Rehabilitation nursing device
By designing a rehabilitation and nursing device with switchable states, the problem of limited use of existing devices is solved, and flexible adaptation and practical improvements are achieved at different rehabilitation stages.
Patent Information
- Application Number
- CN202422133853.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-09-27
- Filing Date
- 2024-09-02
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-09-02
AI Technical Summary
After the patient's recovery is better, the existing walking rehabilitation nursing device has a limited scope of use and requires additional purchase of devices, which leads to inconvenience in use.
A rehabilitation and care device is designed, including main rod, secondary rod, connecting frame and handrail rod. The state switching between the connecting frame and auxiliary frame is suitable for different rehabilitation stages. It provides large support in the initial stage and converts it into an L-shaped crutch shape in the later stage to improve practicality.
It realizes flexible adaptation at different stages of rehabilitation, provides strong support in the early stage, and converts it into a crutch-like shape in the later stage, reducing the footprint and improving the practicality and applicability of the device.
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Figure CN223287362U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of auxiliary devices, specifically to rehabilitation nursing devices. Background Art
[0002] With the continuous development and progress of modern society and technology, the medical industry has achieved one success after another, which undoubtedly has greatly improved people's health level. Nowadays, medical equipment is becoming more and more advanced, and the ways to solve people's pain are becoming easier. After treating patients with leg injuries, patients need to undergo rehabilitative walking training. During the training, corresponding rehabilitation nursing devices are used for auxiliary training.
[0003] Existing walking rehabilitation nursing devices are mostly in a frame shape to support the patient's body. However, this type of device is mostly suitable for the initial or middle stage of rehabilitation. When the patient's rehabilitation condition is better, a cane is needed for assisted walking, and the above device is no longer needed for assistance. As a result, the patient still needs to purchase an additional rehabilitation device, making the application range of existing walking rehabilitation nursing devices relatively limited. Therefore, this application provides a rehabilitation nursing device to improve this problem. Summary of the Invention
[0004] The purpose of this application is to provide a rehabilitation nursing device to solve the problems in the above background.
[0005] To achieve the above purpose, this application specifically adopts the following technical solutions:
[0006] A rehabilitation nursing device, comprising:
[0007] Two main rods, which are used to support the patient, and arc cavities are provided on the main rods;
[0008] Two auxiliary rods, arc cavities are also provided on the auxiliary rods, and the auxiliary rods are used to support the patient;
[0009] A connecting frame, installed on the main rod, and the connecting frame is used to connect the main rod and the auxiliary rod;
[0010] An auxiliary frame, installed on the main rod, the auxiliary frame is in a U shape, and the auxiliary frame is used to connect the main rod and the auxiliary rod and keeps the distance between the two main rods unchanged;
[0011] Among them, the connecting frame and the auxiliary frame have a first state and a second state. When the connecting frame and the auxiliary frame are in the first state, they are used to connect the main rod and the auxiliary rod. When the connecting frame and the auxiliary frame are in the second state, they are stored in the arc cavity;
[0012] The handrail is installed between the main rod and the auxiliary rod. When the connecting frame and the auxiliary frame are in the second state, the handrail is used to connect one of the main rods with one of the auxiliary rods. At this time, the axis of the handrail is perpendicular to the axis of the main rod.
[0013] Furthermore, the connecting frame includes:
[0014] A connecting block is installed in the arc cavity on the main rod, and a connecting rod is hinged on the connecting block, and the connecting rod is used to connect the auxiliary rod;
[0015] A connecting hole is provided on the auxiliary rod, and is used to insert the end of the connecting rod. A connecting bolt is installed on the auxiliary rod. When the connecting frame is in the first state, the connecting bolt is threadedly connected to the connecting rod. When the connecting frame is in the second state, the connecting rod is rotated to be accommodated in the arc cavity.
[0016] Furthermore, a positioning block is installed on the connecting block, and a positioning hole for inserting the positioning block is opened in the arc cavity of the main rod.
[0017] Furthermore, the auxiliary frame includes:
[0018] An auxiliary block is installed in the arc cavity on the main rod, and an auxiliary rod is hinged on the auxiliary block, and the auxiliary rod is used to connect the auxiliary rod;
[0019] An auxiliary hole is provided on the auxiliary rod, and is used to insert the end of the auxiliary rod. An auxiliary bolt is installed on the auxiliary rod, and the auxiliary bolt is threadedly connected to the auxiliary rod;
[0020] An accommodating cavity is provided on the auxiliary rod, wherein a support rod is hingedly connected in the accommodating cavity, and the support rod is used to connect the two auxiliary rods;
[0021] Among them, when the auxiliary frame is in the first state, the auxiliary rod is connected to the sub-rod, and the two support rods are also connected to each other. When the auxiliary frame is in the second state, the support rod is received in the accommodating cavity when rotating and the auxiliary rod is received in the arc cavity.
[0022] Furthermore, a splint is movably mounted on one of the support rods, there are two splints, the splints are connected by a connecting spring, a protrusion is mounted on the free end of the splint, and a receiving hole for accommodating the protrusion is opened on the other support rod.
[0023] Furthermore, the handrail comprises:
[0024] a half-shell, mounted on the main rod by bolts, and having a handle mounted on the half-shell;
[0025] The connecting shell is installed on the auxiliary rod. The connecting shell is installed with a connecting cylinder. The half shell is installed with a threaded rod that is threadedly matched with the connecting cylinder.
[0026] Further, a threaded block is installed on one of the handles, and a threaded hole that is in threaded fit with the threaded block is provided on the other handle.
[0027] Further, a plurality of rubber rings are installed on the handle so as to form a concave cavity for placing the patient's fingers on the handle.
[0028] The beneficial effects of the present application are as follows:
[0029] In the present application, the main rod and the auxiliary rod are connected by the connecting frame and the auxiliary frame, and due to the U-shaped opening thereof, the patient can be located between the main rod and the auxiliary rod. In the initial stage of rehabilitation, the main rod and the auxiliary rod are connected to provide a relatively large supporting strength for the patient. When the patient gradually recovers, the connecting frame and the auxiliary frame are retracted into the arc cavity, and through the cooperation of the handrail rod, an L-shaped walking stick shape is formed among the main rod, the auxiliary rod and the handrail rod to continue to provide assistance for the patient, thereby improving the practicability of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 is a schematic three-dimensional structure diagram of the present application;
[0031] Figure 2 is a schematic three-dimensional structure diagram of the present application when used as a walking stick;
[0032] Figure 3 is the present application Figure 1 exploded view of a part of the structure;
[0033] Figure 4 is the present application Figure 1 exploded view of another part of the structure;
[0034] Figure 5 is the present application Figure 2 exploded view of a part of the structure;
[0035] Figure 6 is the present application Figure 2 exploded view of another part of the structure; <了
[0036] Figure 7 is a schematic diagram of the support rod and the splint structure of the present application.
[0037] Reference numerals: 1, main rod; 101, arc cavity; 2, connecting frame; 201, connecting block; 202, connecting rod; 203, connecting hole; 204, connecting bolt; 3, auxiliary frame; 301, auxiliary block; 302, auxiliary rod; 303, auxiliary hole; 304, auxiliary bolt; 305, accommodating cavity; 306, support rod; 4, handrail rod; 401, half housing; 402, handle; 403, threaded block; 404, threaded hole; 405, connecting shell; 406, connecting cylinder; 407, threaded rod; 5, sub-rod; 6, positioning block; 7, positioning hole; 8, clamping plate; 9, connecting spring; 10, convex block; 11, accommodating hole; 12, rubber ring; 13, grip rod. Detailed implementation manners
[0038] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present application.
[0039] As Figure 1 shown, a rehabilitation nursing device proposed in an embodiment of the present application includes:
[0040] The main rod 1, the number of which is two, is used to support the patient. The two main rods 1 are parallel to each other. An arc cavity 101 is provided on the main rod 1. The main rod 1 is semi-cylindrical, as Figure 1 shown;
[0041] The sub-rod 5, the number of which is two, also has an arc cavity 101 provided thereon. The two sub-rods 5 are parallel to each other. The sub-rod 5 is parallel to the main rod 1. The sub-rod 5 is used to support the patient. The sub-rod 5 has the same shape as the main rod 1. When the main rod 1 and the sub-rod 5 are in contact, the two form a complete cylindrical shape;
[0042] The connecting frame 2 is installed on the main rod 1. The connecting frame 2 is used to connect the main rod 1 and the sub-rod 5. The connecting frame 2 makes the main rod 1 and the sub-rod 5 connected but not in contact, so that there is a space for accommodating the patient's body between the main rod 1 and the sub-rod 5;
[0043] The auxiliary frame 3 is installed on the main rod 1. The auxiliary frame 3 is in a U shape. The auxiliary frame 3 is used to connect the main rod 1 and the sub-rod 5 and the auxiliary frame 3 makes the distance between the two main rods 1 remain unchanged. Through the cooperation of the auxiliary frame 3, after the main rod 1 and the sub-rod 5 are connected, a U-shaped frame body is formed, as Figure 1 shown, for more stable support of the patient, making the device applicable to patients in the middle and early stages of rehabilitation;
[0044] Among them, the connecting frame 2 and the auxiliary frame 3 have a first state and a second state. When the connecting frame 2 and the auxiliary frame 3 are in the first state, the connecting frame 2 and the auxiliary frame 3 are used to connect the main rod 1 and the auxiliary rod 5. At this time, the device is suitable for patients in the middle stage of rehabilitation. When the connecting frame 2 and the auxiliary frame 3 are in the second state, the connecting frame 2 and the auxiliary frame 3 are accommodated in the arc cavity 101. At this time, when the main rod 1 and the auxiliary rod 5 are connected, the arc cavity 101 on them will accommodate the connecting frame 2 and the auxiliary frame 3, so that the shape of the main rod 1 and the auxiliary rod 5 when connected is cylindrical;
[0045] The handrail rod 4 is installed between the main rod 1 and the auxiliary rod 5. When the connecting frame 2 and the auxiliary frame 3 are in the second state, the handrail rod 4 is used to connect one of the main rods 1 and one of the auxiliary rods 5. Any one of the main rods 1 and one of the auxiliary rods 5 can be connected. At this time, the axis of the handrail rod 4 is perpendicular to the axis of the main rod 1. At this time, the main rod 1 and the auxiliary rod 5 form a cylindrical shape, as Figure 2 shown. The handrail rod 4 is on it, so that the device is in an L shape at this time and can be used as a walking stick. When in use, the other set of idle main rod 1 and auxiliary rod 5 are connected to reduce the floor area and then stored. When the connecting frame 2 and the auxiliary frame 3 are in the first state, the handrail rod 4 is used to keep the distance between the two main rods 1 unchanged. When the connecting frame 2 and the auxiliary frame 3 are in the second state, the device is in the shape of a walking stick and is suitable for patients in the later stage of rehabilitation to use;[[ID=B]]
[0046] Compared with the prior art, the main rod 1 and the auxiliary rod 5 are connected by the connecting frame 2 and the auxiliary frame 3. Through the U-shaped opening, the patient can be located between the main rod 1 and the auxiliary rod 5. In the initial stage of rehabilitation, the main rod 1 and the auxiliary rod 5 are connected to provide greater support strength for the patient. When the patient gradually recovers, the connecting frame 2 and the auxiliary frame 3 are accommodated in the arc cavity 101, and through the cooperation of the handrail rod 4, an L-shaped walking stick is formed between the main rod 1, the auxiliary rod 5 and the handrail rod 4 to continue to provide assistance for the patient, improving the practicability of the device.
[0047] As Figure 3 、 Figure 4 and Figure 6 shown, in some embodiments, the connecting frame 2 includes: ]>
[0048] The connecting block 201 is installed in the arc cavity 101 on the main rod 1. A connecting rod 202 is hinged on the connecting block 201. The connecting rod 202 is used to connect the auxiliary rod 5. A connecting block 201 and a connecting rod 202 are installed on each main rod 1. When the connecting frame 2 is in the first state, the distance between the main rod 1 and the auxiliary rod 5 is the sum of the lengths of the connecting block 201 and the connecting rod 202;
[0049] The connecting hole 203 is provided on the auxiliary rod 5. The connecting hole 203 is used to insert the end of the connecting rod 202. A connecting bolt 204 is installed on the auxiliary rod 5. The diameter of the end of the connecting bolt 204 facing the outside of the auxiliary rod 5 is larger than the diameter of the connecting hole 203, and is used to cover the connecting hole 203. When connecting, the end of the connecting rod 202 is inserted into the connecting hole 203. At this time, the connecting bolt 204 is connected to the end of the connecting rod 202, so that the connection between the connecting rod 202 and the auxiliary rod 5 is tighter, which increases the stability of the device when in use.
[0050] When the connecting frame 2 is in the first state, the connecting bolt 204 is threadedly connected to the connecting rod 202. When the connecting frame 2 is in the second state, the connecting rod 202 is rotated to be accommodated in the arc cavity 101. Figure 6 As shown, the connecting rod 202 is then accommodated. At this time, the two connecting frames 2 are respectively accommodated in the arc cavities 101 on the two main rods 1 to complete the storage, so that when the main rod 1 is used as a crutch, the periphery is relatively smooth, reducing the possibility of obstruction to the patient.
[0051] like Figure 3 As shown, in some embodiments, a positioning block 6 is installed on the connecting block 201, and a positioning hole 7 for inserting the positioning block 6 is opened in the arc cavity 101 of the main rod 1. The connecting block 201 and the main rod 1 are detachably connected through the cooperation of the positioning block 6 and the positioning hole 7. When in use, it is convenient to disassemble and pack the entire device. During transportation or when the patient is fully recovered, the device can be disassembled and then stored, reducing the space occupancy of the device.
[0052] like Figure 3 、 Figure 4 and Figure 5 As shown, in some embodiments, the auxiliary frame 3 includes:
[0053] The auxiliary block 301 is installed in the arc cavity 101 on the main rod 1. The auxiliary rod 302 is hinged on the auxiliary block 301. The auxiliary rod 302 is used to connect with the auxiliary rod 5;
[0054] An auxiliary hole 303 is provided on the auxiliary rod 5. The auxiliary hole 303 is used to insert the end of the auxiliary rod 302. An auxiliary bolt 304 is installed on the auxiliary rod 5. The auxiliary bolt 304 is threadedly connected to the auxiliary rod 302. The shapes and fit between the auxiliary block 301, the auxiliary rod 302, the auxiliary hole 303 and the auxiliary bolt 304 are the same as the shapes and fit between the connecting block 201, the connecting rod 202, the connecting hole 203 and the connecting bolt 204.
[0055] The accommodating cavity 305 is opened on the auxiliary rod 302. A support rod 306 is hinged in the accommodating cavity 305. The support rod 306 is used to connect two auxiliary rods 302. Compared with the connecting rod 202, an additional accommodating cavity 305 is opened on the auxiliary rod 302. When the auxiliary frame 3 is in the second state, the accommodating cavities 305 on the two auxiliary rods 302 are oppositely opened. At this time, the support rod 306 is rotated out of the accommodating cavity 305 and the two are connected, so that the auxiliary frame 3 is in a U shape;
[0056] Moreover, the auxiliary block 301 also has a positioning block 6. The positioning block 6 on the auxiliary block 301 is used to be inserted into the connecting hole 203 on the auxiliary rod 5, and the auxiliary rod 302 is accommodated on the auxiliary rod 5, so that the auxiliary rod 302 and the connecting rod 202 are separately accommodated, increasing the utilization of the space of the arc cavity 101 and facilitating the accommodation of the two. A positioning hole 7 for installing the positioning block 6 on the auxiliary block 301 is also opened on the main rod 1, which is convenient for determining the position of the auxiliary frame 3;
[0057] Among them, when the auxiliary frame 3 is in the first state, the auxiliary rod 302 is connected to the auxiliary rod 5, and the two auxiliary rods 302 are also connected to each other through the support rod 306. When the auxiliary frame 3 is in the second state, the support rod 306 is rotated and accommodated in the accommodating cavity 305, and then the auxiliary rod 302 is rotated so that the auxiliary rod 302 is accommodated in the arc cavity 101, as Figure 5 shown;
[0058] During storage, the connection between the support rods 306 is released, and they are rotated back into the accommodating cavity 305. The connection between the auxiliary bolt 304 and the auxiliary rod 302 is released, and the auxiliary rod 302 is pulled out of the auxiliary hole 303. Then, the auxiliary block 301 is disassembled from the main rod 1. The auxiliary block 301 is inserted into the connecting hole 203 on the auxiliary rod 5 through the positioning block 6. At this time, the auxiliary rod 302 is rotated so that it is accommodated by the arc cavity 101, as Figure 5 shown, so that there are no obvious protrusions around the auxiliary rod 5, reducing the possibility of blocking the patient when the device is used as a cane.
[0059] As Figure 7As shown, in some embodiments, a splint 8 is movably installed on one of the support rods 306, and the splint 8 can rotate and slide on the support rod 306. There are two splints 8, which are connected by a connecting spring 9. A protrusion 10 is installed on the free end of the splint 8, and a receiving hole 11 for accommodating the protrusion 10 is opened on the other support rod 306. The elastic deformation of the connecting spring 9 allows the distance between the two splints 8 to change. When the two support rods 306 need to be connected, the two support rods 306 are first rotated out of the accommodating cavity 305 so that the ends of the two support rods 306 are aligned, the splint 8 is rotated and pulled so that the two splints 8 move away from each other, and the protrusion 10 is rotated to align with the accommodating hole 11, and then the splint 8 is released. The splint 8 is reset by the reset of the connecting spring 9, so that the protrusion 10 is inserted into the accommodating hole 11, completing the connection between the two support rods 306, thereby increasing the stability of the device during use.
[0060] like Figure 2 、 Figure 4 and Figure 5 As shown, in some embodiments, the handrail bar 4 includes:
[0061] The half-shell 401 is mounted on the main rod 1 by bolts. A handle 402 is mounted on the half-shell 401. There are two half-shells 401, each mounted on the two main rods 1. When in use, the two half-shells 401 are connected by the handle 402 so that the distance between the two main rods 1 remains unchanged.
[0062] The connecting shell 405 is installed on the auxiliary rod 5, and a connecting tube 406 is installed on the connecting shell 405. A threaded rod 407 that is threadedly matched with the connecting tube 406 is installed on the half-shell 401. When the connecting frame 2 and the auxiliary frame 3 are in the second state, after the connecting frame 2 and the auxiliary frame 3 are stored, the connecting shell 405 is moved close to the half-shell 401, and the half-shell 401 is connected to the connecting shell 405 through the threaded connection between the threaded rod 407 and the connecting tube 406, so that the main rod 1 and the auxiliary rod 5 are connected, and then one of the half-shells 401 is disassembled from the main rod 1, so that the cylinder formed by one of the main rods 1 and the auxiliary rod 5 remains connected to the half-shell 401. At this time, the handle 402 and the cylinder are L-shaped, which can be used as a crutch, increasing the practicality of the device.
[0063] like Figure 4 and Figure 5As shown, in some embodiments, a threaded block 403 is installed on one of the handles 402, and a threaded hole 404 that is threadedly matched with the threaded block 403 is opened on the other handle 402. The two handles 402 are detachably connected through the threaded block 403 and the threaded hole 404. When in use, when the handrail rod 4 is used to keep the distance between the main rod 1 unchanged, the two handles 402 are tightened so that the surfaces of the two are in a parallel state for use. When it is needed to be used as a crutch, the two handles 402 can be disassembled without disassembling the half cover 401 and the main rod 1, so that the device can form two crutches, further improving the practicality of the device.
[0064] like Figure 2 As shown, in some embodiments, a plurality of rubber rings 12 are installed on the handle 402 to form a concave cavity for placing the patient's fingers on the handle 402, and a grip rod 13 is installed on the handle 402. The rubber ring 12 is installed on the grip rod 13, and the axis of the grip rod 13 is parallel to the axis of the cylinder formed by the main rod 1 and the auxiliary rod 5. When in use, the patient holds the grip rod 13 and can place his forearm on the handle 402, so that the patient can use it for leverage during initial use. The rubber ring 12 increases the contact area between the patient's hand and the grip rod 13, thereby increasing the stability of the grip rod 13 when being held, thereby increasing the stability of the device when in use.
[0065] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present application. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application is not limited to the embodiments shown herein, but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. Rehabilitation nursing device, characterized in that, Comprising: There are two main rods (1), which are used to support the patient. An arc cavity (101) is provided on the main rod (1). There are two auxiliary rods (5), and an arc cavity (101) is also provided on the auxiliary rod (5). The auxiliary rod (5) is used to support the patient. A connecting frame (2) is installed on the main rod (1), and the connecting frame (2) is used to connect the main rod (1) and the auxiliary rod (5). An auxiliary frame (3) is installed on the main rod (1). The auxiliary frame (3) is in a U shape and is used to connect the main rod (1) and the auxiliary rod (5), and the auxiliary frame (3) keeps the distance between the two main rods (1) unchanged. Among them, the connecting frame (2) and the auxiliary frame (3) have a first state and a second state. When the connecting frame (2) and the auxiliary frame (3) are in the first state, the connecting frame (2) and the auxiliary frame (3) are used to connect the main rod (1) and the auxiliary rod (5). When the connecting frame (2) and the auxiliary frame (3) are in the second state, the connecting frame (2) and the auxiliary frame (3) are accommodated in the arc cavity (101). A handrail rod (4) is installed between the main rod (1) and the auxiliary rod (5). When the connecting frame (2) and the auxiliary frame (3) are in the second state, the handrail rod (4) is used to connect one of the main rods (1) and one of the auxiliary rods (5). At this time, the axis of the handrail rod (4) is perpendicular to the axis of the main rod (1).
2. The rehabilitation nursing device according to claim 1, characterized in that: The connecting frame (2) includes: A connecting block (201) is installed in the arc cavity (101) on the main rod (1). A connecting rod (202) is hinged on the connecting block (201), and the connecting rod (202) is used to connect the auxiliary rod (5). A connecting hole (203) is provided on the auxiliary rod (5), and the connecting hole (203) is used to insert the end of the connecting rod (202). A connecting bolt (204) is installed on the auxiliary rod (5). When the connecting frame (2) is in the first state, the connecting bolt (204) is threadedly connected to the connecting rod (202). When the connecting frame (2) is in the second state, the connecting rod (202) rotates to be accommodated in the arc cavity (101).
3. The rehabilitation nursing device according to claim 2, characterized in that: A positioning block (6) is installed on the connecting block (201), and a positioning hole (7) for inserting the positioning block (6) is provided in the arc cavity (101) of the main rod (1).
4. The rehabilitation nursing device according to claim 3, characterized in that: The auxiliary frame (3) includes: An auxiliary block (301) is installed in the arc cavity (101) on the main rod (1). An auxiliary rod (302) is hinged on the auxiliary block (301), and the auxiliary rod (302) is used to connect the auxiliary rod (5). An auxiliary hole (303) is provided on the auxiliary rod (5), and the auxiliary hole (303) is used to insert the end of the auxiliary rod (302). An auxiliary bolt (304) is installed on the auxiliary rod (5), and the auxiliary bolt (304) is threadedly connected to the auxiliary rod (302). A receiving cavity (305) is provided on the auxiliary rod (302), and a support rod (306) is hinged in the receiving cavity (305). The support rod (306) is used to connect the two auxiliary rods (302). When the auxiliary frame (3) is in a first state, the auxiliary rod (302) is connected to the auxiliary rod (5), and the two support rods (306) are also connected to each other. When the auxiliary frame (3) is in a second state, the support rod (306) is received in the accommodating cavity (305) when rotating, and the auxiliary rod (302) is received in the arc cavity (101).
5. The rehabilitation nursing device according to claim 4, characterized in that: A splint (8) is movably mounted on one of the support rods (306), and there are two splints (8). The splints (8) are connected by a connecting spring (9). A protrusion (10) is mounted on the free end of the splint (8), and a receiving hole (11) for receiving the protrusion (10) is provided on the other support rod (306).
6. The rehabilitation nursing device according to claim 5, characterized in that: The handrail (4) comprises: A half shell (401) is mounted on the main rod (1) via bolts, and a handle (402) is mounted on the half shell (401); A connecting shell (405) is mounted on the auxiliary rod (5), a connecting cylinder (406) is mounted on the connecting shell (405), and a threaded rod (407) threadedly matched with the connecting cylinder (406) is mounted on the half shell (401).
7. The rehabilitation nursing device according to claim 6, characterized in that: A threaded block (403) is mounted on one of the handles (402), and a threaded hole (404) threadably matched with the threaded block (403) is provided on the other handle (402).
8. The rehabilitation nursing device according to claim 6, characterized in that: A plurality of rubber rings (12) are installed on the handle (402) so as to form a cavity on the handle (402) for placing the patient's fingers.