Intelligent rhabdomyography therapeutic apparatus based on multi-program combination and control system

By designing an intelligent striated muscle electrophysiological therapy instrument with multiple program combinations, and adopting a "T"-shaped fixed axis, magnetic suction and clamping structure, the problems of unstable instrument placement and loose electrodes were solved, achieving stable placement on bed frames of different materials and stability of the electrotherapy process.

CN121714835APending Publication Date: 2026-03-24WUHAN XINKEHUI MEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing intelligent striated muscle electrophysiological therapy devices are prone to falling or moving during placement, which can cause the electrodes and interfaces to become loose, affecting the stability of the electrotherapy operation.

Method used

An intelligent striated muscle electrophysiological therapy instrument based on multi-program combination was designed. It adopts a "T"-shaped fixed axis, auxiliary limiting mechanism, positioning mechanism and anti-drop mechanism, combined with magnetic suction and clamping structure to ensure that the instrument is stably placed on bed frames of different materials, and prevents loosening by limiting and clamping the electrode connection wire.

Benefits of technology

It enables stable placement on bed frames of different materials, preventing them from falling or the electrode connection wires from becoming loose, ensuring the stability of the electrotherapy process and preventing short circuits.

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Abstract

The invention discloses an intelligent rhabdomyography electrophysiology therapeutic apparatus and a control system based on multi-program combination, and relates to the technical field of intelligent rhabdomyography electrophysiology therapeutic apparatuses, the intelligent rhabdomyography electrophysiology therapeutic apparatus comprises a machine body, one side of the machine body is provided with a handle, one end of the machine body far away from the handle is provided with an electrode connector, and the bottom end of the machine body is provided with a fixed shaft; the fixing shaft is arranged to be in a T shape, an auxiliary limiting mechanism used for limiting is arranged on the surface of the fixing shaft, the electrode connector is connected with an electrode, the electrode is pasted to the position needing treatment, and then a lantern ring arranged at the bottom end of the machine body makes contact with a bed frame; when the bed frame is used, an iron bed frame can be attracted through the magnetic attraction ring arranged at the bottom end, and for a non-iron bed frame, the two clamping plates can rotate by rotating the clamping plates, are in a U shape and clamp the bed frame, so that a machine body is stably clamped, and the falling risk can be reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the biomedical technology field, specifically a kind of intelligent striated muscle electrophysiological therapeutic instrument and control system based on multi-program combination. BACKGROUND

[0002] Striated muscle electrophysiological therapeutic instrument is converted into visual or auditory feedback by collecting muscle electrical activity signal, which helps patients to actively adjust muscle function, realizes electrotherapy operation treatment, and this process is consistent with the core concept of "bioelectricity" in biomedical science. Human cell membrane potential, nerve conduction and other physiological functions are maintained by bioelectricity activity. Bioelectricity is the basis of life activities, such as cell metabolism and nerve conduction, which depend on electrical signal transmission. Striated muscle electrophysiological therapeutic instrument realizes treatment target by interfering with electrical signal pathway. When the above-mentioned intelligent striated muscle electrophysiological therapeutic instrument is used for electrotherapy operation, the electrode needs to be connected with the interface, and then the electrode is pasted at the position needing stimulation. When stimulation treatment is performed, the intelligent striated muscle electrophysiological therapeutic instrument needs to be placed aside, which may cause the intelligent striated muscle electrophysiological therapeutic instrument to fall or move during placement, so as to cause the electrode and the interface to be loose, affecting the stability of electrotherapy operation. SUMMARY

[0003] The present application aims to make up for the shortcomings of the prior art, and provides an intelligent striated muscle electrophysiological therapeutic instrument and control system based on multi-program combination.

[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an intelligent striated muscle electrophysiological therapeutic instrument based on multi-program combination, comprising a body, a handle is arranged on one side of the body, an electrode connecting port is arranged at the end of the body away from the handle, a fixing shaft is arranged at the bottom end of the body, and the shape of the fixing shaft is arranged as a "T" shape, an auxiliary limiting mechanism for limiting is arranged on the surface of the fixing shaft, a positioning mechanism is arranged in the auxiliary limiting mechanism, the auxiliary limiting mechanism comprises a sleeve ring arranged on the surface of the fixing shaft, clamping plates are arranged on both sides of the sleeve ring, symmetrically distributed butt blocks are arranged at the end of the clamping plate close to the sleeve ring, a connecting shaft fixedly connected with the butt block is arranged at one end of the butt block, and a gear is arranged on the surface of the connecting shaft.

[0005] The above-mentioned one side of the butt block is provided with a push rod connected through, one end of the push rod is provided with a movable frame fixedly connected, a sliding groove matched with the movable frame is arranged in the butt block, a first limiting spring is connected between the movable frame and the butt block, a cross bar is arranged at the end of the movable frame away from the push rod, a limiting gear ring engaged with the gear is arranged at one end of the cross bar, and a magnetic ring is arranged at the bottom end of the sleeve ring.

[0006] The positioning mechanism includes a fixed frame arranged at the top end of the fixed shaft, the inside of the fixed frame is provided with a moving plate, the bottom end of the moving plate is provided with a sliding frame connected with the fixed shaft, the surface of the sliding frame is movably connected with a sliding block, the sliding block and the sliding frame are connected with a return spring, the sliding block and the moving plate are rotatably connected with a support plate through an axis, the top end of the moving plate is provided with a limiting block, and the inside of the sleeve ring is provided with a limiting groove matched with the limiting block.

[0007] The bottom end of the body is provided with an anti-falling mechanism on one side, the anti-falling mechanism includes a turnover plate arranged in the body, the inside of the turnover plate is provided with a sliding rod fixedly connected, the surface of the sliding rod is movably connected with a limiting clamp, and the limiting clamp and the turnover plate are connected with a second limiting spring.

[0008] The end of the turnover plate is provided with a fixed plate, the inside of the fixed plate is movably connected with an extension plate, the extension plate and the fixed plate are connected with a third limiting spring, one end of the extension plate is provided with a rotating shaft connected in rotation, and the two sides of the turnover plate close to the fixed plate are provided with limiting insertion rods.

[0009] A control system of an intelligent cross-stripe muscle electrophysiological therapeutic instrument based on multi-program combination includes a control manager arranged in the body, a signal receiving unit, a program storage unit, a program combination unit and a data transmission module, the input end of the control manager is connected with the signal receiving unit, the output end of the control manager is connected with the program storage unit, the program combination unit and the data transmission module in series, the input end of the program combination unit is connected with the output end of the program storage unit, and the output end of the program combination unit is connected with the input end of the control manager.

[0010] The output end of the program storage unit is connected with a program distribution module in series, and the output end of the program distribution module is connected with a first storage module, a second storage module and a third storage module.

[0011] The output end of the first storage module, the second storage module and the third storage module is connected with a data deletion module respectively, and the output end of the data deletion module is connected with the input end of a data conveying module respectively.

[0012] The output end of the program combination unit is connected with an extraction receiving module in series, the output end of the extraction receiving module is connected with a setting combination module, and the output end of the setting combination module is connected with a display confirmation module.

[0013] The output end of the display confirmation module is connected with a reset clearing module and a scheme transmission module respectively, and the output end of the reset clearing module is connected with the input end of the extraction receiving module.

[0014] Compared with the prior art, the intelligent striated muscle electrophysiological therapeutic instrument and control system based on multi-program combination has the following beneficial effects: Firstly, when the intelligent striated muscle electrophysiological therapeutic instrument is used, the electrode connecting port is connected with the electrode, the electrode is pasted at a position requiring treatment, the thimble arranged at the bottom end of the body is contacted with the bed frame, the iron bed frame is attracted, the two clamping plates are rotated to clamp the bed frame when the iron bed frame is not used, the body can be placed more stably, the intelligent striated muscle electrophysiological therapeutic instrument is suitable for bed frames made of iron and non-iron materials, and the intelligent striated muscle electrophysiological therapeutic instrument can be placed without falling during the electrotherapy process.

[0015] Secondly, after the intelligent striated muscle electrophysiological therapeutic instrument is placed, the body is rotated, the limiting block is clamped with different limiting grooves, the body is fixed, different placement directions are selected after the selected bed frame position is attracted, and the intelligent striated muscle electrophysiological therapeutic instrument is convenient to operate during electrotherapy.

[0016] Thirdly, when the intelligent striated muscle electrophysiological therapeutic instrument is used, the turnover plate is pulled and turned over, the electrode connecting wire is clamped by the limiting clamp, the electrode connecting wire is inserted into the electrode connecting port, the limiting plug rod is inserted into the body, the limiting plug rod is locked, the position of the turnover plate and the limiting clamp is fixed, the electrode connecting wire is stably positioned, the electrode connecting wire is prevented from loosening, short circuit caused by the electrode connecting wire is avoided, and the intelligent striated muscle electrophysiological therapeutic instrument is prevented from short circuit during the electrotherapy process.

[0017] Other advantages, objects, and features of the present application will be apparent to those skilled in the art from the following specification, in certain respects, are deemed obvious from consideration of the following specification, or are learned from practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a top view of the stereoscopic structure of the present application; Figure 2 It is a bottom view of the stereoscopic structure of the present application; Figure 3 It is a stereoscopic structure diagram of the turnover plate after turning over of the present application; Figure 4 It is a stereoscopic structure diagram of the fixed shaft of the present application; Figure 5 It is a stereoscopic structure diagram of the thimble of the present application; Figure 6 It is a stereoscopic structure diagram of the fixed frame of the present application; Figure 7It is a perspective structure schematic diagram of the sliding block of the application; Figure 8 It is a perspective structure schematic diagram of the turnover plate of the application; Figure 9 It is a perspective structure schematic diagram of the turnover plate of the application; Figure 10 It is a perspective structure schematic diagram of the control manager of the application; Figure 4 It is an enlarged structure schematic diagram of A in the application; Figure 11 It is a main frame structure schematic diagram of the control manager of the application; Figure 12 It is a structure schematic diagram of the program storage unit of the application; Figure 13 It is a structure schematic diagram of the program combination unit of the application.

[0019] In the figure: 1, body; 2, handle; 3, electrode connecting port; 4, fixed shaft; 5, auxiliary limiting mechanism; 501, collar; 502, clamping plate; 503, butt joint block; 504, connecting shaft; 505, gear; 506, push rod; 507, moving frame; 508, first limiting spring; 509, crossbar; 510, limiting gear ring; 511, magnetic attraction ring; 6, positioning mechanism; 601, fixed frame; 602, moving plate; 603, sliding frame; 604, sliding block; 605, reset spring; 606, support plate; 607, limiting block; 608, limiting groove; 7, anti-falling mechanism; 701, turnover plate; 702, sliding rod; 703, limiting clamp; 704, second limiting spring; 705, fixed plate; 706, extension plate; 707, third limiting spring; 708, rotating shaft; 709, limiting plug; 8, control manager; 9, signal receiving unit; 10, program storage unit; 11, program combination unit; 12, data transmission module; 13, program distribution module; 14, first storage module; 15, second storage module; 16, third storage module; 17, data deletion module; 18, data delivery module; 19, extraction receiving module; 20, setting combination module; 21, display confirmation module; 22, reset clearing module; 23, scheme transmission module. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.

[0021] As Figures 1-10As shown, the present application provides a technical scheme: a kind of intelligent striated muscle electrophysiological therapy instrument based on multi-program combination, including body 1, the side of body 1 is provided with handle 2, the end of body 1 away from handle 2 is provided with electrode connecting port 3, the bottom of body 1 is provided with fixed shaft 4, and the shape of fixed shaft 4 is set as "T" character, the surface of fixed shaft 4 is provided with auxiliary limiting mechanism 5 for limiting, the inside of auxiliary limiting mechanism 5 has positioning mechanism 6, auxiliary limiting mechanism 5 includes the sleeve ring 501 of being arranged on the surface of fixed shaft 4, both sides of sleeve ring 501 are provided with clamping plate 502, one end of clamping plate 502 close to sleeve ring 501 is provided with symmetrically distributed docking block 503, one end of docking block 503 is provided with fixedly connected connecting shaft 504, the surface of connecting shaft 504 is provided with gear 505, one side of one docking block 503 is provided with through connection push rod 506, one end of push rod 506 is provided with fixedly connected moving frame 507, the sliding slot matched with moving frame 507 is opened in the inside of docking block 503, first limiting spring 508 is connected between moving frame 507 and docking block 503, the end of moving frame 507 away from push rod 506 is provided with cross bar 509, and one end of cross bar 509 is provided with the meshing connection of limit gear ring 510 with gear 505, the bottom of sleeve ring 501 is provided with magnetic ring 511.

[0022] The end of docking block 503 is provided with the sliding slot matched with moving frame 507, and the end portion is also provided with circular groove, can avoid the interference of moving frame 507 when docking block 503 rotates, while cross bar 509 can be inserted in one end of clamping plate 502, while the surface of cross bar 509 is provided with rubber block, and the inside of clamping plate 502 is also provided with the matching slot of rubber block, can avoid moving frame 507 loose when placing, and the inside of clamping plate 502 is also provided with the empty slot for the movement of limit gear ring 510, can make limit gear ring 510 have better activity space when moving.

[0023] In use, the electrode connection port 3 is connected with the electrode, and the electrode is pasted at the position to be treated. The sleeve 501 at the bottom of the body 1 is contacted with the bed frame, so that the magnetic attraction ring 511 at the bottom of the sleeve 501 can be attracted to the iron bed frame, and the body 1 can be stably attracted to the bed frame, preventing the device from falling due to random placement. When the iron bed frame is not used, the push rod 506 is pushed, and the moving frame 507 connected with the push rod 506 is pushed when the push rod 506 moves. The first limiting spring 508 on one side is pressed when the moving frame 507 moves. The horizontal rod 509 on one side is moved when the moving frame 507 moves, and the limiting gear ring 510 connected with the horizontal rod 509 is moved when the horizontal rod 509 moves, so that the limiting gear ring 510 can be separated from the gear 505, and the connecting shaft 504 can be lost. The limiting can be lost, and 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 symmetrical clamping plates 502 can clamp the bed frame after rotation, so that the body 1 can be more stable when placed. It is suitable for iron and non-iron bed frames of various materials, and can avoid falling when placed, so that it can be placed better during electrotherapy.

[0024] As shown in Figure 6 and Figure 7 The positioning mechanism 6 includes a fixed frame 601 arranged at the top end of the fixed shaft 4. The inside of the fixed frame 601 is provided with a moving plate 602. The bottom end of the moving plate 602 is provided with a sliding frame 603 connected with the fixed shaft 4. The surface of the sliding frame 603 is movably connected with a sliding block 604. The sliding block 604 and the sliding frame 603 are connected with a return spring 605. The sliding block 604 and the moving plate 602 are rotatably connected with a support plate 606 through a rotating shaft. The top end of the moving plate 602 is provided with a limiting block 607. The inside of the sleeve 501 is provided with a limiting groove 608 matched with the limiting block 607.

[0025] The support plates 606 are symmetrically distributed at the bottom end of the moving plate 602, so that the moving plate 602 can move synchronously with the two support plates 606 after being pressed, so that the two sliding blocks 604 can synchronously slide on the surface of the sliding frame 603. The two sides of the moving plate 602 are provided with guide rods, so that the moving plate 602 can be more stable when moving.

[0026] After placing, the body 1 can be rotated, so that the body 1 can rotate the fixed shaft 4 during rotation, and the fixed shaft 4 can move the limiting block 607 during rotation, and the limiting block 607 can be moved downward by the setting of the sleeve ring 501 during rotation, and the limiting block 607 can move the connected moving plate 602 when moving downward, so that the moving plate 602 can move the support plate 606 arranged at the bottom end when moving, and the support plate 606 can push the sliding block 604 connected at the bottom end when moving, and the sliding block 604 can slide on the surface of the sliding frame 603 when moving, and can extrude the reset spring 605 arranged on one side when sliding, and after the fixed shaft 4 is moved to the appropriate position, the limiting block 607 can be aligned with the other limiting groove 608, so that the limiting block 607 can be lost, and then the reset spring 605 can be pushed, and the support plate 606 can move the moving plate 602 arranged at the top end when moving, and then the moving plate 602 can move the connected limiting block 607 when moving, and the limiting block 607 can be connected with the limiting groove 608, so that the body 1 can be fixed, and then after the selected bed frame position is attracted, different placing directions can be selected to realize the convenient operation of the intelligent cross-stripe muscle physiological therapeutic instrument during electrotherapy.

[0027] As shown in Figure 8 and Figure 9 , the body 1 is provided with a anti-falling mechanism 7 on one side of the bottom end, the anti-falling mechanism 7 includes a turnover plate 701 arranged inside the body 1, the inside of the turnover plate 701 is provided with a sliding rod 702 fixedly connected, the surface of the sliding rod 702 is movably connected with a limiting clamp 703, the limiting clamp 703 is connected with a second limiting spring 704 between the turnover plate 701, one end of the turnover plate 701 is provided with a fixed plate 705, the inside of the fixed plate 705 is movably connected with an extension plate 706, the extension plate 706 and the fixed plate 705 are connected with a third limiting spring 707, one end of the extension plate 706 is provided with a rotating shaft 708 movably connected, both sides of the turnover plate 701 close to the fixed plate 705 are provided with a limiting plug rod 709.

[0028] One end of the body 1 is provided with a slot matched with the limiting plug rod 709, so that the turnover plate 701 can be inserted into the slot when reset, which can not only avoid the turnover plate 701 from turning over again, but also can stably place the turnover plate 701 and the limiting clamp 703, and the two limiting clamps 703 can clamp the electrode connecting wire to avoid loosening and falling off.

[0029] In use, the flip plate 701 can be pulled to flip over, and after flipping, the rotating shaft 708 can rotate around the rotating shaft, then the flip plate 701 can be rotated after flipping, and then the flip plate 701 can rotate to make the fixed plate 705 and the rotating shaft 708 rotate, and then the limiting clamp 703 can be flipped, then the flip plate 701 can be pulled to move the connected fixed plate 705 when moving, and then the fixed plate 705 can extrude the third limiting spring 707 inside when moving, then the flip plate 701 is kept pulling, then when the electrode and the electrode connection port 3 are connected, the electrode connecting line is first pressed downward from the limiting clamp 703, the electrode connecting line can push the limiting clamp 703, and the limiting clamp 703 can move to both sides, and the limiting clamp 703 can slide on the surface of the sliding rod 702 when moving, and can extrude the connected second limiting spring 704 when sliding, then after complete installation of the electrode connecting line, the second limiting spring 704 can reset, and then the limiting clamp 703 can move, so that the two moved limiting clamps 703 can clamp the electrode connecting line, then the electrode connecting line is inserted into the electrode connection port 3, and the flip plate 701 can be released when inserting, so that the third limiting spring 707 can move the fixed plate 705 and the flip plate 701, and the limiting plug rod 709 arranged on one side of the flip plate 701 can be inserted into the body 1, the limiting plug rod 709 inserted and locked can fix the positions of the flip plate 701 and the limiting clamp 703, so that the electrode connecting line can be clamped and limited, to avoid loosening of the electrode connecting line, to avoid loose short circuit, and to help prevent short circuit of the intelligent striated muscle electrophysiological therapeutic instrument during electrotherapy.

[0030] As shown in Figures 11-13 A control system of an intelligent striated muscle electrophysiological therapeutic instrument based on multi-program combination, including 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 arranged inside the body 1, the input end of the control manager 8 is connected with the signal receiving unit 9, the output end of the control manager 8 is connected with the program storage unit 10, the program combination unit 11 and the data transmission module 12 in series, the input end of the program combination unit 11 is connected with the output end of the program storage unit 10, the output end of the program combination unit 11 is connected with the input end of the control manager 8, the output end of the program storage unit 10 is connected with a program distribution module 13 in series, the output end of the program distribution module 13 is connected with a first storage module 14, a second storage module 15 and a third storage module 16 respectively, the output end of the first storage module 14, the second storage module 15 and the third storage module 16 is connected with a data deletion module 17 respectively, the output end of the data deletion module 17 is connected with the input end of a data delivery module 18 respectively.

[0031] Before use, the smart striated muscle electrophysiological therapeutic instrument can transmit a plurality of different treatment programs to the program storage unit 10 through the control manager 8, so that the program storage unit 10 can transmit data to the program distribution module 13 connected to the output end, and then the data can be distributed through the program distribution module 13, so that a plurality of different treatment programs are respectively stored in the first storage module 14, the second storage module 15 and the third storage module 16, and then the subsequent smart striated muscle electrophysiological therapeutic instrument can quickly extract the stored treatment programs in the first storage module 14, the second storage module 15 and the third storage module 16 during use, and the output ends of the first storage module 14, the second storage module 15 and the third storage module 16 are all connected with separate data deletion modules 17, which can select different data storage according to the use matching condition, and finally the stored data in the first storage module 14, the second storage module 15 and the third storage module 16 can be extracted and transmitted through the data transmission module 18, so as to realize the storage of the prefabricated treatment program of the smart striated muscle electrophysiological therapeutic instrument for different treatment targets.

[0032] The output end of the program combination unit 11 is connected with the extraction receiving module 19, the output end of the extraction receiving module 19 is connected with the setting combination module 20, the output end of the setting combination module 20 is connected with the display confirmation module 21, the output end of the display confirmation module 21 is respectively connected with the reset clearing module 22 and the program transmission module 23, and the output end of the reset clearing module 22 is connected with the input end of the extraction receiving module 19.

[0033] In use, the intelligent striated muscle electrophysiological therapeutic instrument can receive user instructions through the signal receiving unit 9, and then can issue instructions to the program storage unit 10 through the control manager 8, so that the program storage unit 10 can transmit the stored program to the program combination unit 11, so that the extraction receiving module 19 inside the program combination unit 11 can extract the obtained program data, and then input it to the setting combination module 20, which can distribute and set multiple programs through the setting combination module 20, can select at least two programs from the preset treatment programs, and can set the execution logic through the setting combination module 20 to form a combined treatment sequence, which can then be displayed through the display confirmation module 21 through the display screen of the intelligent striated muscle electrophysiological therapeutic instrument, and then the user can choose whether to confirm the program according to the actual situation, if not confirmed, the set combined treatment sequence can be deleted through the reset clearing module 22, and then re-set after the data is extracted through the extraction receiving module 19. The final confirmed combined treatment sequence can be input to the control manager 8 through the program transmission module 23, and then control the electrode to output electrical stimulation, while sending the treatment program to the connected mobile terminal through the data transmission module 12, realizing clear display of the treatment program, and completing the electrode corresponding electrical stimulation through the combined treatment sequence after multiple program combination.

[0034] The working process of the control system is as follows: the user issues an instruction through an external device (such as a remote control or a mobile phone APP), which is received by the signal receiving unit 9 and transmitted to the control manager 8, which calls the pre-stored treatment program in the program storage unit 10, and extracts data from at least two pre-stored programs according to the user's selected combination mode in the setting combination module 20 to form a combined treatment sequence, which is displayed by the display confirmation module 21 and confirmed by the user, and then fed back to the control manager 8 through the program transmission module 23, and finally the electrode connection port 3 outputs the corresponding electrical stimulation signal according to the sequence.

[0035] Working principle: the electrode connection port 3 can be connected with the electrode, and the electrode can be pasted on the position needing treatment, then the clamping plate 502 can be rotated around the connection shaft 504, so that the two clamping plates 502 are unfolded outward and rotated to a certain angle with the plane of the sleeve ring 501, forming a "U" shaped clamping structure, to adapt to and clamp different shapes of bed frames, so that the body 1 can be stably clamped, and the body 1 can also be rotated after being stably placed, which can synchronously rotate the fixed shaft 4 connected at the bottom, and the body 1 can be repositioned through the setting of the limiting block 607, which can be clamped with the limiting groove 608, so that the body 1 can be repositioned, and then different placement directions can be selected after suction at the selected bed frame position, realizing good placement and adjustment function of the intelligent striated muscle electrophysiological therapeutic instrument during electrical therapy operation.

[0036] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the 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). Both sides of the collar (501) are provided with clamping plates (502). The clamping plates (502) are provided with symmetrically distributed docking blocks (503) at one end near the collar (501). One end of the docking blocks (503) is provided with a fixedly connected connecting shaft (504). The surface of the connecting shaft (504) is provided with gears (505). The auxiliary limiting mechanism (5) has a positioning mechanism (6) inside. The bottom side of the machine body (1) is provided with an anti-dropping mechanism (7).

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: The positioning mechanism (6) includes a fixed frame (601) set at the top 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 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 of the movable plate (602), and a limit groove (608) matching the limit block (607) is opened inside the collar (501).

4. The intelligent striated muscle electrophysiological therapy device based on multi-program combination according to claim 1, characterized in that: The anti-fall-off mechanism (7) includes a flip plate (701) disposed 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).

5. The intelligent striated muscle electrophysiological therapy device based on multi-program combination according to claim 4, 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).

6. A control system applicable to the intelligent striated muscle electrophysiological therapy device based on multi-program combination as described in any one of claims 1-5, 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).

7. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 6, characterized in that: The output of the program storage unit (10) is connected in series with a program allocation module (13), and the output of the program allocation module (13) is connected to a first storage module (14), a second storage module (15) and a third storage module (16).

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 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).

9. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 6, 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 to a setting combination module (20), and the output of the setting combination module (20) is connected to a display confirmation module (21).

10. The control system of the intelligent striated muscle electrophysiological therapy instrument based on multi-program combination according to claim 9, 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).

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