of the corresponding machine position 4 and save it, when the words "Write failed" are displayed on the display screen of the electrostimulation host 2, it means that the electrostimulation program is not successfully saved, and at this time, the electrostimulation host 2 can be picked up again and placed in the machine position 4.
[0039] When the words "Program 1" are displayed on the display screen of the electrostimulation host 2, it means that the electrostimulation program "Program 1" has been set and saved in the electrostimulation host 2. When the electrostimulation host 2 and the electrode patch 17 are connected and placed on the skin, electrostimulation can be performed through "Program 1".
[0040] When the electrostimulation host 2 is in the electrostimulation state for the target object, when the electrostimulation time meets the preset electrostimulation program time, the words "Electrostimulation ended, please return the device" are displayed on the display screen of the electrostimulation host 2, indicating that the electrostimulation has been completed.
[0041] When the words "Low battery" are displayed on the display screen of the electrostimulation host 2, it means that the power in the electrostimulation host 2 is insufficient and it needs to be placed in the charging position 4 for charging. Another example is to view the power of the electrostimulation host 2 through the display screen on the electrostimulation host 2. There is a power icon on the display screen. When the electrostimulation host 2 is fully charged, the color of the power icon changes from "green" to "white".
[0042] Optionally, the button is also used to control the intensity of the electrostimulation and to control the start and pause of the electrostimulation host 2.
[0043] With the above solution, the user can start or stop the electrostimulation through the button. During the electrostimulation process, the intensity of the electrostimulation can also be adjusted through the button according to the user's experience to achieve a better experience.
[0044] Optionally, when the display screen of the electrical stimulation host 2 is a touch screen, the user can also operate the electrical stimulation host 2 through the display screen.
[0045] Please refer to Figure 3 and Figure 4 , optionally, a magnetic buckle 16 is provided on the machine position 4, and a magnetic buckle 206 is provided on the electrical stimulation host 2. The magnetic buckle 16 and the magnetic buckle 206 are correspondingly arranged, and the electrical stimulation host 2 is magnetically fixed at the machine position 4 through the two groups of magnetic buckles as a magnetic attraction positioning structure, and is convenient for separation.
[0046] Optionally, a magnetic buckle corresponding to the magnetic buckle 206 is also provided on the electrode patch. When the electrode patch is set to be fixed by magnetic attraction and attached to the target object, the above magnetic buckle can be used to fix and electrically connect the electrical stimulation host 2, so that the electrical stimulation host 2 can perform electrical stimulation on the target object through the electrode patch.
[0047] Please refer to Figure 1 , optionally, the communication charging base 1 further includes a third main control module 201 and a third power communication module 102.
[0048] One end of the third power communication module 102 is electrically connected to the control host 3, and the other end is electrically connected to each first contact 5, and is used to obtain power from the control host 3 side, and is also used to obtain the first electrical stimulation scheme from the control host 3 side and transmit it to the third main control module 201.
[0049] The third main control module 201 is used to store the first electrical stimulation scheme.
[0050] With the above solution, the first electrical stimulation scheme corresponding to each machine position 4 can be pre-stored in the third main control module 201. When the electrical stimulation host 2 is placed on the specified machine position 4, the first main control module 201 establishes a communication connection with the third power communication module 102 through the first power communication module 202, and reads the first electrical stimulation scheme from the third main control module 201. At this time, the user does not need to operate the control host 3 to obtain the first electrical stimulation scheme, which greatly reduces the use difficulty and improves the operation efficiency. At the same time, pre-storing the first electrical stimulation scheme in the third main control module 201 can also reduce the consumption of memory resources in the control host 3.
[0051] Please refer to Figure 3, an expansion interface 14 is further provided on the communication charging dock 1. When there are two communication charging docks 1, the communication interface 12 of one communication charging dock 1 is electrically connected to the communication interface 13 of the control host 3, and the expansion interface 14 of this communication charging dock 1 is connected to the communication interface 12 of another communication charging dock 1 through the first wire 10, thereby realizing the expansion of the communication charging dock 1. It should be understood that when there are multiple communication charging docks 1, the same structure can be adopted, that is, one communication charging dock 1 is electrically connected to the control host 3, and the remaining communication charging docks are connected in series.
[0052] Optionally, the communication charging dock 1 further includes a storage battery, which is used to supply power to the electrical stimulation host 2 when the communication charging dock 1 is disconnected from the control host 3. Exemplarily, the number of storage batteries is one, and this storage battery is electrically connected to each station 4. In this way, when each electrical stimulation host 2 is placed on the station 4, it can obtain electrical energy from the storage battery. Exemplarily, the number of storage batteries can be multiple, and the number of storage batteries matches the number of stations 4, that is, each station 4 is provided with a storage battery, so as to ensure that each electrical stimulation host 2 can obtain sufficient electrical energy.
[0053] Optionally, the electrical stimulation host 2 further includes: a storage battery.
[0054] The storage battery is connected to the first power communication module 202, and is used to obtain power when the first power communication module 202 is connected to the specified station 4, and supply power to the electrical stimulation host 2 when the first power communication module 202 is disconnected from the specified station 4.
[0055] Optionally, when at least one electrode patch is connected to the control host 3, the control host 3 is further configured to, in response to a user's operation instruction, configure a corresponding second electrical stimulation scheme for the specified electrode patch, so that the specified electrode patch performs electrical stimulation on the target object. It should be noted that the second electrical stimulation scheme can be a low-frequency, medium-frequency or high-frequency electrical stimulation scheme. Among them, in this embodiment, the second electrical stimulation scheme can have the same stimulation frequency band as the first electrical stimulation scheme, both being low-frequency, medium-frequency or high-frequency; the second electrical stimulation scheme can have a different stimulation frequency band from the first electrical stimulation scheme, so that the control host has stronger adaptability. In this embodiment, the control host can be a medium-low frequency host that outputs a medium-frequency stimulation scheme and a low-frequency stimulation scheme, or a low-frequency host that only outputs a low-frequency stimulation scheme; or a host that outputs a multi-band stimulation scheme, such as a low-frequency stimulation scheme, a medium-frequency stimulation scheme and a high-frequency stimulation scheme. That is, the frequency band corresponding to the stimulation signal formed by the control host in this embodiment is not limited.
[0056] With the above solution, the electrical stimulation control system of the present application integrates multiple frequency modes in one device, can set electrical stimulation of multiple frequencies in the same device, can adapt to more scenarios that simultaneously require multi-frequency electrical stimulation, and has a wider range of use.
[0057] In the above-mentioned electrical stimulation control system, the control host 3 can generate a corresponding first electrical stimulation scheme according to the operation instructions of the user and transmit it to one or more electrical stimulation hosts 2 placed on the communication charging stand 1, greatly improving the operation efficiency and operation flexibility.
[0058] Furthermore, the user can also preset the first electrical stimulation scheme as needed and store it in the communication charging stand 1. At this time, only by placing the electrical stimulation host 2 on the designated position 4, the first electrical stimulation scheme corresponding to this position 4 can be obtained, greatly reducing the usage difficulty and further improving the operation efficiency; at the same time, it can also reduce the consumption of memory resources in the control host 3.
[0059] Furthermore, the electrical stimulation control system of the present application can also realize the expansion of the communication charging stand 1 through the expansion interface 14 to meet various usage requirements in terms of quantity.
[0060] Furthermore, when at least one electrode patch is connected to the control host 3, the control host 3 can also respond to the operation instructions of the user and configure a corresponding second electrical stimulation scheme for the designated electrode patch, so as to realize electrical stimulation with multiple frequencies in the same device, adapt to more scenarios that require multi-frequency electrical stimulation at the same time, and have a wider range of use.
[0061] Please refer to Figure 5 , based on the same inventive concept, the embodiment of the present application also provides an electrical stimulation control method. This electrical stimulation control method is applicable to the above-mentioned electrical stimulation control system. The implementation solutions provided by this method to solve problems are similar to the implementation solutions described in the above system. Therefore, the specific limitations in one or more of the following device embodiments can refer to the limitations on the system in the above text and will not be repeated here.
[0062] Please refer to Figure 5 , in one embodiment, an electrical stimulation control method is provided, including: Step S502, after the control host receives the operation instructions of the user, it allocates a first electrical stimulation scheme to the electrical stimulation host on the designated position according to the operation instructions.
[0063] Step S504, each electrical stimulation host performs electrical stimulation on the target object according to the first electrical stimulation scheme.
[0064] Please refer to Figure 6 , optionally, when at least one electrode patch is connected to the control host, the above method further includes: Step S602, after the control host receives the operation instructions of the user, it allocates a corresponding second electrical stimulation scheme to the designated electrode patch according to the operation instructions.
[0065] Step S604, the electrode patch transmits the electrical stimulation signal generated according to the second electrical stimulation scheme to the target object.
[0066] Optionally, the above-mentioned first electrical stimulation scheme and second electrical stimulation scheme include electrical stimulation time, electrical stimulation frequency, and electrical stimulation pulse width.
[0067] For the above-mentioned electrical stimulation control method, the control host can generate a corresponding first electrical stimulation scheme according to the user's operation instruction. The user only needs to place the electrical stimulation host on one or more specified positions, and then can conveniently and quickly obtain the first electrical stimulation scheme, which greatly improves the operation efficiency and operation flexibility. In addition, when at least one electrode patch is connected to the control host, the control host can also generate a corresponding second electrical stimulation scheme in response to the user's operation instruction, so as to realize electrical stimulation of multiple frequencies in the same device, adapt to more scenarios that require multi-frequency electrical stimulation at the same time, and have a wider range of use.
[0068] In one embodiment, a control method for an electrical stimulation host is provided. This control method is applicable to the electrical stimulation host involved in the above-mentioned embodiment, and includes: When the electrical stimulation host is located on a position of the communication charging stand, receive the first electrical stimulation scheme generated by the control host.
[0069] Optionally, the first electrical stimulation scheme received by the electrical stimulation host is generated by the control host in response to the user's operation instruction and transmitted to the electrical stimulation host through the communication charging stand; or, the first electrical stimulation scheme received by the electrical stimulation host is generated by the control host in response to the user's operation instruction and pre-stored in the communication charging stand. When the electrical stimulation host is placed on the position, obtain the first electrical stimulation scheme from the communication charging stand.
[0070] Furthermore, the user can operate the electrical stimulation host through a button. When the electrical stimulation host is connected to both the communication charging stand and the control host, select to obtain the first electrical stimulation scheme from the electrical stimulation host or the communication charging stand. In addition, when the electrical stimulation host is only connected to the communication charging stand, select to obtain the first electrical stimulation scheme from the communication charging stand.
[0071] Optionally, the above-mentioned control method for the electrical stimulation host further includes: The electrical stimulation host stores the received first electrical stimulation scheme to form a scheme library; after receiving the user's operation instruction, parse the operation instruction to obtain the call information; according to the call information, search for the corresponding first electrical stimulation scheme in the scheme library; according to the searched first electrical stimulation scheme, perform electrical stimulation on the target object.
[0072] Specifically, for the received first electrical stimulation protocol, the electrical stimulation host can automatically store the first electrical stimulation protocol. For example, the electrical stimulation host can automatically store n protocols. When the number exceeds this quantity, the protocol with the longest storage time will be automatically overwritten. In addition, the electrical stimulation host can also save any received protocol according to the user's instruction. In this way, when dealing with users with the same symptoms, directly calling the corresponding first electrical stimulation protocol from the electrical stimulation host can execute the operation, which is convenient for users to use.
[0073] Optionally, the control method of the above electrical stimulation host further includes: After receiving the user's operation instruction, parse the operation instruction to obtain the parameter information of the electrical stimulation; generate a corresponding first electrical stimulation protocol according to the parameter information of the electrical stimulation; perform electrical stimulation on the target object according to the generated first electrical stimulation protocol.
[0074] Specifically, the user can input the parameter information required for the protocol through buttons or the liquid crystal display screen, and the electrical stimulation host generates a new first electrical stimulation protocol according to the parameter information. It should be understood that the above new first electrical stimulation protocol can be automatically or manually saved to the above protocol library.
[0075] Optionally, the control method of the above electrical stimulation host further includes: After receiving the user's operation instruction, verify the user's permission; under the condition that the verification is successful, parse the operation instruction.
[0076] Specifically, in order to prevent the user from misoperation, an embodiment of the present application also sets a protection mechanism, which only allows users with permission to operate the electrical stimulation host, ensuring operation safety.
[0077] Optionally, the verification method of the user permission includes: Verify the input order of each button of the electrical stimulation host; if the input order meets the preset order, it is considered that the verification is successful.
[0078] Specifically, in the case that the electrical stimulation host includes multiple buttons, the use permission of the user can be verified by setting the input order of the buttons. Further, in the case that the display screen of the electrical stimulation host is a liquid crystal display screen, verification can also be performed through the liquid crystal display screen, such as presetting specific numbers or gestures, etc.
[0079] For the above control method of the electrical stimulation host, the electrical stimulation host of the present application can obtain a first electrical stimulation plan from a control host or a communication charging stand, and perform electrical stimulation on a target object according to the first electrical stimulation plan. Further, the electrical stimulation host of the present application can also save the received first electrical stimulation plan for subsequent user calls. Further, the electrical stimulation host of the present application can also generate a new first electrical stimulation plan according to the user's instructions, which is convenient for the user to use. Further, the electrical stimulation host of the present application also has a protection mechanism, allowing the user's operation only when the verification passes, ensuring safety.
[0080] Please refer to Figure 1 , in one embodiment, a control host 3 is further provided, including: a main control module (see the second main control module 301 in Figure 1 ), a power supply communication module (see the second power supply communication module 302 in Figure 1 ), and an interaction module (see the second interaction module 203 in Figure 1 ).
[0081] The second interaction module 203 is used to receive the user's operation instructions.
[0082] Optionally, the second interaction module 203 includes a touch screen, a power button, and a control button. The user can input instructions or modify electrical stimulation parameters through the touch screen, and can also select an interface or adjust parameters through the control button.
[0083] Optionally, a rotatable handle is provided on the control host, and the user can lift and move the control host through the handle.
[0084] The second main control module 301 is used to parse the operation instructions, obtain the bin information and electrical stimulation parameter information of the specified position, and configure a corresponding first electrical stimulation plan for the specified position 4 according to the electrical stimulation parameter information. It should be understood that the second main control module 301 further includes a storage unit for storing the first electrical stimulation plan.
[0085] The second power supply communication module 302 is used to distribute the first electrical stimulation plan to the electrical stimulation host 2 on the specified position 4 corresponding to the bin information. When the electrical stimulation host 2 is placed on the position 4, the second power supply communication module 302 is communicatively connected to the first power supply communication module 202 of the electrical stimulation host 2, and transmits the first electrical stimulation plan to the electrical stimulation host 2. When the electrical stimulation host 2 is not placed on the position 4, the second power supply communication module 302 is communicatively connected to the third power supply communication module 102 of the communication charging stand 1, and transmits the first electrical stimulation plan to the communication charging stand 1. In this way, when the user places the electrical stimulation host 2 on the position 4, the first electrical stimulation plan can be obtained.
[0086] Optionally, when at least one electrode patch is connected to the control host 3, the second main control module 301 is further configured to parse the user's operation instruction, obtain the channel information of the electrode patch and the parameter information of the electrical stimulation; and configure a corresponding second electrical stimulation scheme for the specified electrode patch corresponding to the channel information according to the parameter information of the electrical stimulation.
[0087] At this time, the control host 3 further includes a stimulation output module (see Figure 1 the second stimulation output module 304 in
[0088] Optionally, the second stimulation output module 304 includes a plurality of output ports. The output ports are intermediate frequency output ports, low frequency output ports or high frequency output ports. Wires are connected to each intermediate frequency output port. The wires connected to the intermediate frequency output ports are connected to each electrode patch in any one of the plug-in type, magnetic attraction type or snap type. Exemplarily, the intermediate frequency output port is a Remo interface. One end of the wire connected to the intermediate frequency output port is a Remo connector, and the other end is electrically connected to the electrode patch 4 in any one of the plug-in type, magnetic attraction type and snap type.
[0089] Optionally, the control host 3 further includes: a power supply module.
[0090] The power supply module is used to supply power to the control host 3.
[0091] For the above control host, the control host queries or generates a corresponding first electrical stimulation scheme from a preset database according to the user's operation instruction. The user only needs to place the electrical stimulation host at the specified position to obtain the first electrical stimulation scheme, which greatly improves the operation efficiency and operation flexibility. Further, the control host can also query or generate a corresponding second electrical stimulation scheme from a preset database according to the user's operation instruction, and realize electrical stimulation of multiple frequencies in the same device, which can adapt to more scenarios that require multi-frequency electrical stimulation at the same time and has a wider range of use.
[0092] In one embodiment, an electrical stimulation control method is further provided. The electrical stimulation control method is applicable to a control host. The control host is electrically connected to a communication charging stand. A plurality of positions are provided on the communication charging stand, and each position can accommodate an electrical stimulation host. It should be noted that the structures and working principles of the communication charging stand and the electrical stimulation host in this embodiment are the same as those in the above embodiment, and will not be described in detail here to save space.
[0093] Please refer to Figure 7 , the electrical stimulation control method includes: Step S702, parse the user's operation instruction, and obtain the position information of the specified position and the parameter information of the electrical stimulation.
[0094] Step S704: Configure a corresponding first electrostimulation scheme for the specified machine position according to the parameter information of the electrostimulation.
[0095] Step S706: Assign the first electrostimulation scheme to the electrostimulation host on the specified machine position corresponding to the bin information; wherein, the electrostimulation host is used to perform electrostimulation on the target object according to the first electrostimulation scheme.
[0096] Specifically, the bin information of the machine position refers to the specific position of the machine position on the communication charging base, and this bin information is used to instruct the user to place the electrostimulation host on the appropriate machine position. Exemplarily, if the display screen of the control host is a touch screen, a unique coordinate can be assigned to each machine position in advance, such as row and column numbers A1, B3, etc.; in this way, after the user selects a coordinate on the touch screen, it can correspond to the corresponding machine position. In addition, the icons of each machine position can also be mapped to the display screen of the control host, and the layout of each icon is consistent with the actual position distribution of each machine position. In this way, when the user clicks on the icon, it can also correspond to the corresponding machine position. It should be understood that the above-mentioned machine positions can be selected individually or multiple machine positions can be selected together.
[0097] The parameter information of the electrostimulation refers to the setting parameters of the electrostimulation signal, and this setting parameter includes the prescription name, electrostimulation waveform, electrostimulation time, electrostimulation frequency, and electrostimulation pulse width.
[0098] Please refer to Figure 8 , Figure 8 shown is a setting interface of the display screen of the control host. In this setting interface, the user can select a suitable waveform, such as a sine wave, square wave, or sawtooth wave; after determining the waveform, then set the frequency, pulse width, duration, and configuration quantity in sequence, and define a prescription name after the parameter setting is completed. In this way, this prescription and the corresponding parameters are used as a first electrostimulation scheme and saved in the control host. For target objects with the same or similar symptoms, directly select this prescription the next time it is used. It should be understood that in actual use, according to the feedback of the target object, the intensity of the electrostimulation can also be adjusted through the intensity button of the electrostimulation host on the basis of this prescription to achieve a better feeling.
[0099] The control host also sends the above first electrostimulation scheme to the communication charging dock. If an electrostimulation host is placed on the machine position corresponding to the bin information, the electrostimulation host will directly obtain the above first electrostimulation scheme; if an electrostimulation host is not placed on the machine position corresponding to the bin information, the first electrostimulation scheme will be stored in the third main control module of the communication charging dock. When the user places the electrostimulation host on the designated machine position, the above electrostimulation scheme can be obtained. That is, in this embodiment, the communication charging dock can serve as an intermediate communication station to communicatively connect the electrostimulation host and the control host, and can also serve as a storage station to pre-store the first electrostimulation scheme corresponding to the designated machine position transmitted by the control host. When the electrostimulation host needs to load the first electrostimulation scheme, it only needs to be placed on the corresponding machine position.
[0100] For the above electrostimulation control method, the control host generates a corresponding first electrostimulation scheme according to the user's operation instruction and transmits it to the communication charging dock. The user only needs to place the electrostimulation host on the designated machine position to obtain the first electrostimulation scheme, which greatly improves the operation efficiency and operation flexibility.
[0101] Optionally, configuring a corresponding first electrostimulation scheme for the designated machine position according to the parameter information of the electrostimulation includes: Querying the corresponding first electrostimulation scheme from a preset database according to the parameter information of the electrostimulation.
[0102] Assigning the first electrostimulation scheme obtained by the query to the designated machine position corresponding to the bin information.
[0103] Specifically, the user can preset parameters such as the electrostimulation waveform, electrostimulation time, electrostimulation frequency, and electrostimulation pulse width of the electrostimulation according to the typical symptoms of the target object to obtain multiple prescriptions, and set the prescription names as Prescription One, Prescription Two,....
[0104] Next time when using, if the target object has the above typical symptoms, only the prescription name needs to be directly selected to query the corresponding first electrostimulation scheme. In this way, the user can quickly perform electrostimulation on the target user, greatly improving the operation efficiency.
[0105] Optionally, configuring a corresponding first electrostimulation scheme for the designated machine position according to the parameter information of the electrostimulation includes: Generating a corresponding first electrostimulation scheme according to the parameter information of the electrostimulation.
[0106] Assigning the generated first electrostimulation scheme to the designated machine position corresponding to the bin information.
[0107] Specifically, when the symptoms of the target user this time do not belong to the above typical symptoms, the user sets the above parameter information for the target user according to the pre-established usage rules or empirical values and generates a new first electrostimulation scheme.
[0108] The above-mentioned electrical stimulation control method can select a pre-stored first electrical stimulation scheme from a database according to the actual situation of the target object, or generate a new first electrical stimulation scheme in real time according to parameter information, and is applicable to a variety of application scenarios.
[0109] Optionally, when at least one electrode patch is connected to the control host, the above-mentioned electrical stimulation control method further includes: Analyze the user's operation instructions to obtain the channel information of the electrode patch and the parameter information of the electrical stimulation.
[0110] According to the parameter information of the electrical stimulation, configure a corresponding second electrical stimulation scheme for the specified electrode patch.
[0111] According to the second electrical stimulation scheme, perform electrical stimulation on the target object through the specified electrode patch corresponding to the channel information.
[0112] Specifically, the channel information of the electrode patch refers to which electrode patch is connected to the control host, and this channel information is used to indicate which electrode patch the user uses to perform medium-frequency electrical stimulation on the user.
[0113] Please refer to Figure 9 , Figure 9 which shows another setting interface of the display screen of the control host. Figure 9 As shown, there are four channels A-D, and the user can randomly select one or more channels as the electrode patches to be used this time. Further, similar to the first electrical stimulation scheme, the parameter information of the second electrical stimulation scheme also includes the prescription name, electrical stimulation waveform, electrical stimulation time, electrical stimulation frequency, and electrical stimulation pulse width. This second electrical stimulation scheme can also be pre-stored in the database or generated in real time by setting parameters.
[0114] The above-mentioned electrical stimulation control method can achieve electrical stimulation of multiple frequencies in the same device, adapt to more scenarios that require multi-frequency electrical stimulation at the same time, and has a wider range of use.
[0115] Although the embodiments of the present invention have been described in detail above, it is obvious to those skilled in the art that various modifications and changes can be made to these embodiments. However, it should be understood that such modifications and changes are all within the scope and spirit of the present invention described in the claims. Moreover, the present invention described herein can have other embodiments and can be implemented or realized in various ways.
Claims
1. An electrical stimulation host, characterized in that, Including: A power communication module, when the electrical stimulation host is located at a position of the communication charging stand, the power communication module is connected to this position and receives a first electrical stimulation scheme corresponding to this position; A main control module, used to store the first electrical stimulation scheme; A stimulation output module, used to perform electrical stimulation on a target object according to the first electrical stimulation scheme.
2. The electrical stimulation mainframe according to claim 1, characterized in that, The electrical stimulation host further includes an interaction module, and the interaction module includes a display screen and a plurality of buttons; Each of the buttons is used to provide a window for a user to operate the electrical stimulation host; The display screen is used to display the content corresponding to the operation instruction in response to the operation instruction of the user.
3. The electrical stimulation host according to claim 2, characterized in that, The electrical stimulation host further includes: A storage battery, connected to the power communication module, used to obtain power when the power communication module is connected to a specified position, and supply power to the electrical stimulation host when the power communication module disconnects from the specified position.
4. The electrical stimulation host according to claim 1, wherein The electrical stimulation host further includes: Contacts, used to achieve electrical connection between the electrical stimulation host and the communication charging stand when the electrical stimulation host is placed on a position of the communication charging stand.
5. A control method for an electrical stimulation host, characterized in that Applicable to the electrical stimulation host according to any one of claims 1-4, the method includes: When the electrical stimulation host is located at a position of the communication charging stand, receiving a first electrical stimulation scheme generated by a control host.
6. The method according to claim 5, wherein: The first electrical stimulation scheme received by the electrical stimulation host is generated by the control host in response to the operation instruction of the user and transmitted to the electrical stimulation host through the communication charging stand; Or, the first electrical stimulation scheme received by the electrical stimulation host is generated by the control host in response to the operation instruction of the user and pre-stored in the communication charging stand.
7. The method according to claim 5, wherein The method further includes: The electrical stimulation host stores the received first electrical stimulation scheme to form a scheme library; After receiving the operation instruction of the user, parsing the operation instruction to obtain call information; According to the call information, searching for the corresponding first electrical stimulation scheme in the scheme library; Performing electrical stimulation on the target object according to the searched first electrical stimulation scheme.
8. The method according to claim 5, characterized in that, The method further includes: After receiving the operation instruction of the user, parsing the operation instruction to obtain parameter information of the electrical stimulation; Generating a corresponding first electrical stimulation scheme according to the parameter information of the electrical stimulation; Performing electrical stimulation on the target object according to the generated first electrical stimulation scheme.
9. The method according to claim 7 or 8, characterized in that, The method further includes: After receiving the operation instruction of the user, verifying the permission of this user; In the case of successful verification, parsing the operation instruction.
10. The method according to claim 9, wherein The verification method of the user permission includes: Verifying the input order of each button of the electrical stimulation host; If the input order meets the preset order, it is considered that the verification is successful.