Acupoint thread-embedding device for weight loss

By designing an installation ring, a wire carrier, and a wire embedder, combined with damping components and a magnetic feeding and moving component, the problem of existing hole-position wire embedding devices being unable to feed wires of different sizes has been solved. This enables automatic detection and positioning of the embedded wires, improving operational efficiency and accuracy.

CN121015359BActive Publication Date: 2026-01-27ANNING HOSPITAL OF TRADITIONAL CHINESE MEDICINE
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Patent Information

Application Number
CN202511544504.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-01-27
Estimated Expiration
2045-10-28

AI Technical Summary

Technical Problem

Existing acupuncture point embedding devices cannot feed different sizes of embedding threads according to needs, resulting in inconvenience in operation.

Method used

A device for acupoint embedding for weight loss has been designed, including a mounting ring, a slidingly connected embedding carrier and an embedding inserter. The device achieves automatic selection and positioning of embedding threads of different sizes through damping components, limiting components and sliding direction limiting components. Combined with a magnetic embedding thread feeding and moving component and an optical detection component, it ensures accurate thread feeding and insertion.

Benefits of technology

It enables automatic detection and positioning of multiple embedded threads, avoids missing material feeding, improves operational efficiency, reduces labor intensity, and allows selection of different sizes of embedded threads for acupuncture point insertion according to needs.

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Abstract

The application discloses a weight-losing acupoint catgut implantation device, and relates to the field of acupoint catgut implantation devices, which comprises a mounting ring, a plurality of catgut carriers slidably connected to the inner ring of the mounting ring, and a catgut implanting device slidably connected to the outer ring of the mounting ring, wherein the catgut carriers and the catgut implanting device are distributed in a cross shape. The catgut implanting device can carry multiple catguts at one time, and catguts of different sizes can be placed in different catgut carriers. When the catgut is implanted, the process is divided into two steps, i.e. feeding and acupoint implantation. After the catgut is fed, the catgut can be automatically detected, so that the possibility of catgut missing feeding can be effectively avoided.
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Description

Technical Field

[0001] This invention mainly relates to the technical field of acupoint embedding devices, specifically an acupoint embedding device for weight loss. Background Technology

[0002] Acupoint embedding for weight loss is a traditional Chinese medicine therapy that combines traditional Chinese medicine theory with modern medical technology. It involves implanting absorbable threads into specific acupoints on the body. The threads gradually soften, decompose, liquefy, and are absorbed within the body, providing continuous stimulation to the acupoints and thus achieving a weight loss effect. The acupoint embedding device can accurately implant absorbable threads into specific acupoints to achieve continuous stimulation.

[0003] The existing acupoint embedding device includes a housing, a suture reservoir, a needle, and a pusher. The housing has protrusions at both ends, each with a coaxial hole. The needle is detachably connected to one protrusion, and the pusher is located in the hole of the other protrusion. The suture reservoir is located inside the housing and has concentric axial feeding holes of equal radius evenly distributed radially. The reservoir is mounted on a shaft, which is installed in a mounting hole in the housing. The distance from the mounting hole in the housing to the axis of the protrusion is the same as the distance from the centerline of the reservoir to the feeding hole. This product can hold multiple catgut sutures at once. Each time an acupoint embedding procedure is performed, simply rotating the reservoir is sufficient to change the catgut, improving the doctor's operational efficiency, reducing their workload, and providing convenient and reliable operation.

[0004] Existing products only require rotating the cable storage device to replace the catgut, but it is inconvenient to feed different sizes of embedded cable according to needs. Summary of the Invention

[0005] Based on this, the purpose of the present invention is to provide an acupoint embedding device for weight loss, so as to solve the technical problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a weight loss acupoint embedding device, comprising an installation ring, a plurality of embedding carriers slidably connected to the inner ring of the installation ring, and an embedding inserter slidably connected to the outer ring of the installation ring, wherein the embedding carriers and the embedding inserter are arranged in a cross shape.

[0007] The buried wire carrier includes two symmetrically arranged fastening plates, a plurality of bearing through holes linearly arranged between the two fastening plates, a first damping component disposed on the outer wall of the fastening plate and corresponding to the position of the bearing through holes, a first buried wire limiting component disposed in the bearing through holes, and a plurality of sliding direction limiting components disposed in the inner ring of the mounting ring. One end of the two fastening plates is hinged to each other and the other end is fastened to each other.

[0008] The wire embedding device includes a C-shaped frame slidably connected to the outer wall of the mounting ring, multiple communicating holes passing through the mounting ring and corresponding to the position of the wire embedding carrier, a second damping component located in the inner ring of the C-shaped frame and corresponding to the position of the communicating holes, a wire embedding injection device located at the top of the C-shaped frame, and an acupoint insertion device located at the bottom of the C-shaped frame.

[0009] Preferably, the acupoint insertion device includes an insertion tube inserted into the bottom of the C-shaped frame, a wire embedding optical detection component disposed at the bottom of the C-shaped frame and sleeved on the outside of the insertion tube, and a disinfection component disposed at the bottom of the C-shaped frame and sleeved on the outer wall of the insertion tube. In this preferred embodiment, the acupoint insertion device facilitates the insertion of wires into acupoints.

[0010] Preferably, the embedded optical inspection component includes two elliptical holes that pass through the insertion tube and are symmetrically distributed, an outer cover tube located at the bottom of the C-shaped frame and sleeved outside the insertion tube, and a light emitter and a light receiver symmetrically arranged inside the outer cover tube.

[0011] It also includes a first wire embedding limiting component disposed on the inner wall of the insertion tube and located below the elliptical hole. In this preferred embodiment, the wire embedding optical detection component facilitates the detection of whether the wire has been fed to the set position.

[0012] Preferably, the thread embedding device includes a magnetic thread feeding and moving component located at the top of the C-shaped frame, and a thread embedding acupoint pushing rod passing through the magnetic thread feeding and moving component. In this preferred embodiment, the thread embedding device facilitates the insertion of the thread into the patient's acupoint.

[0013] Preferably, the magnetically attached wire feeding and moving component includes a guide rail frame mounted on the C-shaped frame, a lifting plate slidably connected to the guide rail frame, a first electromagnetic ring passing through the lifting plate, a first spring with its bottom connected to the top of the C-shaped frame and its top connected to the bottom of the lifting plate, and a pressure sensor and a second electromagnetic ring mounted on the C-shaped frame.

[0014] The wire insertion rod sequentially passes through the first electromagnetic ring, the second electromagnetic ring, and the first spring. An iron segment is provided on the wire insertion rod, and a second spring is fitted onto the outer wall of the rod, located above the lifting plate. The iron segment corresponds to the position of the first electromagnetic ring. In this preferred embodiment, the wire feeding and positioning are achieved through a magnetic wire feeding and moving component.

[0015] Preferably, the first damping component includes two hemispherical protrusions symmetrically disposed at the top and bottom of the fastening plate, and a plurality of semi-circular grooves disposed in the inner ring of the mounting ring;

[0016] The second damping component has the same structure as the first damping component. In this preferred embodiment, the first damping component facilitates the user's movement of the buried wire carrier to sense each feeding position, and the second damping component facilitates the user's movement of the buried wire inserter to sense each insertion position.

[0017] Preferably, the first embedded wire limiting component includes two arc-shaped protrusions symmetrically disposed within the bearing through hole;

[0018] The first wire embedding limiting component has the same structure as the first wire embedding limiting member. In this preferred embodiment, the first wire embedding limiting member facilitates the limiting of the wire embedded in the wire embedding device, and the first wire embedding limiting component facilitates the limiting of the wire embedded at the wire embedding optical inspection member.

[0019] Preferably, the sliding direction limiting component includes toothed walls symmetrically arranged at the top and bottom of the fastening plate, two mounting grooves symmetrically arranged at the top and bottom of the inner wall of the mounting ring, a ratchet frame hinged at one end to the inner wall of the mounting groove, and a third spring connected at one end to the ratchet frame and at the other end to the inner wall of the mounting groove. In this preferred embodiment, the sliding direction limiting component facilitates the limiting of the movement direction of the buried wire carrier, preventing the buried wire carrier from moving erroneously and causing the buried wire to be missed.

[0020] Preferably, the disinfection component includes a fourth spring located at the bottom of the C-shaped frame, a horizontal plate connected to the bottom end of the fourth spring at the top, and a disinfection cotton ring that passes through and engages with the horizontal plate. In this preferred embodiment, the disinfection component facilitates the disinfection of the insertion tube.

[0021] Preferably, the device also includes a lamp tube located at the top of the C-shaped frame. The lamp tube, light emitter, light receiver, first electromagnetic ring, second electromagnetic ring, and pressure sensor are all electrically connected to the controller. In this preferred embodiment, the lamp tube facilitates feedback on the wire feeding results.

[0022] In summary, the present invention has the following main beneficial effects:

[0023] The wire embedding device of this invention can carry multiple wires at one time, and wires of different sizes can be placed in different wire embedding carriers. The wire embedding is divided into two steps: feeding and embedding in the hole. After the wire is fed, the wire can be automatically detected, which can effectively avoid the possibility of wires being missed.

[0024] The wire embedding device of this invention can automatically select and embed wires of appropriate size by moving the wire embedding carrier and the wire embedding device. The wire embedding device has a first damping component to facilitate the user to sense each feeding position when moving the wire embedding carrier, and a second damping component to facilitate the user to sense each embedding position when moving the wire embedding device. The first wire embedding limiting component can limit the embedding of the wire in the wire embedding device, and the sliding direction limiting component can limit the movement direction of the wire embedding carrier to prevent the wire embedding carrier from moving incorrectly and causing the wire to be missed.

[0025] The acupoints for embedding threads are achieved through the embedding thread embedding device. The acupoint insertion device in the embedding thread embedding device facilitates the insertion of the embedding thread into the acupoints. The embedding thread injection device facilitates the movement of the embedding thread into the patient's acupoints. The magnetic embedding thread feeding and moving component realizes the feeding and positioning of the embedding thread. The first embedding thread limiting component facilitates the limiting of the embedding thread at the embedding thread optical detection component. The embedding thread optical detection component facilitates the detection of whether the embedding thread has been fed to the set position. The lamp tube facilitates the feedback of the embedding thread feeding result.

[0026] The disinfection component facilitates the disinfection of the insertion tube. Attached Figure Description

[0027] Figure 1 This is an isometric view of the overall structure of the acupoint embedding device of the present invention;

[0028] Figure 2 This is an exploded view of the overall structure of the acupoint embedding device of the present invention;

[0029] Figure 3 This is an isometric view of the embedded wire carrier structure of the present invention;

[0030] Figure 4 This is an exploded view of the embedded wire embedder structure of the present invention;

[0031] Figure 5 This is an isometric view of the disinfection component structure of the present invention;

[0032] Figure 6 This is an exploded view of the buried wire injection device of the present invention;

[0033] Figure 7 This is a cross-sectional view of the overall structure of the acupoint embedding device of the present invention;

[0034] Figure 8 This is a cross-sectional view of the embedded wire embedder structure of the present invention;

[0035] Figure 9 This is an enlarged view of the structure at point A of the present invention;

[0036] Figure 10 This is an enlarged view of the structure at point B of the present invention.

[0037] Figure Descriptions: 10. Mounting ring; 20. Wire embedding carrier; 21. Fastening plate; 22. Bearing through hole; 23. First damping component; 231. Hemispherical protrusion; 232. Semicircular groove; 24. First wire embedding limiting component; 241. Arc protrusion; 25. Sliding direction limiting component; 251. Mounting groove; 252. Ratchet frame; 253. Third spring; 254. Toothed wall; 30. Wire embedding device; 31. C-shaped frame; 311. Connecting hole; 32. Second damping component; 33. Lamp tube; 40. Wire embedding injection device; 41. Magnetic wire feeding and moving mechanism. Components; 411, guide rail frame; 412, lifting plate; 413, first electromagnetic ring; 414, first spring; 415, pressure sensor; 416, second electromagnetic ring; 42, thread embedding acupoint push rod; 421, iron segment; 422, second spring; 50, acupoint insertion device; 51, insertion tube; 52, thread embedding optical detection component; 521, elliptical hole; 522, outer cover tube; 523, light emitter; 524, light receiver; 53, disinfection component; 531, fourth spring; 532, horizontal plate; 533, disinfection cotton ring; 54, first thread embedding limiting assembly. Detailed Implementation

[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0039] The embodiments of the present invention will now be described.

[0040] Please refer to the appendix in this embodiment. Figure 1 , 2As shown in Figures 3, 4, 7, 8, and 10, in a preferred embodiment of the present invention, an acupoint embedding device for weight loss includes a mounting ring 10, a plurality of embedding carriers 20 slidably connected to the inner ring of the mounting ring 10, and an embedding inserter 30 slidably connected to the outer ring of the mounting ring 10. The embedding carriers 20 and the embedding inserters 30 are arranged in a cross shape. The embedding carriers 20 include two symmetrically arranged fastening plates 21, a plurality of bearing through holes 22 linearly arranged between the two fastening plates 21, a first damping component 23 disposed on the outer wall of the fastening plates 21 and corresponding to the position of the bearing through holes 22, a first embedding limiting component 24 disposed in the bearing through holes 22, and a plurality of sliding direction limiting components 25 disposed on the inner ring of the mounting ring 10. One end of the two fastening plates 21 is hinged to each other, and the other end is fastened to each other. The first damping component 23 includes two hemispherical protrusions 231 symmetrically arranged at the top and bottom of the fastening plate 21, and a plurality of semi-circular grooves 232 arranged in the inner ring of the mounting ring 10; the second damping component 32 has the same structure as the first damping component 23; the first embedded wire limiting component 24 includes two arcuate protrusions 241 symmetrically arranged in the bearing through hole 22; the first embedded wire limiting component 54 has the same structure as the first embedded wire limiting component 24; the sliding direction limiting component 25 includes toothed walls 254 symmetrically arranged at the top and bottom of the fastening plate 21, two mounting grooves 251 symmetrically arranged at the top and bottom of the inner wall of the mounting ring 10, a ratchet frame 252 hinged at one end to the inner wall of the mounting groove 251, and a third spring 253 connected at one end to the ratchet frame 252 and at the other end to the inner wall of the mounting groove 251.

[0041] It should be noted that, in this embodiment, before using the acupoint embedding device, the embedding thread needs to be placed in the embedding thread carrier 20. Different sizes of embedding threads can be placed in different embedding thread carriers 20. When placing the embedding thread, separate the two fastening plates 21 from the fastening ends of the two fastening plates 21, place the embedding thread at the bearing through hole 22 of the fastening plate 21, and fasten the two fastening plates 21 after placement to complete the placement of the embedding thread. Slide multiple embedding thread carriers 20 into the slides in the mounting ring 10 to complete the preparatory work.

[0042] When selecting the buried wire, the C-shaped frame 31 can be moved until the buried wire injection device 40 moves to the upper part of one of the buried wire carriers 20. When the damping sensation of the second damping component 32 is felt, it indicates that the device has moved into place. At the same time, one of the buried wire carriers 20 is moved until the bearing through hole 22 carrying the buried wire corresponds to the position of the buried wire injection device 40. When the damping sensation of the first damping component 23 is felt, it indicates that the device has moved into place, thus completing the selection of the buried wire.

[0043] When the thread is placed, the thread is placed into the insertion tube 51 through the thread injection device 40. The thread detection component 52 detects the thread. After the thread is detected, the lamp tube 33 lights up. The operator can insert the insertion tube 51 into the acupoint where the thread is to be placed and move the thread into the acupoint through the thread injection device 40. The thread is then removed from the insertion tube 51 to complete the thread placement work.

[0044] Furthermore, when the first damping component 23 is in use, the hemispherical protrusion 231 engages with the semi-circular groove 232 to produce a damping effect, and the principle of the second damping component 32 is the same as that of the first damping component 23.

[0045] Furthermore, when the first buried wire limiting component 24 is in use, the arc protrusion 241 limits the buried wire;

[0046] Furthermore, when the sliding direction limiting component 25 is working, the third spring 253 provides a supporting force to the ratchet frame 252 so that the ratchet frame 252 abuts against the toothed wall 254. When the buried wire carrier 20 slides in one direction, it pushes the ratchet frame 252 upward. When the buried wire carrier 20 slides in another direction, the ratchet frame 252 can limit the buried wire carrier 20 through the toothed wall 254.

[0047] Please refer to the appendix carefully. Figure 4 , 6 As shown, in another preferred embodiment of the present invention, the wire embedding device 30 includes a C-shaped frame 31 slidably connected to the outer wall of the mounting ring 10, a plurality of communicating holes 311 passing through the mounting ring 10 and corresponding to the position of the wire embedding carrier 20, a second damping component 32 disposed in the inner ring of the C-shaped frame 31 and corresponding to the position of the communicating holes 311, a wire embedding injection device 40 disposed at the top of the C-shaped frame 31, and an acupoint insertion device 50 disposed at the bottom of the C-shaped frame 31. The wire embedding injection device 40 includes a magnetic wire feeding and moving component 41 disposed at the top of the C-shaped frame 31, and a wire embedding acupoint pushing rod 42 penetrating the magnetic wire feeding and moving component 41. The magnetic wire feeding and moving component 41 includes a... The guide rail 411 on the C-shaped frame 31 is slidably connected to the lifting plate 412 of the guide rail 411. A first electromagnetic ring 413 passes through the lifting plate 412. A first spring 414 is connected to the bottom of the C-shaped frame 31 and the top of the lifting plate 412. A pressure sensor 415 and a second electromagnetic ring 416 are provided on the C-shaped frame 31. The thread embedding rod 42 sequentially passes through the first electromagnetic ring 413, the second electromagnetic ring 416 and the first spring 414. The thread embedding rod 42 is provided with an iron segment 421. A second spring 422 is sleeved on the outer wall of the thread embedding rod 42 and located on the upper part of the lifting plate 412. The iron segment 421 corresponds to the position of the first electromagnetic ring 413.

[0048] It should be noted that, in this embodiment, a power storage cavity can be provided on the outer wall of the C-shaped frame 31 to place the battery and supply power to it. When the buried wire injection device 40 is working, the user pulls down the lifting plate 412 until the lifting plate 412 contacts the pressure sensor 415. The controller receives the pressure data from the pressure sensor 415 and energizes the second electromagnetic ring 416 when it receives the pressure data. The second electromagnetic ring 416 magnetically attracts the bottom of the lifting plate 412.

[0049] During the downward movement of the lifting plate 412, the first electromagnetic ring 413 magnetic attraction section 421 and the wire insertion rod 42 descend with the lifting plate 412 to push the wire in the connecting hole 311 into the insertion tube 51 to complete the feeding work.

[0050] Under the premise that the controller receives the pressure data measured by the pressure sensor 415, the controller receives the information measured by the embedded thread photodetector 52, and triggers the lamp tube 33 to light up green when the light receiver 524 cannot receive the light source information. At the same time, the power supply of the first electromagnetic ring 413 is canceled. After the first electromagnetic ring 413 cancels the magnetic attraction, the staff can press down the embedded thread acupoint push rod 42 again. The embedded thread acupoint push rod 42 moves the embedded thread into the patient's acupoint, and the second spring 422 drives the embedded thread acupoint push rod 42 to reset.

[0051] Under the premise that the controller receives the pressure data measured by the pressure sensor 415, the controller receives the information measured by the buried wire optical detection component 52, and triggers the lamp tube 33 to light up red when the light receiver 524 receives the light source information. The first electromagnetic ring 413 continues to supply power, and cancels the power supply of the second electromagnetic ring 416 after a unit time. The first spring 414 drives the lifting plate 412 to reset.

[0052] Please refer to the appendix carefully. Figure 4 , 5As shown in Figures 7 and 9, in another preferred embodiment of the present invention, the acupoint insertion device 50 includes an insertion tube 51 inserted into the bottom of the C-shaped frame 31, a wire-embedded optical detection component 52 disposed at the bottom of the C-shaped frame 31 and sleeved outside the insertion tube 51, and a disinfection component 53 disposed at the bottom of the C-shaped frame 31 and sleeved outside the insertion tube 51. The wire-embedded optical detection component 52 includes two symmetrically distributed elliptical holes 521 passing through the insertion tube 51, an outer cover tube 522 disposed at the bottom of the C-shaped frame 31 and sleeved outside the insertion tube 51, and light emitters 523 symmetrically disposed within the outer cover tube 522. The device includes a light receiver 524; it also includes a first embedded wire limiting assembly 54 disposed on the inner wall of the insertion tube 51 and located below the elliptical hole 521; the disinfection component 53 includes a fourth spring 531 disposed at the bottom of the C-shaped frame 31, a horizontal plate 532 connected to the bottom end of the fourth spring 531 at the top, and a disinfection cotton ring 533 passing through the horizontal plate 532 and engaging with the horizontal plate 532; it also includes a lamp tube 33 disposed at the top of the C-shaped frame 31; the lamp tube 33, the light emitter 523, the light receiver 524, the first electromagnetic ring 413, the second electromagnetic ring 416, and the pressure sensor 415 are all electrically connected to the controller.

[0053] It should be noted that in this embodiment, when the acupoint insertion device 50 is working, the embedded wire is fed into the insertion tube 51 and then limited by the first embedded wire limiting component 54. Due to the obstruction of the embedded wire, the light receiver 524 cannot receive the light emitted by the light emitter 523.

[0054] Furthermore, the limiting method of the first buried wire limiting component 54 is the same as that of the first buried wire limiting component 24;

[0055] Furthermore, a disinfectant-containing cotton ring 533 can be attached to a horizontal plate 532, and the disinfectant cotton ring 533 can be fitted onto the insertion tube 51. Moving the disinfectant cotton ring 533 can disinfect the insertion tube 51. The fourth spring 531 can drive the horizontal plate 532 to move upward to prevent the horizontal plate 532 from affecting the wire embedding work.

[0056] The working principle of this invention is as follows:

[0057] Before using the acupoint embedding device, the embedding thread needs to be placed in the embedding thread carrier 20. Different sizes of embedding threads can be placed in different embedding thread carriers 20. When placing the embedding thread, separate the two fastening plates 21 from the fastening ends of the two fastening plates 21, and place the embedding thread at the bearing through hole 22 of the fastening plate 21. After placement, fasten the two fastening plates 21 to complete the placement of the embedding thread. Slide multiple embedding thread carriers 20 into the slides in the mounting ring 10 to complete the preparation work.

[0058] When selecting the buried wire, the C-shaped frame 31 can be moved until the buried wire injection device 40 moves to the upper part of one of the buried wire carriers 20. When the damping sensation of the second damping component 32 is felt, it indicates that the device has moved into place. At the same time, one of the buried wire carriers 20 is moved until the bearing through hole 22 carrying the buried wire corresponds to the position of the buried wire injection device 40. When the damping sensation of the first damping component 23 is felt, it indicates that the device has moved into place, thus completing the selection of the buried wire.

[0059] When the thread is placed, the thread is placed into the insertion tube 51 through the thread injection device 40. The thread detection component 52 detects the thread. After the thread is detected, the lamp tube 33 lights up. The operator can insert the insertion tube 51 into the acupoint where the thread is to be placed and move the thread into the acupoint through the thread injection device 40. The thread is then removed from the insertion tube 51 to complete the thread placement work.

[0060] When the first damping component 23 is in use, the hemispherical protrusion 231 is inserted into the semi-circular groove 232 to produce a damping effect. The principle of the second damping component 32 is the same as that of the first damping component 23.

[0061] When the first wire embedding limiting component 24 is in use, the arc protrusion 241 limits the embedding wire;

[0062] When the sliding direction limiting component 25 is working, the third spring 253 provides a supporting force to the ratchet frame 252 so that the ratchet frame 252 abuts against the toothed wall 254. When the buried wire carrier 20 slides in one direction, it pushes the ratchet frame 252 to move upward. When the buried wire carrier 20 slides in another direction, the ratchet frame 252 can limit the buried wire carrier 20 through the toothed wall 254.

[0063] A power storage cavity can be provided on the outer wall of the C-shaped frame 31 to place the battery and supply power to it. When the buried wire injection device 40 is working, the user pulls down the lifting plate 412 until the lifting plate 412 contacts the pressure sensor 415. The controller receives the pressure data from the pressure sensor 415 and energizes the second electromagnetic ring 416 when it receives the pressure data. The second electromagnetic ring 416 magnetically attracts the bottom of the lifting plate 412.

[0064] During the downward movement of the lifting plate 412, the first electromagnetic ring 413 magnetic attraction section 421 and the wire insertion rod 42 descend with the lifting plate 412 to push the wire in the connecting hole 311 into the insertion tube 51 to complete the feeding work.

[0065] Under the premise that the controller receives the pressure data measured by the pressure sensor 415, the controller receives the information measured by the embedded thread photodetector 52, and triggers the lamp tube 33 to light up green when the light receiver 524 cannot receive the light source information. At the same time, the power supply of the first electromagnetic ring 413 is canceled. After the first electromagnetic ring 413 cancels the magnetic attraction, the staff can press down the embedded thread acupoint push rod 42 again. The embedded thread acupoint push rod 42 moves the embedded thread into the patient's acupoint, and the second spring 422 drives the embedded thread acupoint push rod 42 to reset.

[0066] Under the premise that the controller receives the pressure data measured by the pressure sensor 415, the controller receives the information measured by the buried wire optical detection component 52, and triggers the lamp tube 33 to light up red when the light receiver 524 receives the light source information. The first electromagnetic ring 413 continues to supply power, and cancels the power supply of the second electromagnetic ring 416 after a unit time. The first spring 414 drives the lifting plate 412 to reset.

[0067] When the acupoint insertion device 50 is working, the embedded wire is fed into the insertion tube 51 and then limited by the first embedded wire limiting component 54. Due to the obstruction of the embedded wire, the light receiver 524 cannot receive the light emitted by the light transmitter 523.

[0068] The limiting method of the first buried wire limiting component 54 is the same as that of the first buried wire limiting component 24;

[0069] A disinfectant-containing cotton ring 533 can be attached to a horizontal plate 532. The disinfectant cotton ring 533 can be placed on the insertion tube 51. Moving the disinfectant cotton ring 533 can disinfect the insertion tube 51. The fourth spring 531 can drive the horizontal plate 532 to move upward to prevent the horizontal plate 532 from affecting the wire embedding work.

[0070] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the invention and are not intended to limit it. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the invention, but such modifications, substitutions, and variations are protected by patent law as long as they are within the scope of the claims of the present invention.

Claims

1. A weight loss acupoint embedding device, comprising a mounting ring (10), a plurality of embedding carriers (20) slidably connected to the inner ring of the mounting ring (10), and an embedding inserter (30) slidably connected to the outer ring of the mounting ring (10), characterized in that, The buried wire carrier (20) and the buried wire inserter (30) are arranged in a cross shape, and different sizes of buried wires can be placed in different buried wire carriers (20); The buried wire carrier (20) includes two symmetrically arranged fastening plates (21), a plurality of bearing through holes (22) linearly arranged between the two fastening plates (21), a first damping component (23) disposed on the outer wall of the fastening plate (21) and corresponding to the position of the bearing through hole (22), a first buried wire limiting component (24) disposed in the bearing through hole (22), and a plurality of sliding direction limiting components (25) disposed in the inner ring of the mounting ring (10). One end of the two fastening plates (21) is hinged to each other and the other end is fastened to each other. The embedding device (30) includes a C-shaped frame (31) slidably connected to the outer wall of the mounting ring (10), a plurality of connecting holes (311) passing through the mounting ring (10) and corresponding to the position of the embedding carrier (20), a second damping component (32) located in the inner ring of the C-shaped frame (31) and corresponding to the position of the connecting holes (311), an embedding injection device (40) located at the top of the C-shaped frame (31), and an acupuncture point insertion device (50) located at the bottom of the C-shaped frame (31).

2. The acupoint embedding device for weight loss according to claim 1, characterized in that, The acupoint insertion device (50) includes an insertion tube (51) inserted into the bottom of the C-shaped frame (31), an embedded wire optical inspection component (52) located at the bottom of the C-shaped frame (31) and sleeved on the outside of the insertion tube (51), and a disinfection component (53) located at the bottom of the C-shaped frame (31) and sleeved on the outer wall of the insertion tube (51).

3. The acupoint embedding device for weight loss according to claim 2, characterized in that, The embedded optical inspection component (52) includes two elliptical holes (521) that pass through the insertion tube (51) and are symmetrically distributed, an outer cover tube (522) that is located at the bottom of the C-shaped frame (31) and sleeved outside the insertion tube (51), and a light emitter (523) and a light receiver (524) that are symmetrically arranged inside the outer cover tube (522). The light emitted by the light emitter (523) can be received by the light receiver (524) through the elliptical holes (521). It also includes a first embedded wire limiting component (54) disposed on the inner wall of the insertion tube (51) and located below the elliptical hole (521). After the embedded wire is fed into the insertion tube (51), it is limited by the first embedded wire limiting component (54). Due to the obstruction of the embedded wire, the light receiver (524) cannot receive the light emitted by the light emitter (523). The optical transmitter (523) and the optical receiver (524) are both electrically connected to the controller.

4. The acupoint embedding device for weight loss according to claim 3, characterized in that, The wire embedding device (40) includes a magnetic wire feeding and moving part (41) located on the top of the C-shaped frame (31), and a wire embedding acupoint push rod (42) passing through the magnetic wire feeding and moving part (41).

5. The acupoint embedding device for weight loss according to claim 4, characterized in that, The magnetically attached wire feeding moving component (41) includes a guide rail frame (411) mounted on the C-shaped frame (31), a lifting plate (412) slidably connected to the guide rail frame (411), a first electromagnetic ring (413) passing through the lifting plate (412), a first spring (414) with its bottom connected to the top of the C-shaped frame (31) and its top connected to the bottom of the lifting plate (412), and a pressure sensor (415) and a second electromagnetic ring (416) mounted on the C-shaped frame (31). The thread embedding acupoint push rod (42) sequentially passes through the first electromagnetic ring (413), the second electromagnetic ring (416), and the first spring (414). The thread embedding acupoint push rod (42) is provided with an iron segment (421). The outer wall of the thread embedding acupoint push rod (42) and the upper part of the lifting plate (412) are fitted with a second spring (422). The iron segment (421) corresponds to the position of the first electromagnetic ring (413). The first electromagnetic ring (413), the second electromagnetic ring (416), and the pressure sensor (415) are all electrically connected to the controller.

6. The acupoint embedding device for weight loss according to claim 1, characterized in that, The first damping component (23) includes two hemispherical protrusions (231) symmetrically disposed on the top and bottom of the fastening plate (21), and a plurality of semi-circular grooves (232) disposed on the inner ring of the mounting ring (10). The second damping component (32) has the same structure as the first damping component (23).

7. The acupoint embedding device for weight loss according to claim 3, characterized in that, The first embedded wire limiting component (24) includes two arc protrusions (241) symmetrically disposed in the bearing through hole (22); The first buried wire limiting component (54) has the same structure as the first buried wire limiting component (24).

8. The acupoint embedding device for weight loss according to claim 1, characterized in that, The sliding direction limiting component (25) includes toothed walls (254) symmetrically arranged on the top and bottom of the fastening plate (21), two mounting grooves (251) symmetrically arranged on the top and bottom of the inner wall of the mounting ring (10), a ratchet frame (252) with one end hinged to the inner wall of the mounting groove (251), and a third spring (253) with one end connected to the ratchet frame (252) and the other end connected to the inner wall of the mounting groove (251).

9. A weight loss acupoint embedding device according to claim 2, characterized in that, The disinfection component (53) includes a fourth spring (531) located at the bottom of the C-shaped frame (31), a horizontal plate (532) connected to the bottom of the fourth spring (531) at the top, and a disinfection cotton ring (533) that passes through the horizontal plate (532) and is engaged with the horizontal plate (532).

10. A weight-loss acupoint embedding device according to claim 5, characterized in that, It also includes a lamp tube (33) located on top of the C-shaped frame (31), the lamp tube (33) being electrically connected to the controller; When the light receiver (524) fails to receive light source information, the lamp tube (33) is triggered to light up with a green light.

Citation Information

Patent Citations

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