A gastrointestinal motility-assisted treatment device
By using air pressure regulation and hydraulic push rod systems to stabilize the electrode pads, combined with robotic arms and pneumatic components, the electrode pads of the gastrointestinal motility-assisted treatment device are stably attached and acupoints are precisely positioned. This solves the problems of electrode pad displacement and uneven penetration, improving treatment efficacy and patient comfort.
Patent Information
- Application Number
- CN202510632381.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2045-05-16
AI Technical Summary
Existing gastrointestinal motility-assisted treatment devices suffer from problems such as electrode shifting, edge warping leading to uneven drug penetration, skin allergies, and difficulty in adjusting the treatment position. In particular, when treating multiple patients, timely adjustments are not possible, affecting the effectiveness of the treatment and patient comfort.
Using a pneumatic regulator and hydraulic push rod system, the electrode stimulation pads are fixed by suction cups, and combined with a robotic arm and pneumatic components, the electrode pads are stably attached and the acupoints are accurately positioned. The acupoints are automatically adjusted and positioned using pneumatic components and hydraulic push rods.
It improves the stability of electrode stimulation and the uniformity of drug penetration, reduces the risk of skin allergies, enables real-time adjustment and positioning of acupoint stimulation, and enhances treatment efficacy and patient comfort.
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Figure CN120346448B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of gastrointestinal motility-assisted treatment technology, and more specifically, to a gastrointestinal motility-assisted treatment device. Background Technology
[0002] Multifunctional gastrointestinal therapy combines bioelectricity with acupoint stimulation in traditional Chinese medicine to comprehensively regulate the body's endocrine, nervous, and immune systems, enhance gastrointestinal motility and emptying capacity, promote gastrointestinal secretion, digestion, absorption, and local blood circulation, and improve the body's immunity. This results in effective adjunctive treatment for gastrointestinal diseases such as acute and chronic enteritis, duodenal ulcers, gastrointestinal motility disorders, gastric spasms, constipation, and chronic pseudo-intestinal obstruction.
[0003] Currently, existing gastrointestinal motility-assisted therapy devices have the following shortcomings in use: Firstly, these devices typically combine bioelectricity transmission with traditional Chinese medicine acupoint stimulation. This involves electrode pads, whose working principle is based on electrical stimulation. The electrodes can directly contact the skin with the body's nerves and muscles, transmitting electrical stimulation signals. When these signals are transmitted through the nerves and muscles, they can cause muscle contraction and relaxation, promote blood and lymphatic circulation, and relieve pain. However, the electrodes adhere to the skin using adhesive materials. Due to the dryness and smoothness of the skin and the vibrations during electrical stimulation, the electrodes can shift and warp, resulting in uneven drug penetration and potentially causing skin allergies. Furthermore, repositioning the electrodes after use requires professional guidance, which is difficult to manage when treating multiple patients, leading to patient discomfort and reduced effectiveness.
[0004] Existing gastrointestinal motility-assisted treatment devices have the aforementioned problems. In view of this, we propose a gastrointestinal motility-assisted treatment device. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides a gastrointestinal motility-assisted treatment device, solving the following problems: Firstly, existing gastrointestinal motility-assisted treatment devices typically combine bioelectricity transmission with acupoint stimulation in Traditional Chinese Medicine. This involves electrode pads, whose working principle is based on electrical stimulation. The electrode pads can directly contact the skin with the body's nerves and muscles, transmitting electrical stimulation signals. When these signals are transmitted through the nerves and muscles, they can cause muscle contraction and relaxation, promote blood and lymph circulation, and relieve pain. However, the electrode pads adhere to the skin using adhesive materials. Due to the dryness and smoothness of the skin and the vibration during electrical stimulation, the electrode pads may shift or warp, resulting in uneven drug penetration and potentially causing skin allergies. Furthermore, repositioning the electrode pads after use requires professional guidance, which is difficult to manage when treating multiple patients, leading to patient discomfort and reduced effectiveness.
[0006] The purpose of this invention is to provide a gastrointestinal motility-assisted treatment device to overcome the above-mentioned defects in the prior art.
[0007] The present invention is achieved through the following technical solution.
[0008] This invention discloses a gastrointestinal motility-assisted treatment device, comprising an operating base plate. An air pump is mounted at one end of the operating base plate. Multiple first air tubes are fixedly connected to the outer surface of the operating base plate and the air pump. Adjustment plates are rotatably connected to the four corners of the bottom end of the operating base plate. Limiting ports are formed in the middle of the multiple adjustment plates. Air pressure regulators are slidably mounted on the inner side of each limiting port. Multiple first air tubes are fixedly connected to the air pressure regulators. Hydraulic push rods are fixedly connected to one side of each of the multiple air pressure regulators. Two stabilizing frames are fixedly connected to the outer surface of each hydraulic push rod. Air pressure cylinders are fixedly connected to the bottom ends of each of the two stabilizing frames. A warm flow hood is fixedly connected to the bottom ends of both air pressure cylinders. An adjusting contact assembly is rotatably mounted on the inner side of the warm flow hood. The adjusting contact assembly includes an outer ring cylinder rotatably connected to the inner side of the heating hood, an inner ring cylinder rotatably connected to the inner wall of the outer ring cylinder, a thin plate at the bottom end of the inner ring cylinder, a claw plate slidably mounted at the bottom end of the hydraulic push rod, an electrode mounting assembly inserted through the middle of the claw plate, the electrode mounting assembly including an air rod inserted through the middle of the claw plate, a piston cylinder assembly fixedly connected to the bottom end of the claw plate, a suction cup fixedly connected to the bottom end of the air rod, a folding adjustment assembly inserted through the inner side of the heating hood, an electrode stimulation plate at the bottom end of the suction cup, a telescopic assembly fixedly connected to the bottom end of the air pump, a timer buzzer mounted in the middle of the operating base plate, a pneumatic assembly fixedly connected to the upper end of the heating hood, and two circulation ports opened on one side of the heating hood.
[0009] Preferably, an elastic chuck is fitted onto the outer surface of the suction cup, and a wire is connected to one side of the electrode stimulation pad. The wire works in conjunction with the elastic chuck.
[0010] Preferably, the piston cylinder assembly includes multiple pressure rods fixedly connected to the bottom end of the claw disk, an upper retaining ring fixedly connected to the upper end of the heating shroud, multiple piston cylinders being circumferentially inserted into the inner side of the upper retaining ring, the multiple pressure rods being respectively inserted into the piston cylinders, and the multiple pressure rods passing through the piston cylinders and entering the interior to be fixedly connected to the piston disk.
[0011] Preferably, the outer surface of the upper retaining ring is vertically and equidistantly equipped with multiple bent tubes, each of which is inserted into the upper wall of the piston cylinder and is connected to the outer ring cylinder.
[0012] Preferably, the folding adjustment assembly includes multiple positioning slots formed on the upper wall of the heating hood, and traction strips are slidably installed on the inner side of each of the multiple positioning slots, and the multiple traction strips are rotatably connected to the outer wall of the outer ring cylinder.
[0013] Preferably, the telescopic assembly includes two open boxes fixedly connected to the bottom of the air pump. A miniature push rod is fixedly installed on the inner wall of each of the two open boxes. A push plate is fixedly connected to the extended end of each miniature push rod. Two connecting rods are rotatably connected to one side of each push plate. The two connecting rods are rotatably connected to the adjustment plate, respectively.
[0014] Preferably, the pneumatic assembly includes a pneumatic disc slidably disposed inside the pneumatic cylinder, a connecting rod fixedly connected to the bottom end of the pneumatic disc, a sliding groove formed on the outer surface of the pneumatic cylinder, a lifting block fixedly connected to the bottom end of the connecting rod and slidably disposed intersecting the sliding groove, a lower ring plate connected to the bottom end of a plurality of lifting blocks, a plurality of grooves equidistantly disposed on the outer edge of the lower ring plate, and a plurality of traction strips rotatably disposed intersecting the grooves.
[0015] Preferably, the inner wall of the outer ring cylinder is fixedly connected with a plurality of short rods, and the plurality of short rods are rotatably connected to the inner ring cylinder.
[0016] Preferably, one end of each of the plurality of first air tubes is fixedly connected to a second air tube, and the second air tubes are respectively connected to the air cylinder.
[0017] Preferably, a flexible washer is installed in the middle of the air pump, and two arc-shaped plates are slidably arranged on one side of the air pump, both of which are fixedly connected to the open box.
[0018] The beneficial effects of this invention are:
[0019] 1. In a gastrointestinal motility-assisted treatment device of the present invention, a suitable electrode stimulation patch is placed at the bottom of a suction cup, and a wire is inserted into an elastic chuck. A negative pressure is generated by the operation of a pressure regulator to firmly hold the electrode stimulation patch in place. Then, an operating base plate drives an air pump to move, causing multiple limiting ports to move, thereby bringing the outer ring cylinder into contact with the thin plate. The operation of a hydraulic push rod drives a claw plate to move vertically downwards. Under the drive of the claw plate, multiple pressure rods and air bars move simultaneously. When the pressure rods descend, they can drive a piston plate to slide within the piston cylinder, thereby... The upper part generates suction, thereby extracting the gas between the outer and inner ring cylinders. During descent, the cavity formed between the outer and inner ring cylinders sucks the patient's abdomen in place. Driven by the air rod, the suction cup moves, causing the electrode stimulation pad to move downwards. When it moves to the inner side of the inner ring cylinder, the elastic chuck contacts and expands against the inner wall of the inner ring cylinder, further causing the electrode stimulation pad to contact the thin film, pushing the thin film into contact with the skin. This is beneficial for the auxiliary treatment device for gastrointestinal motility, which can effectively improve the stability of the stimulation process when stimulating acupoints in traditional Chinese medicine, and ensure the uniform penetration of the carried medication.
[0020] 2. In the gastrointestinal motility auxiliary treatment device of the present invention, the movement of the outer ring cylinder drives the movement of the short rod, causing the inner ring cylinder to rotate within the outer ring cylinder. Simultaneously, the thin sheet contracts inward, thus matching the electrode stimulation pads of different sizes. The elastic chuck expands and contracts with the size of the inner ring cylinder. The flexible washer corresponds to the navel and can push the arc-shaped plate to a sliding position within the air pump, thereby driving the opening box to move. This, in turn, drives the adjusting contact component to move to acupoints such as Zhongwan, Liangmen, Tianshu, Daheng, and Dachangshu. When there is a deviation in position, the micro push rod can be controlled to open and extend, driving the push plate to move, thereby driving the two connecting rods to move, further driving the swing position for alignment, and positioning and adjusting the stimulation of traditional Chinese medicine acupoints. When further adjustment is needed, the air pressure regulator and hydraulic push rod can be manually pushed to a sliding position within the limiting port. This facilitates the positioning of the stimulation acupoints and timely adjustment and replacement of the stimulation position when the gastrointestinal motility auxiliary treatment device stimulates traditional Chinese medicine acupoints, avoiding side effects from prolonged stimulation and improving the auxiliary treatment effect. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of the invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0024] Figure 2 The present invention Figure 1 Schematic diagram of one side of the arc-shaped plate;
[0025] Figure 3 This is the present invention. Figure 1 A schematic diagram of the structure from a mid-view perspective;
[0026] Figure 4 This is the present invention. Figure 2 Schematic diagram of the structure on the central adjustment plate;
[0027] Figure 5 This is the present invention. Figure 4 Schematic diagram of the lower structure of the middle claw disk;
[0028] Figure 6 This is the present invention. Figure 5 Schematic diagram of the middle half section structure;
[0029] Figure 7 This is the present invention. Figure 6 Schematic diagram of the structure at point A in the middle;
[0030] Figure 8 This is the present invention. Figure 5 A schematic diagram of the structure viewed from below.
[0031] In the diagram: 1. Operating base plate; 2. Adjustment plate; 3. Limiting port; 4. Connecting rod; 551. Adjustment contact assembly; 552. Electrode mounting assembly; 553. Piston cylinder assembly; 554. Folding adjustment assembly; 555. Telescopic assembly; 556. Pneumatic assembly; 6. Hydraulic push rod; 7. Air pressure regulator; 8. First air pipe; 9. Second air pipe; 10. Warm air hood; 11. Outer ring cylinder; 12. Thin sheet; 13. Push plate; 14. Pressure rod; 15. Circulation port; 16. Air cylinder; 17. Traction bar; 18. 19. Claw plate; 20. Bend; 21. Timer buzzer; 22. Flexible washer; 23. Arc plate; 24. Open box; 25. Miniature push rod; 26. Upper retaining ring; 27. Electrode stimulation pad; 28. Air rod; 29. Suction cup; 30. Piston cylinder; 31. Lifting block; 32. Elastic chuck; 33. Lower ring plate; 34. Short rod; 35. Inner ring cylinder; 36. Wire; 37. Piston plate; 38. Pneumatic plate; 39. Connecting rod; 40. Groove; 41. Positioning slide; 42. Slide groove; 43. Air pump; 44. Stabilizer. Detailed Implementation
[0032] To address the shortcomings of existing technologies, this invention provides a gastrointestinal motility-assisted treatment device, solving the following problems: Firstly, existing gastrointestinal motility-assisted treatment devices typically combine bioelectricity transmission with acupoint stimulation in Traditional Chinese Medicine. This involves electrode pads, whose working principle is based on electrical stimulation. The electrode pads can directly contact the skin with the body's nerves and muscles, transmitting electrical stimulation signals. When these signals are transmitted through the nerves and muscles, they can cause muscle contraction and relaxation, promote blood and lymph circulation, and relieve pain. However, the electrode pads adhere to the skin using adhesive materials. Due to the dryness and smoothness of the skin and the vibration during electrical stimulation, the electrode pads may shift or warp, resulting in uneven drug penetration and potentially causing skin allergies. Furthermore, repositioning the electrode pads after use requires professional guidance, which is difficult to manage when treating multiple patients, leading to patient discomfort and reduced effectiveness.
[0033] The following combination Figure 1-8 The present invention will be described in detail below. For ease of description, the directions referred to below are defined as follows: the directions of up, down, left, right, front, and back mentioned below are the same as... Figure 1 The directions of the projection relationship are consistent in all directions: up, down, left, right, front, and back.
[0034] A gastrointestinal motility-assisted therapeutic device, as shown in Figures 1-8, includes an operating base plate 1. An air pump 43 is mounted at one end of the operating base plate 1. Multiple first air tubes 8 are fixedly connected to the outer surface of the operating base plate 1 and the air pump 43. Adjustment plates 2 are rotatably connected to the four corners of the bottom end of the operating base plate 1. Limiting openings 3 are formed in the middle of the multiple adjustment plates 2. Air pressure regulators 7 are slidably mounted on the inner side of each limiting opening 3. The multiple first air tubes 8 are fixedly connected to the air pressure regulators 7. Hydraulic push rods 6 are fixedly connected to one side of each hydraulic push rod 6. Two stabilizers 44 are fixedly connected to the outer surface of each hydraulic push rod 6. Air cylinders 16 are fixedly connected to the bottom ends of each of the two stabilizers 44. One end of each of the multiple first air pipes 8 is fixedly connected to a second air pipe 9. The second air pipes 9 are respectively connected to the air cylinders 16. The bottom ends of the two air cylinders 16 are fixedly connected to a heating hood 10. An adjusting contact assembly 551 is rotatably installed on the inner side of the heating hood 10. The adjusting contact assembly 551 includes components rotatably connected to the heating hood. The inner ring cylinder 11 is rotatably connected to the inner wall of the outer ring cylinder 11. A thin plate 12 is provided at the bottom end of the inner ring cylinder 35. A claw plate 18 is slidably provided at the bottom end of the hydraulic push rod 6. An electrode mounting assembly 552 is inserted through the middle of the claw plate 18. The electrode mounting assembly 552 includes a gas rod 28 inserted through the middle of the claw plate 18. A piston cylinder assembly 553 is fixedly connected to the bottom end of the claw plate 18. A suction cup 29 is fixedly connected to the bottom end of the gas rod 28. The inner side of the heating hood 10 is inserted with... The device is equipped with a folding adjustment component 554, an electrode stimulation pad 27 is provided at the bottom of the suction cup 29, a telescopic component 555 is fixedly connected to the bottom of the air pump 43, a timer buzzer 20 is installed in the middle of the operating base plate 1, a pneumatic component 556 is fixedly connected to the upper end of the warm flow hood 10, two circulation ports 15 are opened on one side of the warm flow hood 10, an elastic chuck 32 is fitted on the outer surface of the suction cup 29, and a wire 36 is connected to one side of the electrode stimulation pad 27. The wire 36 is used in conjunction with the elastic chuck 32.
[0035] The above technical solution involves controlling the robotic arm to dock with the operating base plate 1. First, a suitable stimulation electrode is selected based on the size of the patient. The appropriate electrode stimulation piece 27 is placed at the bottom of the suction cup 29, and the wire 36 is inserted into the elastic chuck 32. The operation of the air pressure regulator 7 generates negative pressure to firmly hold the electrode stimulation piece 27 in place. Then, the operating base plate 1 drives the air pump 43 to move, causing multiple limiting ports 3 to move, thereby bringing the outer ring cylinder 11 and the thin sheet 12 together. The operation of the hydraulic push rod 6 drives the claw plate 18 to move vertically downward. Under the drive of the claw plate 18, multiple pressure rods 1 4. Simultaneously with the air rod 28, when the pressure rod 14 descends, it drives the piston disc 37 to slide within the piston cylinder 30, thereby generating suction at the upper part of the piston cylinder 30. This draws out the gas between the outer ring cylinder 11 and the inner ring cylinder 35. During descent, the cavity formed between the outer ring cylinder 11 and the inner ring cylinder 35 sucks the patient's abdomen in place. Driven by the air rod 28, the suction cup 29 moves, causing the electrode stimulation pad 27 to move downwards. When it moves to the inner side of the inner ring cylinder 35, the elastic chuck 32 contacts and retracts against the inner wall of the inner ring cylinder 35, further causing the electrode stimulation pad 27 to contact the thin plate 12, pushing the thin plate 12. Upon contact with the skin, gas is released through the second air tube 9. This gas is then transported into the pneumatic cylinder 16, causing the pneumatic disc 38 to slide smoothly downwards within the cylinder. The sliding of the pneumatic disc 38 drives the connecting rod 39, causing the lifting block 31 to slide smoothly downwards within the slide groove 42. The sliding of the lifting block 31 causes the lower ring plate 33 to descend vertically, further driving the traction bar 17 to descend. As the traction bar 17 descends, it slides within the positioning slide opening 41. The sliding of the traction bar 17 pushes the outer ring cylinder 11 to rotate within the warm air hood 10. The movement of the outer ring cylinder 11... The downward movement of the short rod 34 causes the inner ring cylinder 35 to rotate within the outer ring cylinder 11, and the inward contraction of the thin plate 12 to match the electrode stimulation plates 27 of different sizes. The elastic chuck 32 expands and contracts with the size of the inner ring cylinder 35. The flexible washer 21 corresponds to the navel and can push the arc plate 23 to slide within the air pump 43, thereby driving the open box 24 to move. This, in turn, drives the adjusting contact component 551 to move to acupoints such as Zhongwan, Liangmen, Tianshu, Daheng, and Dachangshu. This is beneficial for improving the stability of the stimulation process when the gastrointestinal motility auxiliary treatment device is used to stimulate acupoints in traditional Chinese medicine.
[0036] A further technical solution is provided, in which the telescopic component 555 includes two open boxes 24 fixedly connected to the bottom of the air pump 43. A miniature push rod 25 is fixedly installed on the inner wall of each of the two open boxes 24. A push plate 13 is fixedly connected to the extended end of the miniature push rod 25. Two connecting rods 4 are rotatably connected to one side of the push plate 13. The two connecting rods 4 are rotatably connected to the adjusting plate 2 respectively. A flexible washer 21 is installed in the middle of the air pump 43. Two arc-shaped plates 23 are slidably arranged on one side of the air pump 43. Both arc-shaped plates 23 are fixedly connected to the open boxes 24.
[0037] The aforementioned technical solution utilizes a miniature push rod 25 to extend and retract, thereby moving the push plate 13, which in turn moves the two connecting rods 4. This further aligns the swing position, allowing for the positioning and adjustment of acupoint stimulation in Traditional Chinese Medicine (TCM). When further adjustment is needed, the pneumatic regulator 7 and hydraulic push rod 6 can be manually pushed to slide within the limiting port 3. A timer buzzer 20 can also provide a timed medication reminder. By combining the transmission of bioelectricity with TCM acupoint stimulation, the device promotes blood and lymph circulation, relieves pain, and facilitates gastrointestinal motility. During acupoint stimulation, the device effectively locates the acupoints, allowing for timely adjustments and changes to the stimulation position, avoiding side effects from prolonged stimulation and improving the overall therapeutic effect.
[0038] Specific usage of this invention:
[0039] In a gastrointestinal motility-assisted treatment device of the present invention, by controlling the robotic arm to dock with the operating base plate 1, a suitable stimulation electrode is first selected according to the body size of the patient. The suitable electrode stimulation piece 27 is placed at the bottom of the suction cup 29, and the wire 36 is inserted into the elastic chuck 32. The operation of the air pressure regulator 7 generates negative pressure to firmly hold the electrode stimulation piece 27. Then, the operating base plate 1 drives the air pump 43 to move, thereby moving multiple limiting ports 3, thereby bringing the outer ring cylinder 11 and the thin sheet 12 together. The operation of the hydraulic push rod 6 drives the claw plate 18 to move vertically downward. Under the drive of the claw plate 18, multiple pressure rods 14 and air rods 28 move simultaneously. During descent, the piston disc 37 slides within the piston cylinder 30, generating suction at the top of the piston cylinder 30. This suction draws out the gas between the outer ring cylinder 11 and the inner ring cylinder 35. As the piston descends, the cavity between the outer ring cylinder 11 and the inner ring cylinder 35 holds the patient's abdomen in place. Driven by the air rod 28, the suction cup 29 moves, causing the electrode stimulation pad 27 to move downwards. When it reaches the inner side of the inner ring cylinder 35, the elastic chuck 32 contacts and retracts against the inner wall of the inner ring cylinder 35, further causing the electrode stimulation pad 27 to contact the thin sheet 12, pushing the thin sheet 12 into contact with the skin. Gas is released through the second trachea 9 and transported into the pneumatic cylinder 16. The pneumatic disc 38 slides smoothly downwards within the pneumatic cylinder 16. This movement of the pneumatic disc 38 drives the connecting rod 39, causing the lifting block 31 to slide smoothly downwards within the slide groove 42. The sliding of the lifting block 31 causes the lower ring plate 33 to descend vertically, further driving the traction strip 17 downwards. As the traction strip 17 descends, it slides within the positioning slide 41, pushing the outer ring cylinder 11 to rotate within the warm air hood 10. The movement of the outer ring cylinder 11 causes the short rod 34 to move, simultaneously causing the inner ring cylinder 35 to rotate within the outer ring cylinder 11. This causes the thin sheet 12 to retract synchronously, thus matching the electrode stimulation plates 27 of different sizes. The elastic chuck 32 follows... The inner ring cylinder 35 expands and contracts in size, and the flexible washer 21 corresponds to the navel. It can push the arc plate 23 to slide within the air pump 43, thereby driving the open box 24 to move. This, in turn, drives the adjusting contact component 551 to move to acupoints such as Zhongwan, Liangmen, Tianshu, Daheng, and Dachangshu. When there is a deviation in position, the micro push rod 25 can be controlled to open and extend, driving the push plate 13 to move, thereby driving the two connecting rods 4 to move, further driving the swing position to align, and to locate and adjust the stimulation of acupoints in traditional Chinese medicine. When further adjustment is needed, the air pressure regulator 7 and the hydraulic push rod 6 can be manually pushed to slide within the limit port 3. The timer buzzer 20 can also be used to remind you to take medicine at a set time.
[0040] The above embodiments are only for illustrating the technical concept and features of the present invention, and are intended to enable those skilled in the art to understand and implement the present invention. They should not be construed as limiting the scope of protection of the present invention. All equivalent changes or modifications made in accordance with the spirit and essence of the present invention should be covered within the scope of protection of the present invention.
Claims
1. A gastrointestinal motility-assisted therapeutic device, characterized in that: The system includes an operating base plate (1), one end of which is equipped with an air pump (43). Multiple first air pipes (8) are fixedly connected to the outer surface of the operating base plate (1) and the air pump (43). Adjustment plates (2) are rotatably connected to the four corners of the bottom of the operating base plate (1). Limiting ports (3) are opened in the middle of the multiple adjustment plates (2). Air pressure regulators (7) are slidably installed on the inner side of each limiting port (3). Multiple first air pipes (8) are fixedly connected to the air pressure regulators (7). A hydraulic push rod (6) is fixedly connected to one side of each of the multiple air pressure regulators (7). Two stabilizers (44) are fixedly connected to the outer surface of the hydraulic push rod (6). The bottom of each of the stabilizers (44) is fixedly connected to a pneumatic cylinder (16), and the bottom of the two pneumatic cylinders (16) are fixedly connected to a heating shroud (10). An adjusting contact assembly (551) is rotatably installed on the inner side of the heating shroud (10). The adjusting contact assembly (551) includes an outer ring cylinder (11) rotatably connected to the inner side of the heating shroud (10). An inner ring cylinder (35) is rotatably connected to the inner wall of the outer ring cylinder (11). A thin plate (12) is provided at the bottom of the inner ring cylinder (35). A claw plate (18) is slidably provided at the bottom of the hydraulic push rod (6). An electrode mounting assembly (552) is inserted through the middle of the claw plate (18). 52) Includes an air rod (28) inserted in the middle of the claw plate (18), a piston cylinder assembly (553) fixedly connected to the bottom end of the claw plate (18), the piston cylinder assembly (553) includes multiple pressure rods (14) fixedly connected to the bottom end of the claw plate (18), an upper retaining ring (26) fixedly connected to the upper end of the heating hood (10), multiple piston cylinders (30) are circumferentially inserted on the inner side of the upper retaining ring (26), the multiple pressure rods (14) are respectively inserted into the piston cylinders (30), the multiple pressure rods (14) pass through the piston cylinders (30) and enter the interior to be fixedly connected to the piston plate (37), and multiple bent tubes (19) are vertically and equidistantly installed on the outer surface of the upper retaining ring (26). Multiple bends (19) are inserted into the upper wall of the piston cylinder (30), and multiple bends (19) are connected to the outer ring cylinder (11). The bottom end of the air rod (28) is fixedly connected to a suction cup (29). A folding adjustment assembly (554) is inserted into the inner side of the heating hood (10). An electrode stimulation piece (27) is provided at the bottom end of the suction cup (29). A telescopic assembly (555) is fixedly connected to the bottom end of the air pump (43). A timer buzzer (20) is installed in the middle of the operating base plate (1). A pneumatic assembly (556) is fixedly connected to the upper end of the heating hood (10). Two circulation ports (15) are opened on one side of the heating hood (10).
2. The gastrointestinal motility-assisted therapeutic device according to claim 1, characterized in that: The outer surface of the suction cup (29) is fitted with an elastic chuck (32), and one side of the electrode stimulation pad (27) is connected to a wire (36), which is used in conjunction with the elastic chuck (32).
3. The gastrointestinal motility-assisted therapeutic device according to claim 1, characterized in that: The folding adjustment assembly (554) includes multiple positioning slots (41) opened on the upper wall of the heating hood (10). Traction strips (17) are slidably installed on the inner side of each of the multiple positioning slots (41), and each of the multiple traction strips (17) is rotatably connected to the outer wall of the outer ring cylinder (11).
4. The gastrointestinal motility-assisted therapeutic device according to claim 1, characterized in that: The telescopic assembly (555) includes two open boxes (24) fixedly connected to the bottom of the air pump (43). The inner walls of the two open boxes (24) are fixedly installed with miniature push rods (25). The extended ends of the miniature push rods (25) are fixedly connected with push plates (13). Two connecting rods (4) are rotatably connected to one side of the push plates (13). The two connecting rods (4) are rotatably connected to the adjustment plate (2) respectively.
5. The gastrointestinal motility-assisted therapeutic device according to claim 3, characterized in that: The pneumatic assembly (556) includes a pneumatic disc (38) slidably disposed inside the pneumatic cylinder (16). A connecting rod (39) is fixedly connected to the bottom end of the pneumatic disc (38). A sliding groove (42) is provided on the outer surface of the pneumatic cylinder (16). A lifting block (31) is fixedly connected to the bottom end of the connecting rod (39) and slides through the sliding groove (42). The bottom ends of multiple lifting blocks (31) are connected to a lower ring plate (33). Multiple grooves (40) are provided at equal intervals along the outer edge of the lower ring plate (33). Multiple traction strips (17) are rotatably disposed through the grooves (40).
6. The gastrointestinal motility-assisted therapeutic device according to claim 5, characterized in that: The inner wall of the outer ring cylinder (11) is fixedly connected with a plurality of short rods (34), and the plurality of short rods (34) are rotatably connected to the inner ring cylinder (35).
7. The gastrointestinal motility-assisted therapeutic device according to claim 1, characterized in that: One end of each of the first air tubes (8) is fixedly connected to a second air tube (9), and the second air tubes (9) are respectively connected to the air cylinder (16).
8. The gastrointestinal motility-assisted therapeutic device according to claim 1, characterized in that: A flexible washer (21) is installed in the middle of the air pump (43), and two arc-shaped plates (23) are slidably arranged on one side of the air pump (43). Both arc-shaped plates (23) are fixedly connected to the open box (24).
Citation Information
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