Postoperative auxiliary nursing supporting device

By designing a postoperative auxiliary nursing support device including a finger alignment structure and a pneumatic pressure control component, the problem of single function in the prior art is solved, and auxiliary nursing and rehabilitation activities for fingers or toes are realized, which improves the practicality and operational convenience of the device.

CN120078606AInactive Publication Date: 2025-06-03SHIJIAZHUANG PEOPLES HOSPITAL
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Patent Information

Application Number
CN202510304024.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-06-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing postoperative auxiliary nursing support device has a single function and is mainly limited to leg support, which cannot effectively assist in the movement and rehabilitation of fingers or toes.

Method used

A postoperative auxiliary care support device including a mounting plate, a finger alignment structure and a pneumatic control assembly is designed. The finger alignment structure realizes limiting, auxiliary movement and movement of the finger or toe through the rotating body frame, linkage gear and elastic airbag. The air pressure control component assists in driving the finger alignment structure through a manual drive structure to achieve auxiliary care for the fingers of the hand or foot.

Benefits of technology

This device not only provides basic support functions, but also assists the movement of fingers or toes, realizing the postoperative rehabilitation process, with high operation convenience and further strengthening of practicality.

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Abstract

The invention relates to the technical field of supporting devices, and provides a postoperative auxiliary nursing supporting device which can be applied to postoperative auxiliary nursing and supporting of hands or feet of a patient, can assist fingers to move while having a basic supporting function so as to realize auxiliary rehabilitation, is more convenient to operate, is more practical and is suitable for popularization and application. Comprising a mounting plate and a finger alignment structure, the mounting plate is connected with a carrying binding structure, the carrying binding structure is used for being worn by the mounting plate relative to a patient, the finger alignment structure comprises a rotating body frame, the rotating body frame is rotationally connected to the mounting plate, and a pressure driving assembly is mounted in the mounting plate; the pressure driving assembly is used for driving the rotating main body frame to rotate relative to the mounting plate, the rotating main body frame is provided with a palm center notch and five finger openings, the five finger openings communicate with the palm center notch, supporting cylinders are fixedly connected into the five finger openings, rotating cylinders are rotationally connected into the five supporting cylinders, and linkage gears are fixedly connected to the five rotating cylinders.
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Description

Technical Field

[0001] The present invention relates to the technical field of support devices, and particularly relates to a postoperative auxiliary nursing support device. Background Art

[0002] As the name implies, a postoperative auxiliary nursing support device is an auxiliary device used for nursing and supporting the surgical part of a patient after surgery.

[0003] After retrieval, a Chinese invention patent application with the application number CN202411433027.X discloses a postoperative auxiliary nursing support device, which is generally described as including a mounting plate. Two bearing seats are fixedly connected to the upper surface of the mounting plate. The inner rings of the two bearing seats are respectively fixedly connected with a T-shaped rotating disc and a mounting frame. The outer surfaces of the T-shaped rotating disc and the mounting frame are both fixedly connected with rotating wheels. The two rotating wheels are jointly connected by a belt drive. Sealed bearings are fixedly embedded in the inner top wall and the inner bottom wall of the mounting frame. The inner rings of the two sealed bearings are jointly fixedly connected with a T-shaped rotating screw rod. A support rod is threadedly connected to the outer surface of the T-shaped rotating screw rod. The upper surface of the support rod is fixedly connected with a first support frame. The bottom surface of the support rod is fixedly connected with a bearing plate. Two sliding holes are formed in the upper surface of the bearing plate. A U-shaped support frame is jointly slidably connected to the inner rings of the two sliding holes. Two second support frames are fixedly connected to the upper surface of the U-shaped support frame. A connecting plate is fixedly connected to the bottom surface of the support rod. A sliding hole is formed in the right side surface of the connecting plate. A T-shaped rotating disc is slidably connected to the inner wall of the sliding hole. A gear is fixedly connected to the left end of the T-shaped rotating disc. An installation groove is formed in the upper surface of the support rod. A toothed plate is slidably connected to the inner wall of the installation groove. The back surface of the toothed plate is fixedly connected with the front surface of the U-shaped support frame. The toothed plate is meshed with the gear. A limiting toothed block is fixedly connected to the bottom surface of the support rod. When in use, first, it is moved to the side of the hospital bed by using the second self-locking moving wheel, and the extension plate is stretched under the bed in cooperation with the first self-locking moving wheel. At the same time, the T-shaped rotating screw rod is rotated to raise the support rod above the hospital bed. Meanwhile, the T-shaped rotating disc is rotated. The rotation of the T-shaped rotating disc cooperates with the two rotating wheels connected by a belt drive to change the support rod to the same direction as the mounting plate. Subsequently, the patient's leg is placed on the first support frame, and the affected area of the leg is nursed. At the same time, after the nursing is completed, the T-shaped rotating disc is rotated. The rotation of the T-shaped rotating disc cooperates with the meshing of the T-shaped rotating disc and the toothed plate, and the sliding connection of the U-shaped support frame and the sliding hole to jack up the already nursed position by the second support frame. Immediately afterwards, the first support frame is separated from the leg. Another push of the T-shaped rotating disc makes the gear meshed with the toothed plate and the limiting toothed block together, which can limit the second support frame. Finally, the position that has not been nursed is nursed.

[0004] Although the above-mentioned prior art solutions can be used in the nursing process of leg affected areas, it can be clearly found from a comprehensive understanding of its application process that its role in nursing is only limited to the support of the legs, with relatively single functionality and the practicality also needs to be further strengthened. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a postoperative auxiliary nursing support device, which can be applied to the auxiliary nursing and support of a patient's hand or foot after surgery. While having a basic support function, it can assist the fingers to move, thereby realizing the progress of auxiliary rehabilitation, with good operation convenience and further strengthened practicality.

[0006] To achieve the above object, the present invention provides the following technical solution: A postoperative auxiliary nursing support device includes a mounting plate, and further includes a finger alignment structure. A carrying and binding structure is connected to the mounting plate, and the carrying and binding structure is used for the mounting plate to be worn relative to the patient. The finger alignment structure includes a rotating main body frame, the rotating main body frame is rotatably connected to the mounting plate, and a pressure driving component is installed in the mounting plate. The pressure driving component is used for driving the rotation of the rotating main body frame relative to the mounting plate. A palm notch and five finger openings are provided on the rotating main body frame, and the five finger openings are all communicated with the palm notch. Support cylinders are fixedly connected in the five finger openings, rotating cylinders are rotatably connected in the five support cylinders, linkage gears are fixedly connected to the five rotating cylinders, an arc-shaped rack is fixedly connected to the top end of the mounting plate, and the five linkage gears are all engaged with the arc-shaped rack. Moving frames are slidably connected in the five rotating cylinders, finger sleeves are rotatably connected in the five moving frames, elastic air bags are fixedly connected outside the five moving frames, the five elastic air bags are respectively fixedly connected in the five rotating cylinders, and the five elastic air bags are equipped with a pneumatic control component, and the pneumatic control component is matched with the pressure driving component.

[0007] Preferably, the carrying and binding structure includes a strip board, a side mounting frame is rotatably connected to the strip board, the side mounting frame is rotatably connected to the mounting plate, a plurality of binding bands are installed on the strip board, telescopic bands are slidably connected to the plurality of binding bands, a plurality of limiting buckles are fixedly connected to the plurality of telescopic bands, the plurality of limiting buckles are respectively matched with the plurality of binding bands, a plurality of folding connecting shafts are fixedly connected to the strip board, the plurality of folding connecting shafts are respectively matched with the plurality of telescopic bands, and a sub-sticker and a mother-sticker are provided on the telescopic band, and the sub-sticker and the mother-sticker are mutually matched.

[0008] Preferably, rotary connection cylinders are fixedly connected to both the strip board and the mounting board. Two rotary connection holes are provided on the side mounting frame. The two rotary connection cylinders are respectively rotatably connected in the two rotary connection holes. Threaded compression nuts are threadedly connected to the two rotary connection cylinders. Two friction ring pressing surfaces are provided on the side mounting frame, and the two friction ring pressing surfaces respectively match the two threaded compression nuts.

[0009] Preferably, a rotating shaft is fixedly connected to the bottom end of the rotating main body frame. A rotating hole is provided on the mounting board, and the rotating shaft is rotatably connected in the rotating hole.

[0010] Preferably, the pressure driving assembly includes a winding bladder. An enlarged groove is provided in the rotating hole. The outer winding head of the winding bladder is fixedly connected in the enlarged hole, and the inner winding head of the winding bladder is fixedly connected to the rotating shaft. A conical disc spring is fixedly connected to the bottom end of the rotating shaft, and the conical disc spring is fixedly connected in the rotating hole.

[0011] Preferably, the air pressure control assembly includes a first hand-held frame and a second hand-held frame. The first hand-held frame and the second hand-held frame are rotatably connected through a middle shaft frame. End connection frames are fixedly connected to both the first hand-held frame and the second hand-held frame. A first airbag and a second airbag are respectively fixedly connected to the two end connection frames. The five elastic airbags are all communicated with the first airbag, and the winding bladder is communicated with the second airbag. First sliding frames and second sliding frames are slidably connected to both the first hand-held frame and the second hand-held frame, and the first sliding frames and the second sliding frames respectively match the first airbag and the second airbag.

[0012] Preferably, the first airbag is communicated with a main pipeline. The main pipeline is communicated with five branch pipelines. The five branch pipelines are respectively communicated with the five elastic airbags. The second airbag is communicated with a guiding pipeline, and the guiding pipeline is communicated with the winding bladder.

[0013] Preferably, outer notch communication rings are fixedly connected to the outsides of the five rotating cylinders. The five outer notch communication rings are respectively communicated with the five elastic airbags. Inner notch communication rings are fixedly connected to the insides of the five support cylinders. The five inner notch communication rings are respectively communicated with the five branch pipelines. The five inner notch communication rings are respectively rotatably connected to the five outer notch communication rings.

[0014] Preferably, an intelligent computer is installed at the top end of the strip board. Airflow sensors are installed on both the main pipeline and the guiding pipeline. The two airflow sensors are both electrically connected to the intelligent computer.

[0015] Preferably, an arc-shaped strip groove is provided at the bottom end of the rotating main body frame, and the arc-shaped strip groove matches the arc-shaped rack.

[0016] Compared with the prior art, the present invention provides a postoperative auxiliary nursing support device, which has the following beneficial effects: (1) In the present invention, through the design of the finger alignment structure, a relative placement space is formed to match the fingers of the human hand or foot, facilitating the limiting and auxiliary movement nursing operations of the fingers during postoperative rehabilitation.

[0017] (2) In the present invention, through the design of the air pressure control component, a manual driving structure adapted to the finger alignment structure is formed, facilitating the auxiliary driving of the finger alignment structure, and then achieving the purpose of auxiliary nursing of the fingers of the human hand or foot. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional structure schematic diagram of the whole of the present invention; Figure 2 is a disassembled three-dimensional structure schematic diagram of the cooperation of the first hand-held frame, the second hand-held frame and the central shaft frame, etc. of the present invention; Figure 3 is a disassembled three-dimensional structure schematic diagram of the cooperation of the end connection frame, the first airbag and the second airbag, etc. of the present invention; Figure 4 is a three-dimensional structure schematic diagram of a partial cross-section of the cooperation of the branch pipeline, the inner groove opening connecting ring and the outer groove opening connecting ring, etc. of the present invention; Figure 5 is a three-dimensional structure schematic diagram of a partial cross-section of the cooperation of the moving frame, the finger sleeve and the elastic airbag, etc. of the present invention; Figure 6 is a three-dimensional structure schematic diagram of the whole of the present invention seen from below; Figure 7 is a three-dimensional structure schematic diagram of the cooperation of the side mounting frame and the friction ring pressing surface of the present invention; Figure 8 is a disassembled three-dimensional structure schematic diagram of the cooperation of the binding belt, the telescopic belt and the limit buckle of the present invention; Figure 9 is a three-dimensional structure schematic diagram of a partial cross-section of the cooperation of the rotating main body frame, the rotating cylinder and the linkage gear, etc. of the present invention; Figure 10 is a three-dimensional structure schematic diagram seen from below of the cooperation of the rotating main body frame, the rotating shaft and the conical disc spring of the present invention; Figure 11 is a three-dimensional structure schematic diagram of the rotating main body frame of the present invention; Figure 12 is a three-dimensional structure schematic diagram of the cooperation of the mounting plate and the rotating connection cylinder of the present invention; Figure 13 is a cross-sectional three-dimensional structure schematic diagram of the cooperation of the mounting plate, the winding bladder and the conical disc spring, etc. of the present invention.

[0019] In the figure: 1, mounting plate; 2, rotating main body frame; 3, palm notch; 4, finger opening; 5, rotating cylinder; 6, linkage gear; 7, arc rack; 8, moving frame; 9, finger sleeve; 10, elastic airbag; 11, strip board; 12, binding band; 13, side mounting frame; 14, telescopic band; 15, limit buckle; 16, folding connection shaft; 17, sub sticker; 18, mother sticker; 19, rotating connection cylinder; 20, rotating connection hole; 21, threaded compression cap; 22, friction ring pressing surface; 23, rotating shaft; 24, rotating hole; 25, winding bladder; 26, expansion groove; 27, conical disc spring; 28, first hand-held frame; 29, second hand-held frame; 30, middle shaft frame; 31, end connection frame; 32, first airbag; 33, second airbag; 34, first sliding frame; 35, second sliding frame; 36, main pipeline; 37, branch pipeline; 38, guiding pipeline; 39, inner groove opening connecting ring; 40, outer groove opening connecting ring; 41, arc strip groove. Detailed implementation manner

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] Embodiment Please refer to Figures 1-13, a postoperative auxiliary nursing support device, including a mounting plate 1, further including a finger alignment structure, a carrying and binding structure is connected to the mounting plate 1. The carrying and binding structure includes a strip plate 11, a side mounting frame 13 is rotatably connected to the strip plate 11, the side mounting frame 13 is rotatably connected to the mounting plate 1, a plurality of binding straps 12 are mounted on the strip plate 11, a telescopic strap 14 is slidably connected to each of the plurality of binding straps 12, a plurality of limiting buckles 15 are fixedly connected to the plurality of telescopic straps 14 respectively, the plurality of limiting buckles 15 are respectively matched with the plurality of binding straps 12, a plurality of folding connection shafts 16 are fixedly connected to the strip plate 11, the plurality of folding connection shafts 16 are respectively matched with the plurality of telescopic straps 14, and a sub - sticker 17 and a mother - sticker 18 are arranged on the telescopic strap 14, the sub - sticker 17 and the mother - sticker 18 are mutually matched. Rotating connection cylinders 19 are fixedly connected to both the strip plate 11 and the mounting plate 1. Two rotating connection holes 20 are formed in the side mounting frame 13, and the two rotating connection cylinders 19 are respectively rotatably connected in the two rotating connection holes 20. Threaded compression nuts 21 are threadedly connected to the two rotating connection cylinders 19 respectively. Two friction ring pressing surfaces 22 are arranged on the side mounting frame 13, and the two friction ring pressing surfaces 22 are respectively matched with the two threaded compression nuts 21. The carrying and binding structure is used for the mounting plate 1 to be worn relative to the patient. The finger alignment structure includes a rotating main body frame 2, the rotating main body frame 2 is rotatably connected to the mounting plate 1, a rotating shaft 23 is fixedly connected to the bottom end of the rotating main body frame 2, a rotating hole 24 is formed in the mounting plate 1, and the rotating shaft 23 is rotatably connected in the rotating hole 24. A pressure driving component is installed in the mounting plate 1, and the pressure driving component is used for driving the rotation of the rotating main body frame 2 relative to the mounting plate 1. A palm notch 3 and five finger openings 4 are arranged on the rotating main body frame 2, the five finger openings 4 are all communicated with the palm notch 3, support cylinders are fixedly connected in the five finger openings 4 respectively, rotating cylinders 5 are rotatably connected in the five support cylinders respectively, linkage gears 6 are fixedly connected to the five rotating cylinders 5 respectively, an arc - shaped rack 7 is fixedly connected to the top end of the mounting plate 1, and the five linkage gears 6 are all meshed with the arc - shaped rack 7. Moving frames 8 are slidably connected in the five rotating cylinders 5 respectively, finger sleeves 9 are rotatably connected in the five moving frames 8 respectively, elastic air bags 10 are fixedly connected to the outsides of the five moving frames 8 respectively, and the five elastic air bags 10 are respectively fixedly connected in the five rotating cylinders 5. Through the design of the finger alignment structure, a relative placement space is formed to match the fingers of the human hand or foot, which is convenient for the limiting and auxiliary movement nursing operations of the fingers during the postoperative rehabilitation period. An arc - shaped strip groove 41 is formed at the bottom end of the rotating main body frame 2, the arc - shaped strip groove 41 is matched with the arc - shaped rack 7, and the arc - shaped rack 7 provides a necessary turning space.

[0022] It should be further noted that the five elastic airbags 10 are equipped with a pneumatic control component, which is matched with the pressure driving component. The pressure driving component includes a winding bladder 25. An expansion groove 26 is provided in the rotation hole 24. The outer winding head of the winding bladder 25 is fixedly connected in the expansion hole, and the inner winding head of the winding bladder 25 is fixedly connected to the rotating shaft 23. A conical disc spring 27 is fixedly connected to the bottom end of the rotating shaft 23, and the conical disc spring 27 is fixedly connected in the rotation hole 24. The pneumatic control component includes a first hand-held frame 28 and a second hand-held frame 29. The first hand-held frame 28 and the second hand-held frame 29 are rotatably connected through a central shaft frame 30. Both the first hand-held frame 28 and the second hand-held frame 29 are fixedly connected with end connection frames 31. Two end connection frames 31 are respectively fixedly connected with a first airbag 32 and a second airbag 33. The five elastic airbags 10 are all communicated with the first airbag 32, and the winding bladder 25 is communicated with the second airbag 33. The first hand-held frame 28 and the second hand-held frame 29 are both slidably connected with a first sliding frame 34 and a second sliding frame 35. The first sliding frame 34 and the second sliding frame 35 are respectively matched with the first airbag 32 and the second airbag 33. The first airbag 32 is communicated with a main pipeline 36. The main pipeline 36 is communicated with five branch pipelines 37. The five branch pipelines 37 are respectively communicated with the five elastic airbags 10. The second airbag 33 is communicated with a guiding pipeline 38. The guiding pipeline 38 is communicated with the winding bladder 25. An outer notch communication ring 40 is fixedly connected to the outside of each of the five rotating cylinders 5. The five outer notch communication rings 40 are respectively communicated with the five elastic airbags 10. An inner notch communication ring 39 is fixedly connected to the inside of each of the five support cylinders. The five inner notch communication rings 39 are respectively communicated with the five branch pipelines 37. The five inner notch communication rings 39 are respectively rotatably connected with the five outer notch communication rings 40. Through the design of the pneumatic control component, a manual driving structure adapted to the finger alignment structure is formed, which is convenient for assisting the driving of the finger alignment structure, and then achieves the purpose of auxiliary care for the fingers of the human hand or foot. A smart computer is installed at the top of the strip board 11. Airflow sensors are installed on both the main pipeline 36 and the guiding pipeline 38. Both airflow sensors are electrically connected to the smart computer, measuring the number of times of passage in the main pipeline 36 and the guiding pipeline 38, and at the same time detecting the air pressure in the main pipeline 36 and the guiding pipeline 38, improving the intelligence level of this postoperative auxiliary care support device and ensuring the operation safety of this postoperative auxiliary care support device.

[0023] The smart computer and the airflow sensors in this embodiment are both conventional devices well-known to those skilled in the art and purchased on the market. Their structures and functions have not been improved. For those skilled in the art, their setting methods, installation methods, and electrical connection methods can be adjusted and operated as required in their user manuals, and will not be elaborated here.

[0024] In summary, the working principle of the postoperative auxiliary nursing support device is as follows: during use, first, the carrying and binding structure forms a wearing state relative to the patient. The specific form of wearing is to place the strip board 11 against the patient's forearm or calf, and loosen the two threaded caps 21 so that the relative limiting effect between the two threaded caps 21 and the two friction ring pressing surfaces 22 fails. After that, the mounting plate 1 can adjust its relative position with respect to the strip board 11, and make specific position adjustments according to the fingers of the patient's hand or foot, so that the relative position between the mounting plate 1 and the strip board 11 matches the patient's foot or hand. After the adjustment is completed, reverse-rotate the threaded cap 21 to make it contact and press against the corresponding friction ring pressing surface 22, thereby achieving the relative position stability of the mounting plate 1 with respect to the strip board 11. By passing the telescopic belt 14 around the folding connection shaft 16 and then adhering and forming a relative connection and positioning through the mutually matching sub-sticker 17 and mother-sticker 18, the strip board 11 is bound to the patient's forearm or calf. After the binding is completed, the patient's palm or sole falls into the palm notch 3, and the fingers or toes fall into the finger sleeves 9. In this state, by squeezing the first airbag 32, the telescopic adjustment of multiple elastic airbags 10 can be realized. The telescopic adjustment of multiple elastic airbags 10 can achieve the relative position adjustment of the moving frame 8 with respect to the rotating cylinder 5, thereby forming a lateral extrusion on the fingers. On the one hand, the lateral extrusion can achieve the auxiliary massage of the fingers, and on the other hand, the lateral extrusion can also form a fine adjustment of the relative distance between the fingers, achieving the purpose of auxiliary finger movement. By squeezing the second airbag 33, the winding state of the winding airbag 25 can be adjusted, that is, when the winding airbag 25 is inflated, its winding amplitude decreases, and when the winding airbag 25 is deflated, its winding amplitude increases. Along with the change of the winding amplitude of the winding airbag 25, the rotational adjustment of the rotating main body frame 2 with respect to the mounting plate 1 is formed, so as to form an auxiliary swinging movement of the hand wrist joint or the foot wrist joint. And when the rotating main body frame 2 forms a relative rotational adjustment with respect to the mounting plate 1, through the meshing transmission of the arc-shaped rack 7 and the linkage gear 6, the rotational adjustment of multiple rotating cylinders 5 can be realized, and then the rotational adjustment of the elastic airbag 10 with respect to the fingers placed in the finger sleeve 9 is achieved. Along with the progress of this adjustment, the telescopic movement of the elastic airbag 10 can achieve the extrusion operation on the fingers in different directions, so as to improve the nursing effect of the fingers, as shown in Figure 1The state of the air pressure control component shown in the upper right corner is that the first hand-held frame 28 and the second hand-held frame 29 enter a relatively flattened state. In this state, alternately pulling and pushing the first sliding frame 34 relative to the first hand-held frame 28 can achieve volume adjustment of the first airbag 32, and alternately pulling and pushing the second sliding frame 35 relative to the second hand-held frame 29 can achieve volume adjustment of the second airbag 33. By rotating the first hand-held frame 28 and the second hand-held frame 29 relative to the central axis frame 30, the relative rotational closure between the first hand-held frame 28 and the second hand-held frame 29 can be achieved. In this state, the synchronous adjustment operation of the first airbag 32 and the second airbag 33 is convenient, that is, the operator can grasp the first hand-held frame 28 and the second hand-held frame 29 at the same time with one hand, and can realize the synchronous pulling and shifting operation of the first sliding frame 34 and the second sliding frame 35 with the fingers of one hand, so as to form the synchronous compression and expansion adjustment of the first airbag 32 and the second airbag 33, and finally achieve the synchronous adjustment of the winding bag 25 and the five elastic airbags 10 to improve the convenience of operation.

[0025] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A postoperative auxiliary nursing support device, comprising a mounting plate (1), characterized in that: The device also comprises a finger alignment structure, wherein the mounting plate (1) is connected to a carrying and binding structure, and the carrying and binding structure is used for the mounting plate (1) to be worn relative to the patient, and the finger alignment structure comprises a rotating main frame (2), wherein the rotating main frame (2) is rotatably connected to the mounting plate (1), and a pressure driving component is installed in the mounting plate (1), and the pressure driving component is used for driving the rotating main frame (2) to rotate relative to the mounting plate (1), and the rotating main frame (2) is provided with a palm notch (3) and five finger openings (4), wherein the five finger openings (4) are all connected to the palm notch (3), and the five finger openings (4) are all fixedly connected to a support tube, and the five support tubes are all A rotating cylinder (5) is rotatably connected, and the five rotating cylinders (5) are all fixedly connected with linkage gears (6). The top end of the mounting plate (1) is fixedly connected with an arc-shaped rack (7), and the five linkage gears (6) are all meshed with the arc-shaped rack (7). The five rotating cylinders (5) are all slidably connected with a moving frame (8), and the five moving frames (8) are all rotatably connected with finger sleeves (9). The outside of the five moving frames (8) are all fixedly connected with elastic air bags (10), and the five elastic air bags (10) are respectively fixedly connected in the five rotating cylinders (5). The five elastic air bags (10) are equipped with a pneumatic control component, and the pneumatic control component matches the pressure drive component.

2. A postoperative auxiliary nursing support device according to claim 1, characterized in that: The carrying and binding structure comprises a strip (11), the strip (11) is rotatably connected to a side mounting frame (13), the side mounting frame (13) is rotatably connected to the mounting plate (1), a plurality of binding straps (12) are mounted on the strip (11), a plurality of the binding straps (12) are slidably connected to a telescopic strap (14), the plurality of the telescopic straps (14) are fixedly connected to a limiting buckle (15), the plurality of the limiting buckles (15) are respectively matched with the plurality of the binding straps (12), a plurality of folding connecting shafts (16) are fixedly connected to the strip (11), the plurality of the folding connecting shafts (16) are respectively matched with the plurality of the telescopic straps (14), and a sub-strip (17) and a main-strip (18) are arranged on the telescopic strap (14), the sub-strip (17) and the main-strip (18) are matched with each other.

3. A postoperative auxiliary nursing support device according to claim 2, characterized in that: The strip plate (11) and the mounting plate (1) are both fixedly connected with a rotating connecting tube (19), the side mounting frame (13) is provided with two rotating connecting holes (20), the two rotating connecting tubes (19) are respectively rotatably connected in the two rotating connecting holes (20), the two rotating connecting tubes (19) are both threadedly connected with a threaded pressing nut (21), and the side mounting frame (13) is provided with two friction ring pressing surfaces (22), the two friction ring pressing surfaces (22) are respectively matched with the two threaded pressing nuts (21).

4. The postoperative auxiliary nursing support device according to claim 3, characterized in that: A rotating shaft (23) is fixedly connected to the bottom end of the rotating main frame (2), a rotating hole (24) is provided on the mounting plate (1), and the rotating shaft (23) is rotatably connected in the rotating hole (24).

5. The postoperative auxiliary nursing support device according to claim 4, characterized in that: The pressure drive assembly comprises a winding bag (25), an enlarged groove (26) is arranged in the rotating hole (24), an outer winding head of the winding bag (25) is fixedly connected in the enlarged hole, and an inner winding head of the winding bag (25) is fixedly connected to the rotating shaft (23), and a conical disc spring (27) is fixedly connected to the bottom end of the rotating shaft (23), and the conical disc spring (27) is fixedly connected in the rotating hole (24).

6. The postoperative auxiliary nursing support device according to claim 5, characterized in that: The air pressure control assembly comprises a first hand-held frame (28) and a second hand-held frame (29), the first hand-held frame (28) and the second hand-held frame (29) are rotatably connected via a central axis frame (30), the first hand-held frame (28) and the second hand-held frame (29) are both fixedly connected to an end connecting frame (31), the two end connecting frames (31) are respectively fixedly connected to a first air bag (32) and a second air bag (33), the five elastic air bags (10) are all connected to the first air bag (32), the winding bag (25) is connected to the second air bag (33), the first hand-held frame (28) and the second hand-held frame (29) are both slidably connected to a first sliding frame (34) and a second sliding frame (35), the first sliding frame (34) and the second sliding frame (35) are respectively matched with the first air bag (32) and the second air bag (33).

7. The postoperative auxiliary nursing support device according to claim 6, characterized in that: The first airbag (32) is connected to a main pipeline (36), the main pipeline (36) is connected to five branch pipelines (37), the five branch pipelines (37) are respectively connected to the five elastic airbags (10), and the second airbag (33) is connected to a guide pipeline (38), and the guide pipeline (38) is connected to the winding bag (25).

8. The postoperative auxiliary nursing support device according to claim 7, characterized in that: The five rotating cylinders (5) are all fixedly connected to outer notch communication rings (40), and the five outer notch communication rings (40) are respectively connected to the five elastic airbags (10). The five supporting cylinders are all fixedly connected to inner notch communication rings (39), and the five inner notch communication rings (39) are respectively connected to the five branch pipelines (37). The five inner notch communication rings (39) are respectively rotatably connected to the five outer notch communication rings (40).

9. The postoperative auxiliary nursing support device according to claim 8, characterized in that: An intelligent computer is installed at the top of the strip board (11), and airflow sensors are installed on the main pipeline (36) and the guide pipeline (38), and both of the airflow sensors are electrically connected to the intelligent computer.

10. The postoperative auxiliary nursing support device according to claim 9, characterized in that: An arc groove (41) is provided at the bottom end of the rotating main body frame (2), and the arc groove (41) matches the arc-shaped rack (7).

Citation Information

Patent Citations

  • Postoperative auxiliary nursing supporting device

    CN119015070A