Intelligent striated muscle electrophysiological therapeutic instrument based on multi-program combination and control system
Patent Information
- Application Number
- CN202511605994.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-05
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2045-11-05
AI Technical Summary
对于上述的智能横纹肌电生理治疗仪在进行电疗操作时,需要将电极与接口进行连接,随后将电极在需要刺激的位置进行粘贴,而在进行刺激治疗时需要将智能横纹肌电生理治疗仪在一旁进行放置,导致在进行放置时易造成智能横纹肌电生理治疗仪的掉落或移动,从而容易造成电极与接口出现松动,影响电疗操作时的稳定性
一、本发明在使用时,可通过将电极连接口与电极进行连接,并将电极在需要治疗的位置进行粘贴后,将机体底端设置的套环与床架进行接触,能对铁质床架进行吸合,而对于不是铁质床架进行使用时,对两个夹持板进行旋转能对床架进行夹持,从而能使机体在进行放置时能较为稳定,适用于铁质及非铁质等多种材质的床架,且在进行放置时能避免出现掉落,使其在电疗过程中能实现较好的放置。
Smart Images

Figure CN121714835B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of biomedical technology, specifically to an intelligent electrophysiological therapy device and control system for striated muscle based on multi-program combination. Background Technology
[0002] The striated muscle electrophysiological therapy device collects muscle electrical activity signals and converts them into visual or auditory feedback to help patients actively regulate muscle function and achieve electrotherapy. This process is consistent with the core concept of "bioelectricity" in biomedicine. Human cell membrane potential, nerve conduction and other physiological functions depend on bioelectric activity to maintain physiological functions. Bioelectricity is the foundation of life activities. For example, cell metabolism and nerve conduction depend on the transmission of electrical signals. The striated muscle electrophysiological therapy device achieves its therapeutic goals by intervening in electrical signal pathways. When performing electrotherapy with the aforementioned intelligent striated muscle electrophysiological therapy device, the electrodes need to be connected to the interface, and then the electrodes are attached to the area to be stimulated. However, during stimulation therapy, the intelligent striated muscle electrophysiological therapy device needs to be placed aside, which makes it easy for the device to fall or move, thus causing the electrodes and interface to loosen and affecting the stability of the electrotherapy operation. Summary of the Invention
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide an intelligent striated muscle electrophysiological therapy instrument and control system based on multi-program combination.
[0004] To achieve the above objectives, the present invention provides the following technical solution: an intelligent striated muscle electrophysiological therapy device based on multi-program combination, comprising a body, a handle provided on one side of the body, an electrode connection port provided at the end of the body away from the handle, a fixed shaft provided at the bottom of the body, and the fixed shaft being T-shaped, an auxiliary limiting mechanism for limiting the position provided on the surface of the fixed shaft, a positioning mechanism inside the auxiliary limiting mechanism, the auxiliary limiting mechanism including a collar provided on the surface of the fixed shaft, clamping plates provided on both sides of the collar, symmetrically distributed docking blocks provided at the end of the clamping plates near the collar, a fixedly connected connecting shaft provided at one end of the docking blocks, and gears provided on the surface of the connecting shaft.
[0005] As described above, a push rod is provided through one side of one of the docking blocks, and a movable frame is provided at one end of the push rod. A sliding groove matching the movable frame is opened inside the docking block. A first limiting spring is connected between the movable frame and the docking block. A crossbar is provided at the end of the movable frame away from the push rod, and a limiting toothed ring that meshes with a gear is provided at one end of the crossbar. A magnetic suction ring is provided at the bottom end of the collar.
[0006] The aforementioned positioning mechanism includes a fixed frame disposed at the top of a fixed shaft, a movable plate disposed inside the fixed frame, a sliding frame disposed at the bottom of the movable plate and connected to the fixed shaft, a sliding block movably connected to the surface of the sliding frame, a return spring connected between the sliding block and the sliding frame, a support plate rotatably connected between the sliding block and the movable plate via a rotating shaft, a limit block disposed at the top of the movable plate, and a limit groove matching the limit block being opened inside the collar.
[0007] As described above, an anti-fall mechanism is provided on one side of the bottom of the machine body. The anti-fall mechanism includes a flip plate disposed inside the machine body. A sliding rod is fixedly connected inside the flip plate. A limit clamp is movably connected to the surface of the sliding rod. A second limit spring is connected between the limit clamp and the flip plate.
[0008] As described above, a fixed plate is provided at one end of the flip plate, an extension plate is provided inside the fixed plate, a third limiting spring is connected between the extension plate and the fixed plate, a rotating shaft is provided at one end of the extension plate, and limiting rods are provided on both sides of the flip plate near the fixed plate.
[0009] A control system for an intelligent striated muscle electrophysiological therapy device based on multi-program combination includes a control manager, a signal receiving unit, a program storage unit, a program combination unit, and a data transmission module disposed inside the device. The input terminal of the control manager is connected to the signal receiving unit, and the output terminal of the control manager is connected in series with the program storage unit, the program combination unit, and the data transmission module. The input terminal of the program combination unit is connected to the output terminal of the program storage unit, and the output terminal of the program combination unit is connected to the input terminal of the control manager.
[0010] As described above, the output terminal of the program storage unit is connected in series with a program allocation module, and the output terminal of the program allocation module is respectively connected to a first storage module, a second storage module, and a third storage module.
[0011] As described above, the output terminals of the first storage module, the second storage module, and the third storage module are respectively connected to a data deletion module, and the output terminals of the data deletion modules are all connected to the input terminals of the data transmission module.
[0012] As described above, the output terminal of the program combination unit is connected in series with an extraction and receiving module, the output terminal of the extraction and receiving module is connected to a setting combination module, and the output terminal of the setting combination module is connected to a display confirmation module.
[0013] As described above, the output terminal of the display confirmation module is connected to the reset clearing module and the scheme transmission module respectively, and the output terminal of the reset clearing module is connected to the input terminal of the extraction receiving module.
[0014] Compared with existing technologies, this intelligent striated muscle electrophysiological therapy instrument and control system based on multi-program combination has the following beneficial effects: I. In use, this invention connects the electrode to the electrode and attaches the electrode to the treatment area. Then, the collar at the bottom of the device contacts the bed frame. This allows for attraction to iron bed frames. For non-iron bed frames, rotating the two clamping plates clamps the bed frame, ensuring stability during placement. This invention is suitable for bed frames made of various materials, including iron and non-iron, and prevents the device from falling during placement, thus ensuring proper placement during electrotherapy.
[0015] Second, after placement, the machine body can be rotated so that the limiting block can engage with different limiting slots, thereby fixing the machine body. After being attracted at the selected bed frame position, different placement directions can be selected, making it convenient to operate the intelligent striated muscle electrophysiological therapy device during electrotherapy.
[0016] Third, in use, the present invention can be flipped by pulling the flip plate, and then the electrode connection wire can be clamped by the limiting clamp and inserted into the electrode connection port. The limiting rod can be inserted into the machine body. The position of the flip plate and the limiting clamp can be fixed by inserting and locking the limiting rod, thereby stabilizing and limiting the electrode connection wire, preventing the electrode connection wire from becoming loose, and thus preventing short circuits caused by loose electrode connection wires. This helps to prevent short circuits in the intelligent striated muscle electrophysiological therapy instrument during electrotherapy.
[0017] Other advantages, objectives and features of the invention will be set forth in part in the description which follows, and in part will be apparent to those skilled in the art from the following examination or study, or may be learned from the practice of the invention. Attached Figure Description
[0018] Figure 1 This is a top-view three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention viewed from below; Figure 3 This is a schematic diagram of the three-dimensional structure of the flip plate after it has been flipped. Figure 4 This is a three-dimensional structural diagram of the fixed shaft of the present invention; Figure 5 This is a three-dimensional cross-sectional view of the collar of the present invention; Figure 6 This is a three-dimensional structural diagram of the fixing frame of the present invention; Figure 7This is a three-dimensional structural diagram of the sliding block of the present invention; Figure 8 This is a three-dimensional structural diagram of the flip plate of the present invention; Figure 9 This is a three-dimensional cross-sectional view of the flip plate of the present invention; Figure 10 For the present invention Figure 4 Enlarged structural diagram at point A in the middle; Figure 11 This is a schematic diagram of the main frame structure of the control manager of the present invention; Figure 12 This is a schematic diagram of the structure of the program storage unit of the present invention; Figure 13 This is a schematic diagram of the structure of the program assembly unit of the present invention.
[0019] In the diagram: 1. Body; 2. Handle; 3. Electrode connection port; 4. Fixed shaft; 5. Auxiliary limiting mechanism; 501. Collar; 502. Clamping plate; 503. Connecting block; 504. Connecting shaft; 505. Gear; 506. Push rod; 507. Moving frame; 508. First limiting spring; 509. Crossbar; 510. Limiting gear ring; 511. Magnetic ring; 6. Positioning mechanism; 601. Fixed frame; 602. Moving plate; 603. Sliding frame; 604. Sliding block; 605. Return spring; 606. Support plate; 607. Limiting block; 608. Limiting groove; 7. Anti-falling mechanism; 701. Flipping plate; 702. Sliding rod; 703. Limiting clamp; 704. Second limiting spring; 705. Fixing plate; 706. Extension plate; 707. Third limiting spring; 708. Rotating shaft; 709. Limiting rod; 8. Control manager; 9. Signal receiving unit; 10. Program storage unit; 11. Program combination unit; 12. Data transmission module; 13. Program allocation module; 14. First storage module; 15. Second storage module; 16. Third storage module; 17. Data deletion module; 18. Data transmission module; 19. Extraction and receiving module; 20. Setting combination module; 21. Display confirmation module; 22. Reset and clear module; 23. Scheme transmission module. Detailed Implementation
[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0021] like Figures 1-10As shown, the present invention provides a technical solution: an intelligent striated muscle electrophysiological therapy device based on multi-program combination, including a body 1, a handle 2 provided on one side of the body 1, an electrode connection port 3 provided at the end of the body 1 away from the handle 2, a fixed shaft 4 provided at the bottom of the body 1, and the fixed shaft 4 is shaped as a "T". An auxiliary limiting mechanism 5 for limiting is provided on the surface of the fixed shaft 4. The auxiliary limiting mechanism 5 has a positioning mechanism 6 inside. The auxiliary limiting mechanism 5 includes a collar 501 provided on the surface of the fixed shaft 4. Clamping plates 502 are provided on both sides of the collar 501. Symmetrically distributed docking blocks 5 are provided at the end of the clamping plates 502 near the collar 501. 03. One end of the docking block 503 is provided with a fixedly connected connecting shaft 504. The surface of the connecting shaft 504 is provided with a gear 505. One side of the docking block 503 is provided with a through-connected push rod 506. One end of the push rod 506 is provided with a fixedly connected movable frame 507. The docking block 503 has a sliding groove that matches the movable frame 507. A first limiting spring 508 is connected between the movable frame 507 and the docking block 503. The end of the movable frame 507 away from the push rod 506 is provided with a crossbar 509. One end of the crossbar 509 is provided with a limiting gear ring 510 that meshes with the gear 505. The bottom end of the collar 501 is provided with a magnetic suction ring 511.
[0022] One end of the docking block 503 is provided with a sliding groove that matches the movable frame 507, and the end is also provided with a circular groove, which can prevent the docking block 503 from being interfered with by the movable frame 507 when it rotates. At the same time, the crossbar 509 can be inserted into one end of the clamping plate 502. The surface of the crossbar 509 is provided with a rubber block, and the inside of the clamping plate 502 is also provided with a slot that matches the rubber block, which can prevent the movable frame 507 from becoming loose when placed. The inside of the clamping plate 502 is also provided with a slot for the movement of the limiting tooth ring 510, which can give the limiting tooth ring 510 a good range of motion when it moves.
[0023] In use, the electrode can be connected to the electrode via electrode connection port 3 and then attached to the treatment area. The collar 501 at the bottom of the machine body 1 is then placed in contact with the bed frame, causing the magnetic ring 511 at the bottom of the collar 501 to attract the metal bed frame. This ensures the machine body 1 remains stably attached to the bed frame, preventing it from falling due to improper placement. For non-metallic bed frames, the push rod 506 can be pushed, which in turn pushes the connected movable frame 507. The movable frame 507, in turn, compresses the first limiting spring 508 on one side. When 507 moves, it can move the crossbar 509 set on one side, and when the crossbar 509 moves, it can move the connected limiting gear ring 510, so that the limiting gear ring 510 can separate from the gear 505, and then the connecting shaft 504 can be unrestricted. Then the clamping plate 502 can be rotated, so that the clamping plate 502 can form a "U" shaped clamping plate after rotation. The two symmetrically set clamping plates 502 can clamp the bed frame after rotation, so that the machine body 1 can be placed more stably. It is suitable for bed frames of various materials such as iron and non-iron, and can prevent falling during placement, so that it can be placed well during electrotherapy.
[0024] like Figure 6 and Figure 7 As shown, the positioning mechanism 6 includes a fixed frame 601 set at the top of the fixed shaft 4. A movable plate 602 is set inside the fixed frame 601. A sliding frame 603 connected to the fixed shaft 4 is set at the bottom of the movable plate 602. A sliding block 604 is movably connected to the surface of the sliding frame 603. A return spring 605 is connected between the sliding block 604 and the sliding frame 603. A support plate 606 is rotatably connected between the sliding block 604 and the movable plate 602 through a rotating shaft. A limit block 607 is set at the top of the movable plate 602. A limit groove 608 matching the limit block 607 is opened inside the collar 501.
[0025] The support plates 606 are symmetrically distributed at the bottom of the movable plate 602, so that the movable plate 602 can move the two support plates 606 synchronously after being pressed down, and thus the two sliding blocks 604 can slide synchronously on the surface of the sliding frame 603. Guide rods are provided on both sides of the movable plate 602, and the movable plate 602 can be relatively stable when it moves.
[0026] After placement, the machine body 1 can be rotated, allowing the fixed shaft 4 to rotate. The fixed shaft 4, in turn, moves the limiting block 607. Simultaneously, the collar 501 causes the limiting block 607 to move downwards during rotation. This downward movement of the limiting block 607 moves the connected moving plate 602, which in turn moves the support plate 606 at the bottom. The support plate 606, in turn, pushes the sliding block 604 connected at the bottom. Simultaneously, the sliding block 604 slides on the surface of the sliding frame 603, and during this sliding motion, it actuates the return spring 605 on one side. When the fixed shaft 4 is displaced to a suitable position, the limiting block 607 can be aligned with another limiting groove 608, thereby freeing the limiting block 607 from restriction. This, in turn, frees the return spring 605 from restriction, which in turn pushes the support plate 606. When the support plate 606 moves, it can move the moving plate 602 set at the top. When the moving plate 602 moves, it can move the connected limiting block 607. The limiting block 607 can engage with the limiting groove 608, thereby fixing the body 1. After being attracted at the selected bed frame position, different placement directions can be selected, making it convenient to operate the intelligent striated muscle electrophysiological therapy instrument during electrotherapy.
[0027] like Figure 8 and Figure 9 As shown, an anti-fall mechanism 7 is provided on one side of the bottom end of the body 1. The anti-fall mechanism 7 includes a flip plate 701 installed inside the body 1. A sliding rod 702 is fixedly connected inside the flip plate 701. A limit clamp 703 is movably connected to the surface of the sliding rod 702. A second limit spring 704 is connected between the limit clamp 703 and the flip plate 701. A fixed plate 705 is provided at one end of the flip plate 701. An extension plate 706 is movably connected inside the fixed plate 705. A third limit spring 707 is connected between the extension plate 706 and the fixed plate 705. A rotating shaft 708 is rotatably connected to one end of the extension plate 706. Limiting rods 709 are provided on both sides of the flip plate 701 near the fixed plate 705.
[0028] One end of the body 1 is provided with a slot that matches the limiting rod 709, which allows the flip plate 701 to be inserted into the slot when it resets. This not only prevents the flip plate 701 from flipping again, but also stabilizes the flip plate 701 and the limiting clamp 703. At the same time, the two limiting clamps 703 can hold the electrode connection wire to prevent it from loosening and falling off.
[0029] In use, the flip plate 701 can be pulled and flipped, allowing the rotating shaft 708 to rotate around the shaft. After flipping, the flip plate 701 can be rotated, causing the fixed plate 705 to rotate relative to the rotating shaft 708 via a rotating block. This allows the limiting clamp 703 to flip. The flip plate 701 can then be pulled, moving the connected fixed plate 705. As the fixed plate 705 moves, it compresses the internal third limiting spring 707. The flip plate 701 is then held in place. When the electrode is connected to the electrode connection port 3, the electrode connecting wire is pressed downwards from the limiting clamp 703, pushing it. The limiting clamp 703 can then move to both sides, and simultaneously slides on the surface of the sliding rod 702. The device moves and, during sliding, can compress the second limiting spring 704. After the electrode connection wire is fully installed, the second limiting spring 704 can return to its original position, thereby allowing the limiting clamp 703 to move. The electrode connection wire can then be clamped by the two moved limiting clamps 703. The electrode connection wire is then inserted into the electrode connection port 3. At the same time, the flip plate 701 can be released during insertion, allowing the third limiting spring 707 to move the fixing plate 705 and the flip plate 701. This allows the limiting rod 709 on one side of the flip plate 701 to be inserted into the body 1. The inserted and locked limiting rod 709 can fix the position of the flip plate 701 and the limiting clamp 703, thereby clamping and limiting the electrode connection wire to prevent it from becoming loose. This helps to prevent short circuits during electrophysiological treatment of intelligent striated muscle.
[0030] like Figures 11-13 As shown, a control system for an intelligent striated muscle electrophysiological therapy device based on multi-program combination includes a control manager 8, a signal receiving unit 9, a program storage unit 10, a program combination unit 11, and a data transmission module 12 disposed inside the body 1. The input terminal of the control manager 8 is connected to the signal receiving unit 9. The output terminals of the control manager 8 are connected in series with the program storage unit 10, the program combination unit 11, and the data transmission module 12. The input terminal of the program combination unit 11 is connected to the output terminal of the program storage unit 10, and the output terminal of the program combination unit 11 is connected to the input terminal of the control manager 8. The output terminal of the program storage unit 10 is connected in series with a program allocation module 13. The output terminals of the program allocation module 13 are connected to a first storage module 14, a second storage module 15, and a third storage module 16. The output terminals of the first storage module 14, the second storage module 15, and the third storage module 16 are connected to a data deletion module 17. The output terminals of the data deletion module 17 are all connected to the input terminal of the data transmission module 18.
[0031] Before use, the intelligent striated muscle electrophysiological therapy device can pre-transmit various treatment plans to the program storage unit 10 via the control manager 8. The program storage unit 10 can then transmit the data to the program allocation module 13 connected to the output end. The program allocation module 13 can then allocate the data, allowing various treatment plans to be stored in the first storage module 14, the second storage module 15, and the third storage module 16 respectively. This facilitates the rapid retrieval of the stored treatment plans from the first storage module 14, the second storage module 15, and the third storage module 16 during subsequent use. Simultaneously, each of the first storage module 14, the second storage module 15, and the third storage module 16 has a separate data deletion module 17 connected to its output end, allowing for the selection of different data storage options depending on the application. Finally, the stored data in the first storage module 14, the second storage module 15, and the third storage module 16 can be retrieved and transmitted via the data transmission module 18, enabling the intelligent striated muscle electrophysiological therapy device to store pre-prepared treatment programs for different treatment targets.
[0032] The output of the program combination unit 11 is connected in series with the extraction and receiving module 19. The output of the extraction and receiving module 19 is connected to the setting combination module 20. The output of the setting combination module 20 is connected to the display confirmation module 21. The output of the display confirmation module 21 is connected to the reset and clear module 22 and the scheme transmission module 23 respectively. The output of the reset and clear module 22 is connected to the input of the extraction and receiving module 19.
[0033] When in use, the intelligent striated muscle electrophysiological therapy instrument can receive user commands through the signal receiving unit 9, and then issue commands to the program storage unit 10 through the control manager 8. This causes the program storage unit 10 to transmit the stored plans to the program combination unit 11, allowing the extraction and receiving module 19 within the program combination unit 11 to extract the obtained plan data. This data is then input to the setting combination module 20, which can allocate and set multiple plans. At least two programs can be selected from preset treatment programs, and the execution logic can be set through the setting combination module 20 to form a combined treatment sequence. This sequence can then be used... The display confirmation module 21 displays the information on the screen of the intelligent striated muscle electrophysiological therapy instrument, allowing users to choose whether to confirm the program based on the actual situation. If not confirmed, the set combination treatment sequence can be deleted through the reset and clear module 22, and the data can be retrieved and reset through the extraction and receiving module 19. Finally, the confirmed combination treatment sequence can be input to the control manager 8 through the plan transmission module 23, thereby controlling the electrode output electrical stimulation. At the same time, the treatment plan is sent to the connected mobile terminal through the data transmission module 12, realizing a clear display of the treatment plan. The combined treatment sequence after multiple program combinations completes the electrotherapy of the corresponding electrode electrical stimulation.
[0034] The workflow of the control system is as follows: The user issues a command through an external device (such as a remote control or a mobile APP). After receiving the command, the signal receiving unit 9 transmits it to the control manager 8. The control manager 8 calls the pre-stored treatment plan in the program storage unit 10. The program combination unit 11 extracts data from at least two pre-stored programs according to the combination mode selected by the user, and forms a combination treatment sequence in the setting combination module 20. After the sequence is displayed by the display confirmation module 21 and confirmed by the user, it is fed back to the control manager 8 through the plan transmission module 23. Finally, the control electrode connection port 3 outputs the corresponding electrical stimulation signal according to the sequence.
[0035] Working principle: The electrode can be connected to the electrode at the electrode connection port 3 and then pasted on the position to be treated. Then, the clamping plate 502 can be rotated around the connecting shaft 504 as the axis, so that the two clamping plates 502 unfold outward and rotate to a certain angle with the plane of the collar 501, thereby forming a "U" shaped clamping structure to adapt to and clamp different shaped bed frames, so that the machine body 1 can be stably clamped. After being stably placed, the machine body 1 can also be rotated, and the fixed shaft 4 connected at the bottom can be rotated synchronously. At the same time, the limiting block 607 can be set to engage with the limiting groove 608, so that the machine body 1 can be re-limited. After being attracted at the selected bed frame position, different placement directions can be selected, so that the intelligent striated muscle electrophysiological therapy instrument has good placement and adjustment functions during electrotherapy operation.
[0036] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An intelligent striated muscle electrophysiological therapy device based on multi-program combination, comprising a body (1), characterized in that: A handle (2) is provided on one side of the body (1), an electrode connection port (3) is provided at the end of the body (1) away from the handle (2), and a fixed shaft (4) is provided at the bottom of the body (1), and the shape of the fixed shaft (4) is set as "T". The surface of the fixed shaft (4) is provided with an auxiliary limiting mechanism (5) for limiting the position. The auxiliary limiting mechanism (5) includes a collar (501) provided on the surface of the fixed shaft (4). Clamping plates (502) are provided on both sides of the collar (501). Symmetrically distributed docking blocks (503) are provided at one end of the clamping plate (502) near the collar (501). A connecting shaft (504) is fixedly connected at one end of the docking block (503). Gears (505) are provided on the surface of the connecting shaft (504). The fixed shaft (4) is provided with a positioning mechanism (6) at its top end. The positioning mechanism (6) includes a fixed frame (601) at the top end of the fixed shaft (4). A movable plate (602) is provided inside the fixed frame (601). A sliding frame (603) connected to the fixed shaft (4) is provided at the bottom end of the movable plate (602). A sliding block (604) is movably connected to the surface of the sliding frame (603). A return spring (605) is connected between the sliding block (604) and the sliding frame (603). A support plate (606) is rotatably connected between the sliding block (604) and the movable plate (602) through a rotating shaft. A limit block (607) is provided at the top end of the movable plate (602). A limit groove (608) matching the limit block (607) is opened inside the collar (501). An anti-fall mechanism (7) is provided on one side of the bottom end of the machine body (1). The anti-fall mechanism (7) includes a flip plate (701) provided inside the machine body (1). A sliding rod (702) is fixedly connected inside the flip plate (701). A limit clamp (703) is movably connected to the surface of the sliding rod (702). A second limit spring (704) is connected between the limit clamp (703) and the flip plate (701).
2. The intelligent striated muscle electrophysiological therapy device based on multi-program combination according to claim 1, characterized in that: A push rod (506) is provided through-connected on one side of the docking block (503). A movable frame (507) is fixedly connected to one end of the push rod (506). A sliding groove matching the movable frame (507) is opened inside the docking block (503). A first limiting spring (508) is connected between the movable frame (507) and the docking block (503). A crossbar (509) is provided at the end of the movable frame (507) away from the push rod (506). A limiting tooth ring (510) that meshes with the gear (505) is provided at one end of the crossbar (509). A magnetic ring (511) is provided at the bottom end of the collar (501).
3. The intelligent striated muscle electrophysiological therapy device based on multi-program combination according to claim 1, characterized in that: One end of the flip plate (701) is provided with a fixed plate (705), and the inside of the fixed plate (705) is provided with an extension plate (706) that is movably connected. A third limiting spring (707) is connected between the extension plate (706) and the fixed plate (705). One end of the extension plate (706) is provided with a rotating shaft (708) that is rotatably connected. Limiting rods (709) are provided on both sides of the flip plate (701) near the fixed plate (705).
4. A control system applicable to the intelligent striated muscle electrophysiological therapy device based on multi-program combination as described in any one of claims 1-3, comprising a control manager (8), a signal receiving unit (9), a program storage unit (10), a program combination unit (11), and a data transmission module (12) disposed inside the body (1), characterized in that: The input terminal of the control manager (8) is connected to the signal receiving unit (9), and the output terminal of the control manager (8) is connected in series with the program storage unit (10), the program combination unit (11) and the data transmission module (12). The input terminal of the program combination unit (11) is connected to the output terminal of the program storage unit (10), and the output terminal of the program combination unit (11) is connected to the input terminal of the control manager (8).
5. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 4, characterized in that: The program storage unit (10) has a program allocation module (13) connected in series at its output end. The output end of the program allocation module (13) is connected to the first storage module (14), the second storage module (15), and the third storage module (16), respectively.
6. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 5, characterized in that: The output terminals of the first storage module (14), the second storage module (15) and the third storage module (16) are respectively connected to the data deletion module (17), and the output terminals of the data deletion module (17) are respectively connected to the input terminal of the data transmission module (18).
7. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 4, characterized in that: The output of the program combination unit (11) is connected in series with an extraction and receiving module (19), the output of the extraction and receiving module (19) is connected with a setting combination module (20), and the output of the setting combination module (20) is connected with a display confirmation module (21).
8. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 7, characterized in that: The output of the display confirmation module (21) is connected to the reset clear module (22) and the scheme transmission module (23), respectively. The output of the reset clear module (22) is connected to the input of the extraction receiving module (19).
Citation Information
Patent Citations
Magnetic energy mattress structure
CN115778136A
Head correcting and positioning device for radiotherapy
CN118370938A