Pulse assembly and pulse treatment device and method for treating gout

By designing the deployable chair plate and back plate structure, the existing pulse therapy equipment takes up space and the electrode piece wires are easily entangled, and the back massage function is added, which improves the treatment efficiency and comfort of patients.

CN120502030APending Publication Date: 2025-08-19QINGDAO BINHAI UNIV
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Patent Information

Application Number
CN202510750692.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-06
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

The existing pulse therapy equipment occupies a large space, the electrode patch lines are easy to wrap, and lacks back soothing function, which affects the efficiency of use and patient comfort.

Method used

A pulse treatment device including a mobile frame, a lifting plate, an expandable chair plate and a back plate is designed. The lifting plate and a U-shaped connecting head are driven by a screw to realize the expansion of the chair plate and the back plate, and a support leg self-locking structure is provided, and the electrode sheet circuit is avoided from being wrapped through a storage mechanism, and a massage component is equipped for back massage.

Benefits of technology

It reduces space occupation during treatment, avoids tangling of electrode sheets, provides back massage function, and improves usage efficiency and patient comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a pulse assembly and a pulse treatment device and method for treating gout, and belongs to the field of medical instruments. In order to solve the problems that a treatment seat occupies a large space, an electrode circuit is easy to wind and a back relieving function is lacked, the device comprises a movable frame body, a lifting plate, an expandable seat plate and a back plate. The universal wheels are arranged at the bottom of the movable frame body, when the lifting plate is driven by the lead screw to ascend, the U-shaped connector is linked to push the back plate to move outwards, the chair plate is unfolded to be a horizontal chair, and occupied space is reduced. Supporting legs at the bottom of the chair plate are provided with rotating shafts and latch braking structures, and are automatically locked when unfolded. The electrode slice is installed on the U-shaped frame of the placing plate, the rack is pushed through the trapezoid block when the back plate moves, the placing plate is made to rotate out of the containing semicircular groove, and line winding is avoided. A massage wheel is arranged in the back plate, an electric push rod drives a rack to drive a gear to rotate in a reciprocating mode, and massage hemispheres relieve back fatigue. The device optimizes the utilization rate of a treatment space, and improves the operation convenience and the comfort of a patient.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, and in particular to a pulse component and a pulse treatment device and method for treating gout. Background Art

[0002] Gout is caused by the accumulation of uric acid crystals, which triggers joint inflammation. Existing pulse therapy devices require a fixed seat, taking up a lot of space and making it difficult for patients with limited mobility to move. Electrode wiring easily becomes tangled, making storage difficult. Treatment requires patients to remain seated for extended periods, lacking back relief and leading to muscle fatigue. Some devices lack the flexibility to adapt to different treatment areas, impacting their effectiveness.

[0003] In response to the above problems, the present invention document proposes a pulse component and a pulse treatment device and method for treating gout. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the existing treatment in which patients sit on a specific chair for treatment, which takes up a large space, the storage and use of electrodes are not convenient, the lines of the electrode are easily entangled, and there is a lack of massage function for the patient's back. A pulse component and a pulse treatment device and method for treating gout are proposed.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] A pulse assembly includes a mounting plate and an electrode sheet fixedly embedded on one side of the mounting plate. A restraining belt is provided on one side of the mounting plate. A first Velcro and a second Velcro are respectively fixed on both sides of the restraining belt. The first Velcro and the second Velcro cooperate with each other to restrain the electrode sheet to the patient's lesion.

[0007] A pulse treatment device for treating gout comprises a pulse assembly as described above, and further comprises a movable frame in an inverted U shape, wherein a storage cavity is provided;

[0008] A lifting plate is slidably connected to the storage cavity, and the lifting plate is used to install the pulse therapy device body;

[0009] a fixed rod, longitudinally fixed in the receiving cavity and slidingly passing through the lifting plate to guide the lifting;

[0010] A screw rod is longitudinally rotatably connected to the receiving cavity and has a thread penetrating the lifting plate to drive the lifting;

[0011] two back plates, slidably connected to the top inner wall of the movable frame;

[0012] Two chair panels are rotatably connected to the movable frame and are located below the corresponding back panels;

[0013] The unfolding structure includes a push rod, a U-shaped connector, and a storage mechanism; the push rod slides through the bottom of the storage cavity, the top end of which is fixed to the bottom of the lifting plate, and the bottom end is fixed with a U-shaped connector; the storage mechanism is used to store and remove the installation tray;

[0014] When the screw drives the lifting plate to move up, the U-shaped connecting head is driven to move by the push rod, so that the back plate moves outward and the chair plate is unfolded to a horizontal state through the second connecting rod, forming a double seat to reduce space occupancy.

[0015] In one possible design, the deployment structure further includes:

[0016] Two first connecting rods are rotatably connected in the U-shaped connector, and both ends of the first connecting rods are rotatably connected to the back plate;

[0017] Two second connecting rods are rotatably connected to the outer side of the back plate and are rotatably connected to the top of the seat plate;

[0018] The supporting structure is arranged at the bottom of the chair board, and includes a rotating shaft, a supporting leg and a brake assembly; the rotating shaft is rotatably arranged in the yield groove of the chair board, and the supporting leg is fixedly sleeved on the outer wall of the rotating shaft; the brake assembly includes a sliding rod, a latch and a load-bearing block, the sliding rod slides through the supporting leg and is fixed with the latch, and the load-bearing block is arranged at the bottom end of the sliding rod; when the chair board is unfolded to a horizontal position, the load-bearing block is supported by the ground and retracted into the storage groove, driving the latch to engage with the first gear to lock the supporting leg.

[0019] In one possible design, the storage mechanism includes:

[0020] Two semicircular storage grooves are provided on both sides of the movable frame;

[0021] A driving rod is rotatably connected to the movable frame, and both ends extend to the receiving semicircular groove;

[0022] A placement plate is fixedly sleeved on the outer wall of the driving rod and connected to the receiving semicircular groove via a torsion spring;

[0023] a first rack, longitudinally slidably connected to the movable frame and meshing with the second gear on the driving rod;

[0024] The trapezoidal block is fixed to the top of the back plate and is used to push the first rack to move upward to drive the placement plate to rotate, so that the installation plate is rotated out of the receiving semicircular groove.

[0025] In a possible design, a plurality of U-shaped frames are fixed to one side of the placement plate, and the mounting plate is embedded in the U-shaped frame.

[0026] In a possible design, a cover is provided on the top of the movable frame, and the cover is fixed to the top of the pulse therapy device body by bolts to close the storage cavity.

[0027] In a possible design, a plurality of universal wheels are provided at the bottom of the movable frame, and a cable channel is provided inside the movable frame for providing a routing channel for the lines between the electrode sheet and the pulse therapy device body.

[0028] In a possible design, a massage component is further included, and the massage component includes:

[0029] An electric push rod is fixed to the inner wall of the top of the movable frame;

[0030] A cylinder is fixed to the bottom end of the output shaft of the electric push rod, and two sleeves are slidably connected therein;

[0031] a sleeve rod, slidably connected to the end of the sleeve and extending into the back plate;

[0032] a second rack fixed to the end of the sleeve rod and meshing with the third gear in the rotating chamber;

[0033] The massage wheel is fixed to the outer wall of the rotating rod, and the outer wall is provided with a massage hemisphere;

[0034] The electric push rod drives the cylinder to move up and down, drives the second rack to move up and down through the sleeve and the sleeve rod, and makes the third gear drive the massage wheel to rotate back and forth to massage the patient's back.

[0035] In a possible design, a first gear is fixedly sleeved on the outer wall of the rotating shaft of the support leg, and the latching teeth are engaged with the first gear to limit the rotation of the rotating shaft.

[0036] In the present application, a method for using a pulse therapy device for treating gout comprises the following steps:

[0037] S1. Equipment positioning and therapeutic device deployment: Move the mobile frame to the treatment position, start the motor to drive the screw to rotate, and drive the lifting plate to move up to extend the pulse therapeutic device body from the storage cavity.

[0038] S2. Joint deployment of the seat: When the lifting plate moves up, the U-shaped connector is driven to move synchronously through the push rod. The U-shaped connector pushes the back plate to move outward through the first connecting rod. At the same time, the chair plate is driven to rotate to a horizontal state through the second connecting rod, so that the back plate and the chair plate form a treatment seat.

[0039] S3. Self-locking stability of the supporting legs: When the chair plate is unfolded, the supporting legs remain vertical under the action of gravity; when the chair plate reaches a horizontal state, the bottom end of the supporting legs contacts the ground, and the load-bearing blocks are retracted into the storage slots of the supporting legs due to the reaction force of the ground, driving the latch teeth to engage and lock with the first gear on the supporting legs, thereby achieving self-locking fixation of the supporting legs.

[0040] S4. Synchronous expansion of the electrode assembly: When the back plate moves outward, the inclined surface of the trapezoidal block on its top pushes the first rack upward, and the first rack drives the second gear to rotate the driving rod, so that the mounting plate and the electrode sheet on the placement plate are rotated out of the semicircular storage groove of the mobile frame to both sides of the patient's body.

[0041] S5. Electrode positioning and pulse therapy: Put the restraint belt on the line of the electrode sheet and fit it on the mounting plate; according to the location of the patient's lesion, select the mounting plate on the corresponding side and attach the electrode sheet to the affected area; use the restraint belt to wrap around the corresponding part of the limb or torso, and fix it with the first and second Velcro on the restraint belt so that the electrode sheet is close to the lesion; start the pulse therapy device to set the pulse frequency and pulse time for treatment.

[0042] S6. Back massage control: When back massage is needed, the electric push rod is started to drive the cylinder to move up and down reciprocatingly. The cylinder drives the second rack to move synchronously through the sleeve and the sleeve rod. The second rack engages with the third gear to drive the rotating rod and the massage wheel to rotate back and forth. The massage hemisphere on the outer wall of the massage wheel automatically massages the patient's back.

[0043] Beneficial effect: In the present invention, there are two first connecting rods rotating in the U-shaped connecting head, and the ends of the two first connecting rods away from each other are respectively rotatably connected to the corresponding back panels, and the sides of the two back panels away from each other are both rotatably connected to two second connecting rods, and the ends of the two second connecting rods away from the back panels are both rotatably connected to the top of the chair panel; the lifting plate drives the U-shaped connecting head upward through the pushing rod, and the U-shaped connecting head pushes the back panel to move outward through the first connecting rod. When the back panel moves, the chair panel rotates through the cooperation of the second connecting rod until the chair panel is horizontally unfolded, and the back panel and the chair panel form a seat, and two patients can sit on the corresponding chair panels for pulse treatment, which greatly saves the space wasted caused by patients sitting on specific chairs;

[0044] In the present invention, a rotating shaft rotates in the said giving way groove, the supporting leg fixed sleeve is arranged on the outer wall of the rotating shaft, the outer wall of the rotating shaft fixed sleeve is provided with a first gear, a sliding rod slides through the said supporting leg, the top end of the sliding rod is fixed with a latching tooth, and the bottom end of the sliding rod is fixed with a load-bearing block; when the chair plate rotates, the supporting leg is always kept vertically placed under the factor of gravity, and when the chair plate rotates to a horizontal state, the bottom end of the supporting leg touches the ground, and the load-bearing block extends into the storage groove under the resistance of the ground, the load-bearing block and the sliding rod move upward relative to the supporting leg, and the latching tooth engages with the first gear to brake it, thereby ensuring the stability of the supporting leg, and being used to support the chair plate and prevent the chair plate from tilting;

[0045] In the present invention, one side of the movable frame is provided with two receiving semicircular grooves, and the two receiving semicircular grooves are rotatably connected to the same driving rod, the outer wall fixing sleeve of the driving rod is provided with two placement plates, the outer wall fixing sleeve of the driving rod is provided with a second gear, the first rack is slidably connected to the movable frame, and the top of the back plate is fixed with a trapezoidal block; when the back plate moves outward, the trapezoidal block pushes the first rack to move upward, thereby driving the driving rod and the placement plate to rotate, and rotating the mounting disk and the electrode sheet out of the receiving semicircular groove. Since the two placement plates are symmetrically placed in the movable frame and the two placement plates are located on both sides of the patient, the mounting disk on the corresponding placement plate can be taken out to fit the lesion according to the patient's lesion position, thereby avoiding entanglement of the lines on the electrode sheet;

[0046] In the present invention, two sleeves are slidably connected in the cylinder, and the ends of the two sleeves away from each other are slidably connected with sleeve rods, and multiple rotating rods are rotatably connected in the rotating cavity, and the outer walls of multiple rotating rods are fixedly sleeved with a third gear, and the outer walls of multiple rotating rods are fixedly sleeved with a third gear. A second rack is slid in the rotating cavity, and one end of the sleeve rod away from the cylinder is fixedly connected to the second rack; the output shaft of the electric push rod drives the cylinder to move back and forth, and then drives the second rack to move synchronously, and the second rack is meshed with the third gear, driving the third gear, the rotating rod and the massage wheel to rotate reciprocatingly. At this time, the massage hemisphere on the outer wall of the massage wheel can automatically massage the patient's back, relieve the patient's back pain, and increase the patient's comfort.

[0047] In the present invention, when performing pulse treatment on a patient, the patient can sit directly on both sides of the mobile frame, thereby reducing the space occupied by the patient during treatment. During treatment, multiple mounting plates can be distributed on both sides of the patient to avoid excessive entanglement of the wires on the electrode sheets. In addition, when the patient sits for a long time, the patient's back can be massaged by rotating the massage wheel, thereby increasing the patient's comfort. BRIEF DESCRIPTION OF THE DRAWINGS

[0048] Figure 1 A schematic diagram of the three-dimensional structure of a pulse assembly provided by the present invention;

[0049] Figure 2 This is a schematic diagram of the three-dimensional structure of a pulse treatment device for treating gout provided by the present invention;

[0050] Figure 3 This is a schematic diagram of a three-dimensional cross-sectional structure of a mobile frame of a pulse therapy device for treating gout provided by the present invention;

[0051] Figure 4 This is a schematic diagram of a three-dimensional exploded structure of a pulse therapy device body, a cover plate, and a lifting plate for treating gout provided by the present invention;

[0052] Figure 5 This is a schematic cross-sectional view of a movable frame and a back plate of a pulse therapy device for treating gout provided by the present invention;

[0053] Figure 6 This is a schematic diagram of a three-dimensional exploded structure of a push rod, a first connecting rod and a back plate of a pulse treatment device for treating gout provided by the present invention;

[0054] Figure 7 This is a schematic diagram of a three-dimensional cross-sectional structure of a chair panel of a pulse therapy device for treating gout provided by the present invention;

[0055] Figure 8 This is a schematic diagram of a three-dimensional exploded cross-section of the support legs, rotating shaft, and sliding rod of a pulse therapy device for treating gout provided by the present invention;

[0056] Figure 9 This is a schematic diagram of a three-dimensional exploded structure of a mobile frame and a placement plate of a pulse therapy device for treating gout provided by the present invention;

[0057] Figure 10 This is a schematic diagram of a three-dimensional exploded structure of a placement plate, a drive rod, and a first rack of a pulse therapy device for treating gout provided by the present invention;

[0058] Figure 11 This is a schematic cross-sectional view of the movable frame, cylinder and back plate of a pulse treatment device for treating gout provided by the present invention;

[0059] Figure 12 for Figure 11 Enlarged structural diagram at point A in the middle.

[0060] In the figure: 1. Mobile frame; 2. Storage cavity; 3. Lifting plate; 4. Fixing rod; 5. Screw; 6. Pulse therapy device body; 7. Cover plate; 8. Push rod; 9. U-shaped connector; 10. First connecting rod; 11. Back plate; 12. Chair plate; 13. Second connecting rod; 14. Gap; 15. Rotating shaft; 16. Support leg; 17. Storage slot; 18. Sliding rod; 19. Load-bearing block; 20. Gear; 21. First gear; 22. Storage semicircular slot; 23. Driving rod ; 24. Placement plate; 25. Torsion spring; 26. Trapezoidal block; 27. First rack; 28. Second gear; 29. U-shaped frame; 30. Universal wheel; 31. Electrode plate; 32. Strap; 33. First Velcro; 34. Second Velcro; 35. Mounting plate; 36. Rotating cavity; 37. Rotating rod; 38. Third gear; 39. Massage wheel; 40. Massage hemisphere; 41. Second rack; 42. Electric push rod; 43. Cylinder; 44. Sleeve; 45. Sleeve rod. DETAILED DESCRIPTION

[0061] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0062] Example 1: Reference Figure 1 The pulse assembly relates to the field of medical device technology and mainly includes a mounting plate 35 and an electrode sheet 31 fixedly mounted on one side of the mounting plate 35. A restraining strap 32 is provided on one side of the mounting plate 35, and a first Velcro 33 and a second Velcro 34 are fixed on both sides of the restraining strap 32. The first Velcro 33 and the second Velcro 34 cooperate with each other and, by sticking the first Velcro 33 and the second Velcro 34 together, the electrode sheet 31 can be restrained at the patient's lesion site, so that the electrode sheet 31 is in close contact with the patient's skin, thereby ensuring the effective implementation of the pulse treatment.

[0063] Reference Figures 1-11 The treatment device includes the above-mentioned pulse component, and also includes a movable frame 1, an expansion structure, a storage mechanism and a massage structure.

[0064] Reference Figure 2 and Figure 3 The mobile frame 1 has an inverted U-shaped structure, an inverted trapezoidal structure, or a special-shaped frame with curved support edges. Made of aluminum alloy or engineering plastic, it serves as the device's supporting frame, used to carry and mount the other components. Two universal wheels 30 are fixed to the bottom of each side of the mobile frame 1. The universal wheels 30 facilitate flexible movement of the entire mobile frame 1 to a designated location, facilitating use in different treatment scenarios. A storage chamber 2 is provided within the mobile frame 1, providing storage space for components such as the pulse therapy device body 6.

[0065] Universal wheels on both sides of the mobile frame allow the entire device to be flexibly moved to a desired location, facilitating use in different treatment scenarios and enhancing its practicality and convenience. The cover seals the storage cavity when the pulse therapy device is stored, preventing dust and other impurities from entering. This provides excellent protection for the device and its components, extending its service life.

[0066] Reference Figure 2 and Figure 3 A cover plate 7 is provided above the movable frame 1 and is fixed to the top of the pulse therapy device body 6 by bolts. When the pulse therapy device body 6 is stored in the storage chamber 2, the cover plate 7 can seal the storage chamber 2, preventing dust and other impurities from entering the storage chamber 2, thereby protecting the pulse therapy device body 6 and other components.

[0067] Reference Figure 2-Figure 5A fixing rod 4 is longitudinally fixed in the storage chamber 2. The top end of the fixing rod 4 slides through the lifting plate 3. The fixing rod 4 acts as a guide, which can keep the lifting plate 3 stable during the lifting process and avoid shaking or tilting. At the same time, a screw rod 5 is also longitudinally rotatably connected in the storage chamber 2. The top end of the screw rod 5 threads through the lifting plate 3. The screw rod 5 cooperates with the fixing rod 4. When the screw rod 5 rotates, it can drive the lifting plate 3 to move up and down. Two back panels 11 are slidably connected to the top inner wall of the mobile frame 1. Two seat panels 12 are rotatably connected to the mobile frame 1, and the seat panels 12 are arranged below the corresponding back panels 11.

[0068] Reference Figure 5 and Figure 6 The deployment structure is primarily used to deploy the back panel 11 and seat panel 12, allowing the patient to sit on the seat panel 12 for pulse therapy. The deployment structure includes a push rod 8 that slides through the bottom inner wall of the storage chamber 2 and a U-shaped connector 9 secured to the bottom end of the push rod 8. The top end of the push rod 8 is secured to the bottom of the lift plate 3. When the motor drives the screw rod 5 to rotate, the screw rod 5 drives the lift plate 3 upward, and the lift plate 3, through the push rod 8, drives the U-shaped connector 9 to move synchronously.

[0069] Reference Figure 5 and Figure 6 There are two first connecting rods 10 rotating inside the U-shaped connector 9, and the ends of the two first connecting rods 10 that are away from each other are respectively rotatably connected to the corresponding back panels 11. The sides of the two back panels 11 that are away from each other are both rotatably connected to two second connecting rods 13, and the ends of the two second connecting rods 13 that are away from the back panels 11 are both rotatably connected to the top of the chair panel 12. When the lifting plate 3 moves upward to drive the U-shaped connector 9 to rise, the U-shaped connector 9 pushes the back panel 11 to move outward through the first connecting rod 10. When the back panel 11 moves, the chair panel 12 rotates through the cooperation of the second connecting rod 13 until the chair panel 12 is horizontally unfolded. At this time, the back panel 11 and the chair panel 12 form a seat, and the patient can sit on the chair panel 12 for pulse treatment.

[0070] By setting up a movable frame and an expandable backboard and seat board, when pulse treatment is needed, the lifting plate is raised to drive the backboard and seat board to expand to form a seat. The patient can sit directly on the chair board for treatment without having to find a specific chair. This greatly saves treatment space and is also convenient for patients with limited mobility.

[0071] Reference Figure 6-Figure 8In order to support the chair panel 12 when it is unfolded, two sets of supporting structures are provided at the bottom of the chair panel 12. The supporting structure includes a clearance groove 14 provided at the bottom of the chair panel 12 and a rotating shaft 15 rotatably provided in the clearance groove 14. The support leg 16 is fixedly sleeved on the outer wall of the rotating shaft 15. The outer wall of the rotating shaft 15 is fixedly sleeved with a first gear 21 located in the support leg 16. A sliding rod 18 slides through the support leg 16. A latching tooth 20 is fixed to the top of the sliding rod 18. The latching tooth 20 cooperates with the first gear 21 to brake the rotating shaft 15. A receiving groove 17 is provided at the bottom end of the support leg 16. The bottom end of the sliding rod 18 extends into the receiving groove 17 and is fixed with a load-bearing block 19.

[0072] In actual use, during the rotation of the seat plate 12, the support leg 16 is always kept upright due to gravity. When the seat plate 12 rotates to a horizontal position, the bottom end of the support leg 16 contacts the ground, and the load-bearing block 19 extends into the storage slot 17 under the resistance of the ground. The load-bearing block 19 and the sliding rod 18 move upward relative to the support leg 16, and the locking tooth 20 engages with the first gear 21 to brake it, thereby ensuring the stability of the support leg 16, effectively supporting the seat plate 12 and preventing the seat plate 12 from tilting.

[0073] The support structure at the bottom of the seat panel effectively supports it when it is unfolded. When the seat panel rotates to a horizontal position, the support legs contact the ground under the action of the load-bearing blocks, and the engagement of the latch teeth with the first gear brakes the rotating shaft, ensuring the stability of the support legs, preventing the seat panel from tilting, and ensuring the safety of the patient sitting on the seat panel.

[0074] Reference Figure 9 and Figure 10 The storage mechanism is used to store and remove multiple mounting discs 35, facilitating the use and management of the electrode sheets 31. The storage mechanism includes two semicircular storage grooves 22 provided on one side of the mobile frame 1. A driving rod 23 is rotatably connected to the mobile frame 1. The two ends of the driving rod 23 are rotatably connected to the inner walls of the two semicircular storage grooves 22 on the sides away from each other. Two placement plates 24 are fixedly sleeved on the outer wall of the driving rod 23. The two placement plates 24 are respectively provided in the two semicircular storage grooves 22. The driving rod 23 and the placement plates 24 cooperate to store and unfold the mounting discs 35.

[0075] Reference Figure 9 and Figure 10The two placement plates 24 are fixed with torsion springs 25 on the sides close to each other through spring seats (the torque range of the torsion springs 25 is 0.5-2N·m, ensuring that the placement plates 24 are stably reset when stored). The ends of the two torsion springs 25 close to each other are fixedly connected to the inner wall of one side of the receiving semicircular groove 22 through the spring seats, and the torsion springs 25 are sleeved on the outer wall of the driving rod 23. In the natural state, the action of the torsion springs 25 causes the placement plates 24 to receive the mounting plate 35 into the receiving semicircular groove 22. A cable channel is provided in the mobile frame 1 for making way for the lines between the electrode sheet 31 and the pulse therapy device body 6 to avoid the influence of cluttered lines on the normal use of the device.

[0076] Reference Figure 5 、 Figure 6 and Figure 10 The outer wall of the driving rod 23 is fixed with a second gear 28, and a first rack 27 is longitudinally slidably connected to the movable frame 1, and the first rack 27 is meshed with the second gear 28. The driving rod 23 can be driven to rotate by the lifting and lowering of the first rack 27. A trapezoidal block 26 is fixed to the top of the back plate 11. When the back plate 11 moves outward, the inclined surface of the trapezoidal block 26 on the top of the back plate 11 touches the first rack 27 and pushes the first rack 27 upward. The first rack 27 cooperates with the second gear 28 to drive the driving rod 23 and the placement plate 24 to rotate, and the mounting plate 35 and the electrode sheet 31 are rotated out of the receiving semicircular groove 22. Since the two placement plates 24 are symmetrically placed in the movable frame 1 and the two placement plates 24 are located on both sides of the patient, it is possible to remove the mounting plate 35 on the corresponding placement plate 24 according to the location of the patient's lesion, thereby avoiding entanglement of the lines on the electrode sheet 31.

[0077] The design of the storage mechanism allows multiple mounting plates to be neatly stored within the semicircular storage slot, preventing entanglement of electrode wiring. During treatment, the movement of the back plate drives the trapezoidal block to push the first rack upward, which in turn drives the drive rod and placement plate to rotate, removing the mounting plates and electrodes from the semicircular storage slot. This facilitates medical staff to remove the appropriate mounting plate based on the patient's lesion location, improving treatment efficiency.

[0078] Reference Figure 10 A plurality of U-shaped frames 29 are fixed to one side of the placement plate 24 , and the mounting plate 35 is placed in the U-shaped frame 29 . The U-shaped frame 29 serves to carry the mounting plate 35 , so that the mounting plate 35 can be stably placed on the placement plate 24 .

[0079] Example 2: Reference Figure 1 and Figure 10, an improvement based on Example 1: an electric push rod 42 is fixed to the inner wall of the top of the mobile frame 1 by bolts, and a cylinder 43 is fixed to the bottom end of the output shaft of the electric push rod 42. Two sleeves 44 are slidably connected in the cylinder 43, and the ends of the two sleeves 44 that are away from each other are slidably connected to a sleeve rod 45. A rotating cavity 36 is provided in each of the two back plates 11, and a plurality of rotating rods 37 are connected in a transversely rotating manner in the rotating cavity 36. The outer walls of the plurality of rotating rods 37 are fixedly sleeved with a third gear 38. One side of the massage wheel 39 extends to the side of the back plate 11 away from the electric push rod 42. A massage hemisphere 40 is fixed to the outer wall of the massage wheel 39, wherein the massage wheel 39 can be replaced by a hemispherical array roller, a wavy raised roller or a silicone vibration head.

[0080] Reference Figure 11 and Figure 12 A second rack 41 slides within the rotating chamber 36 and meshes with the plurality of third gears 38. A sleeve rod 45, distal from the cylinder 43, extends into the back plate 11 and is fixedly connected to the second rack 41, driving the second rack 41 up and down. A rectangular slot is defined on the side of the back plate 11 near the electric push rod 42, through which the sleeve rod 45 extends, making way for its elevation.

[0081] In actual use, when the electric push rod 42 is activated, its output shaft drives the cylinder 43 to move back and forth. Cylinder 43, via sleeve 44 and sleeve rod 45, drives the second rack 41 to move synchronously. Because the second rack 41 meshes with the plurality of third gears 38, the movement of the second rack 41 drives the third gears 38, the rotating rod 37, and the massage wheel 39 to rotate back and forth. At this time, the massage hemispheres 40 on the outer wall of the massage wheel 39 automatically massage the patient's back, alleviating back pain and increasing comfort.

[0082] The massage mechanism automatically massages the patient's back while they receive pulse therapy. The electric push rod drives the cylinder up and down, and through the transmission of the sleeve, sleeve rod, and second rack, the massage wheel and massage hemisphere reciprocate, massaging the patient's back, effectively relieving back pain, increasing patient comfort, and enhancing the patient's treatment experience.

[0083] A method for using a pulse therapy device for treating gout, comprising the following steps:

[0084] S1. Move the mobile frame 1 to the designated position, and use the motor to drive the screw rod 5 to rotate, which drives the lifting plate 3 to move upward, and remove the pulse therapy device body 6 from the storage chamber 2 for later use. When the lifting plate 3 moves upward, the push rod 8 drives the U-shaped connector 9 to move synchronously. The U-shaped connector 9 pushes the back plate 11 to move outward through the first connecting rod 10. When the back plate 11 moves, the second connecting rod 13 cooperates to rotate the chair plate 12 until the chair plate 12 is horizontally unfolded. The back plate 11 and the chair plate 12 form a seat, and two patients can sit on the corresponding chair plates 12 for pulse therapy, which greatly saves the space wasted by patients sitting on specific chairs.

[0085] S2. When the chair plate 12 rotates, the support leg 16 is always kept vertically under the factor of gravity. When the chair plate 12 rotates to a horizontal state, the bottom end of the support leg 16 touches the ground, and the load-bearing block 19 extends into the storage groove 17 under the resistance of the ground. The load-bearing block 19 and the sliding rod 18 move upward relative to the support leg 16, and the locking tooth 20 engages with the first gear 21 to brake it, thereby ensuring the stability of the support leg 16 and supporting the chair plate 12 to prevent the chair plate 12 from tilting;

[0086] S3. When the back plate 11 moves outward, the inclined surface of the trapezoidal block 26 on the top of the back plate 11 contacts the first rack 27 and pushes the first rack 27 upward. The first rack 27 cooperates with the second gear 28 to drive the driving rod 23 and the placement plate 24 to rotate, and the mounting plate 35 and the electrode sheet 31 are rotated out of the storage semicircular groove 22. Since the two placement plates 24 are symmetrically placed in the mobile frame 1 and the two placement plates 24 are located on both sides of the patient, the mounting plate 35 on the corresponding placement plate 24 can be taken out to fit the lesion according to the patient's lesion position, thereby avoiding entanglement of the lines on the electrode sheet 31.

[0087] S4. When performing a pulse, first, the binding belt 32 is put on the outer wall of the circuit on the electrode sheet 31, and the binding belt 32 is in contact with the mounting plate 35. Then, the electrode sheet 31 is placed on the patient's lesion, for example, the lesion is on the hand. The binding belt 32 is wrapped around the hand, and the second Velcro 34 cooperates with the first Velcro 33 to fix the binding belt 32, so that the electrode sheet 31 can be tightly attached to the lesion. The pulse frequency and pulse time are controlled by the pulse therapy device body 6.

[0088] S5. When the patient sits for a long time and needs to massage his back to increase comfort, the output shaft of the electric push rod 42 drives the cylinder 43 to move back and forth, and the cylinder 43 drives the second rack 41 to move synchronously through the sleeve 44 and the sleeve rod 45. The second rack 41 is engaged with the third gear 38, driving the third gear 38, the rotating rod 37 and the massage wheel 39 to rotate back and forth. At this time, the massage hemisphere 40 on the outer wall of the massage wheel 39 can automatically massage the patient's back, relieve the patient's back pain, and increase the patient's comfort.

[0089] However, as is well known to those skilled in the art, the working principles and wiring methods of the electric push rod 42, the pulse therapy device body 6 and the electrode sheet 31 are commonplace and are conventional means or common knowledge, so they will not be elaborated here. Those skilled in the art can make any selections according to their needs or convenience.

[0090] The drawings in this application are for illustrative purposes only. The sizes and shapes of the components shown are not intended to be limiting, but are merely for illustrative purposes. In actual implementation, the components may be appropriately configured and adjusted based on specific needs and actual conditions.

[0091] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A pulse component, characterized in that: The invention comprises a mounting plate (35) and an electrode sheet (31) fixedly embedded on one side of the mounting plate (35); a restraining belt (32) is provided on one side of the mounting plate (35); a first Velcro (33) and a second Velcro (34) are respectively fixed on both sides of the restraining belt (32); and the first Velcro (33) and the second Velcro (34) cooperate with each other to restrain the electrode sheet (31) at the patient's lesion.

2. A pulse treatment device for treating gout, comprising the pulse assembly according to claim 1, characterized in that: It also includes a movable frame (1) in an inverted U shape, with a storage cavity (2) provided therein; A lifting plate (3) is slidably connected to the storage cavity (2), and the lifting plate (3) is used to install the pulse therapy device body (6); A fixed rod (4) is longitudinally fixed in the receiving cavity (2) and slides through the lifting plate (3) to guide the lifting; A screw rod (5) is longitudinally rotatably connected to the receiving chamber (2), and a thread penetrates the lifting plate (3) to drive the lifting; Two back plates (11) are slidably connected to the top inner wall of the movable frame (1); Two chair panels (12) are rotatably connected to the movable frame (1) and are located below the corresponding back panels (11); The unfolding structure comprises a push rod (8), a U-shaped connector (9) and a storage mechanism; the push rod (8) slides through the bottom of the storage chamber (2), the top end of the push rod is fixed to the bottom of the lifting plate (3), and the bottom end is fixed with a U-shaped connector (9); the storage mechanism is used to store and remove the installation plate (35); When the screw rod (5) drives the lifting plate (3) to move upward, the U-shaped connector (9) is driven to move by the push rod (8), so that the back plate (11) moves outward and the chair plate (12) is unfolded to a horizontal state through the second connecting rod (13), forming a double seat to reduce space occupation.

3. The pulse therapy device according to claim 2, characterized in that The expanded structure further comprises: Two first connecting rods (10) are rotatably connected in the U-shaped connector (9), and both ends are rotatably connected to the back plate (11); Two second connecting rods (13) are rotatably connected to the outer side of the back plate (11) and are rotatably connected to the top of the seat plate (12); The supporting structure is arranged at the bottom of the chair plate (12), and includes a rotating shaft (15), a supporting leg (16) and a brake assembly; the rotating shaft (15) is rotatably arranged in the yield groove (14) of the chair plate (12), and the supporting leg (16) is fixedly sleeved on the outer wall of the rotating shaft (15); the brake assembly includes a sliding rod (18), a latch (20) and a load-bearing block (19), the sliding rod (18) slides through the supporting leg (16) and is fixed to the latch (20), and the load-bearing block (19) is arranged at the bottom end of the sliding rod (18); when the chair plate (12) is unfolded to a horizontal position, the load-bearing block (19) is supported by the ground and retracted into the storage groove (17), driving the latch (20) to engage with the first gear (21) to lock the supporting leg (16).

4. The pulse therapy device according to claim 3, characterized in that The storage mechanism comprises: Two receiving semicircular grooves (22) are provided on both sides of the movable frame (1); A driving rod (23) is rotatably connected to the movable frame (1), and both ends extend to receive the semicircular groove (22); A placement plate (24) is fixedly sleeved on the outer wall of the driving rod (23) and connected to the receiving semicircular groove (22) via a torsion spring (25); A first rack (27) is longitudinally slidably connected to the movable frame (1) and meshes with a second gear (28) on the driving rod (23); The trapezoidal block (26) is fixed to the top of the back plate (11) and is used to push the first rack (27) to move upward to drive the placement plate (24) to rotate, so that the installation plate (35) is rotated out of the receiving semicircular groove (22).

5. The pulse therapy device according to claim 4, characterized in that A plurality of U-shaped frames (29) are fixed on one side of the placement plate (24), and the mounting plate (35) is embedded in the U-shaped frame (29).

6. The pulse therapy device according to claim 5, characterized in that A cover plate (7) is provided on the top of the movable frame (1), and the cover plate (7) is fixed to the top of the pulse therapy instrument body (6) by bolts to close the storage cavity (2).

7. The pulse therapy device according to claim 6, characterized in that The bottom of the mobile frame (1) is provided with a plurality of universal wheels (30), and a cable channel is provided inside the mobile frame (1) for providing a routing channel for the line between the electrode sheet (31) and the pulse therapy device body (6).

8. The pulse therapy device according to claim 7, characterized in that Also included is a massage assembly, comprising: An electric push rod (42) is fixed to the inner wall of the top of the movable frame (1); A cylinder (43) is fixed to the bottom end of the output shaft of the electric push rod (42), and two sleeves (44) are slidably connected therein; a sleeve rod (45) slidably connected to the end of the sleeve (44) and extending into the back plate (11); A second rack (41) is fixed to the end of the sleeve rod (45) and meshes with the third gear (38) in the rotating chamber (36); A massage wheel (39) is fixed to the outer wall of the rotating rod (37), and a massage hemisphere (40) is provided on the outer wall; The electric push rod (42) drives the cylinder (43) to move up and down, and drives the second rack (41) to move up and down through the sleeve (44) and the sleeve rod (45), so that the third gear (38) drives the massage wheel (39) to rotate back and forth to massage the patient's back.

9. The pulse therapy device according to claim 8, characterized in that A first gear (21) is fixedly sleeved on the outer wall of the rotating shaft (15) of the supporting leg (16), and the latching teeth (20) are engaged with the first gear (21) to limit the rotation of the rotating shaft (15).

10. A method for using a pulse treatment device for treating gout, applied to the pulse treatment device for treating gout according to claim 9, characterized in that: The following steps are involved: S1. Positioning the device and deploying the therapeutic device: moving the frame (1) to the treatment position, starting the motor to drive the screw (5) to rotate, driving the lifting plate (3) to move upward so that the pulse therapeutic device body (6) extends from the storage chamber (2); S2, the chair is unfolded in linkage: when the lifting plate (3) moves upward, the U-shaped connector (9) is driven to move synchronously by the push rod (8), and the U-shaped connector (9) pushes the back plate (11) to move outward through the first connecting rod (10), and at the same time drives the chair plate (12) to rotate to a horizontal state through the second connecting rod (13), so that the back plate (11) and the chair plate (12) form a treatment chair; S3. Self-locking stability of the support legs: When the chair plate (12) is unfolded, the support legs (16) remain vertical under the action of gravity; when the chair plate (12) is horizontal, the bottom end of the support legs (16) contacts the ground, and the load-bearing block (19) is retracted into the storage groove (17) by the reaction force of the ground, driving the latch (20) to engage and lock with the first gear (21), thereby achieving self-locking fixation of the support legs (16); S4. Synchronous expansion of the electrode assembly: When the back plate (11) moves outward, the inclined surface of the trapezoidal block (26) on its top pushes the first rack (27) to move upward, and the first rack (27) drives the second gear (28) to drive the driving rod (23) to rotate, so that the mounting plate (35) and the electrode sheet (31) on the placement plate (24) are rotated out of the receiving semicircular groove (22) to both sides of the patient; S5, electrode positioning and pulse treatment: connect the binding belt (32) to the electrode sheet (31) and fit it to the mounting plate (35), select the corresponding mounting plate (35) and apply it to the affected area according to the location of the lesion; wrap the binding belt (32) around the limb, fix it with the first Velcro (33) and the second Velcro (34), start the pulse treatment device body (6) and set the treatment parameters; S6, back massage control: start the electric push rod (42) to drive the cylinder (43) to reciprocate, and drive the second rack (41) through the sleeve (44) and the sleeve rod (45). The second rack (41) engages with the third gear (38) to drive the rotating rod (37) and the massage wheel (39) to rotate, and the patient's back is automatically massaged through the massage hemisphere (40).