Auxiliary tool for exercising upper limbs on affected side of hemiplegic patient

By designing auxiliary tooling for upper limb exercises on the affected side of hemiplegia patients, using elastic connectors and support members, the difficulty of lifting arms on the hemiplegia patients during rehabilitation training is solved, and gradual rehabilitation training and daily care of the affected hands are achieved, and the rehabilitation effect of upper limbs on the affected side is improved.

CN223143763UActive Publication Date: 2025-07-25THE UNIVERSITY OF HONG KONG SHENZHEN HOSPITAL
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Patent Information

Application Number
CN202421829262.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-07-25
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

When hemiplegia exercises on the affected upper limbs, it is difficult for patients with hemiplegia to effectively complete the lifting of their arms, which has problems such as slipping hands and not tight grip, which affects the effect of rehabilitation training.

Method used

A auxiliary tool for upper limb exercise on the affected side of hemiplegia patients is designed, including left-hand gloves, right-hand gloves and optional elastic connectors. The elastic coefficients of the elastic connector are different. They are used to connect the left-hand gloves and right-hand gloves to assist the patient in lifting his arms, and to stretch and contract the patient's hands by setting up multiple elastic support members and telescopic components.

Benefits of technology

The patient can gradually train the upper limbs on the affected side during the rehabilitation process, avoid over-reliance on the healthy upper limbs, improve the recovery progress of the affected upper limbs, and prevent contractures from affected hands in daily life, providing a variety of auxiliary functions.

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Abstract

The utility model discloses an auxiliary tool for training the upper limbs of the affected side of a hemiplegic patient. The auxiliary tool comprises a left hand glove, a right hand glove and a plurality of elastic connecting pieces selectively arranged between the left hand glove and the right hand glove. The elastic coefficients of the plurality of elastic connecting pieces are different; the two ends of the elastic connecting piece are detachably connected with the left hand glove and the right hand glove respectively. The rehabilitation training device can assist a patient in carrying out double-arm upward-lifting exercise in different stages of rehabilitation training in a targeted mode.
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Description

Technical Field

[0001] This application relates to the technical field of medical devices, and particularly to an auxiliary tool for exercising the affected upper limb of hemiplegic patients. Background Art

[0002] Common movement function disorders in hemiplegic patients are mainly due to the loss of control of the lower centers by the higher centers of the brain and the loss of inhibition of the original reflexes of the lower centers. During the rehabilitation training of hemiplegic patients, it is necessary to exercise the affected limb to improve the function and coordination ability of the affected limb.

[0003] During the process of exercising the upper limb of the affected limb, there is an exercise action where the healthy hand (abbreviated as the healthy hand) needs to pull the affected hand (abbreviated as the affected hand), and the affected upper limb is lifted by pulling the affected upper limb through the hand, presenting an overall shape of both arms being lifted (abbreviated as the double-arm lifting action). However, there are certain difficulties for patients in completing the double-arm lifting action. For example, patients cannot effectively master the way of exerting force and control their affected hand and affected limb, so situations such as the hand slipping and not gripping tightly often occur. Utility Model Content

[0004] The technical problem to be solved by this application is to provide an auxiliary tool for exercising the affected upper limb of hemiplegic patients.

[0005] The technical solution adopted by this application to solve its technical problem is:

[0006] Construct an auxiliary tool for exercising the affected upper limb of hemiplegic patients, including a left hand glove, a right hand glove, and a plurality of elastic connectors that can be selectively arranged between the left hand glove and the right hand glove; the elastic coefficients of the plurality of elastic connectors are different; the two ends of the elastic connector are detachably connected to the left hand glove and the right hand glove respectively.

[0007] In some embodiments, fitting parts are provided on the outer sides of the palm sides of the left hand glove and the right hand glove, and the fitting parts and the left hand glove and the right hand glove respectively define fitting holes, and the two ends of the elastic connector are respectively detachably inserted into the fitting holes of the left hand glove and the fitting holes of the right hand glove.

[0008] In some embodiments, the elastic connector includes hooks at both ends.

[0009] In some embodiments, it further includes a plurality of longitudinally long elastic support members, and longitudinally long fitting spaces are respectively formed along the extending direction at each finger of the left hand glove and the right hand glove, and the elastic support members are detachably arranged in the fitting spaces.

[0010] In some embodiments, the elastic support member is in the shape of a longitudinally elongated straight plate, and the assembly spaces are respectively arranged on the back sides of the left glove and the right glove.

[0011] In some embodiments, it further includes a telescopic assembly for pulling the elastic support member in the assembly space to bend. Fittings are respectively arranged on the palm sides of the left glove and the right glove, and the fittings and the left glove and the right glove respectively define assembly holes; the telescopic assembly is detachably and movably inserted through the assembly holes, and is respectively detachably connected to the five fingers of the glove where the assembly holes are located.

[0012] In some embodiments, the telescopic assembly includes an operating member, five finger sleeves, and five connecting members; the five finger sleeves are respectively detachably sleeved on the fingertips of the five fingers of the left glove or the right glove; the first ends of the five connecting members are respectively connected to the five finger sleeves, and the second ends are all connected to the operating member; the operating member is detachably and movably inserted through the assembly hole.

[0013] In some embodiments, the connecting member is a longitudinally elongated elastic member.

[0014] In some embodiments, magic tapes are respectively arranged on the palm sides of the left glove and the right glove.

[0015] In some embodiments, it further includes a magnet, a magnetic induction probe, and an alarm electrically connected to the magnetic induction probe, and the magnet is arranged on the left glove and / or the right glove.

[0016] The hemiplegic patient's affected upper limb exercise assistance tooling constructed by implementing the present application has at least the following beneficial effects:

[0017] By setting the elastic connecting member in the present application, the connection between the left glove and the right glove can be realized. When the patient is exercising the action of raising both arms, the healthy hand can pull the affected hand up, realizing the action of raising both arms of the healthy upper limb and the affected upper limb, and avoiding the situation of hand slipping and inability to hold tightly during exercise, resulting in the inability to complete the action.

[0018] By providing a plurality of elastic connectors with different elastic coefficients in the present application, patients can select elastic connectors with different elastic coefficients according to their own rehabilitation exercise conditions at different stages of rehabilitation, so as to achieve targeted exercise. This can avoid the situation that during the rehabilitation training process, the patient's exercise of raising both arms depends too much on the healthy upper limb, which is not conducive to practicing the self-force of the affected upper limb and affects the rehabilitation progress of the affected limb. It also avoids the problem of difficult training caused by directly transitioning from the stage where the affected upper limb completely depends on the healthy upper limb to achieve the action of raising both arms to the stage where it completely does not depend on the healthy upper limb to achieve the action of raising alone without other intermediate transition stages, which is beneficial for the patient to gradually carry out the rehabilitation training of the affected upper limb. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present application will be further described below in conjunction with the drawings and embodiments. In the drawings:

[0020] Figure 1 is a partial structural schematic diagram of an auxiliary tool for exercising the affected upper limb of a hemiplegic patient according to an embodiment of the present application;

[0021] Figure 2 is Figure 1 a schematic diagram of the dorsal side structure of the right glove in

[0022] Figure 3 is Figure 1 an assembly structure schematic diagram of the right glove and the telescopic assembly in DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] In order to have a clearer understanding of the technical features, objectives, and effects of the present application, the specific embodiments of the present application will now be described in detail with reference to the drawings. In the following description, it should be understood that the orientation or positional relationships indicated by "front", "rear", "upper", "lower", "left", "right", "vertical", "horizontal", "bottom", "inner", "inside", "outer", etc. are based on the orientation or positional relationships shown in some of the drawings, and are constructed and operated in a specific orientation. It is only for the convenience of describing the technical solution of the present application, rather than indicating that the device or element referred to must have a specific orientation. Therefore, it should not be construed as a limitation to the present application.

[0024] It should also be noted that, unless otherwise clearly specified and limited, terms such as "installation", "connection", "attachment", "fixation", "setting" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components. When one component is referred to as "above" or "below" another component, the component can be "directly" or "indirectly" located above the other component, or there may also be one or more intermediate components. Terms such as "first", "second", etc. are only for the convenience of describing the technical solution of the present application, and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0025] In the following description, for the purpose of illustration rather than limitation, specific details such as specific system structures and technologies are presented to thoroughly understand the embodiments of the present application. However, those skilled in the art should clearly understand that the present application can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present application.

[0026] As Figure 1 shown, the present application constructs an upper limb exercise assistance tooling 1 for hemiplegic patients, which includes a left hand glove 10, a right hand glove 20, and a plurality of elastic connectors 30. Among them, the left hand glove 10 and the right hand glove 20 are respectively used to be worn on the left and right hands of the patient. The elastic coefficients of the plurality of elastic connectors 30 are different, and the plurality of elastic connectors 30 are available for the patient to select, and one of them is selectively arranged between the left hand glove 10 and the right hand glove 20. The elastic connector 30 can be detachably connected to the left hand glove 10 and the right hand glove 20 to facilitate the replacement of the elastic connector 30.

[0027] By setting the elastic connector 30, the present application can realize the connection between the left hand glove 10 and the right hand glove 20, so that when the patient performs the exercise of raising both arms, the healthy hand can pull the affected hand up, realizing the action of raising both arms of the healthy upper limb (hereinafter referred to as the healthy limb) and the affected upper limb (hereinafter referred to as the affected limb), and avoiding the situation of hand slipping and inability to hold tightly during exercise, resulting in the inability to complete the action.

[0028] In this application, by providing a plurality of elastic connectors 30 with different elastic coefficients, patients can make their own choices. Patients can select elastic connectors 30 with different elastic coefficients according to their own rehabilitation exercise conditions at different stages of rehabilitation.

[0029] For example, in the initial stage of rehabilitation training, the affected limb is difficult to exert force and almost completely relies on the healthy limb to achieve the action of lifting both arms. Therefore, at this time, an elastic connector 30 with a smaller elastic coefficient can be selected, and almost rely on the healthy limb to exert force to pull the affected hand to achieve the action of lifting both arms. As the rehabilitation training progresses, when the affected limb can gradually exert a certain amount of force under rehabilitation training, an elastic connector 30 with a certain elastic coefficient can be gradually replaced. At this time, in the process of performing the action of lifting both arms, in addition to relying on the healthy limb to exert force, the affected limb itself also needs to exert a certain amount of force to complete the action of lifting both arms.

[0030] In this application, by providing elastic connectors 30 with different elastic coefficients, it can be avoided that during the rehabilitation training process, patients rely too much on the healthy limb when performing the action of lifting both arms, which is not conducive to practicing the strength of the affected limb itself and affects the rehabilitation progress of the affected limb. It also avoids the problem of difficult training caused by directly transitioning from the stage where the affected limb completely relies on the healthy limb to achieve the action of lifting both arms to the stage where it completely does not rely on the healthy limb to achieve the action of lifting both arms without other intermediate transition stages, which is beneficial for patients to gradually carry out the rehabilitation training of the affected limb.

[0031] In some embodiments, fitting parts 80 are provided on the outer sides of the palm sides of the left glove 10 and the right glove 20. The fitting parts 80 respectively define fitting holes 81 with the left glove 10 and the right glove 20. Both ends of the elastic connector 30 are respectively detachably inserted into the fitting hole 81 of the left glove 10 and the fitting hole 81 of the right glove 20.

[0032] In this embodiment, the elastic connector 30 includes a main body 31 and two hooks 32. The main body 31 is an elastic member with a certain elastic coefficient. The two hooks 32 are respectively arranged at both ends of the main body 31 and are respectively used for detachably connecting with the left glove 10 and the right glove 20.

[0033] In the specific use process, first, select a suitable elastic connector 30 according to the patient's rehabilitation training progress. Hang the hooks 32 at both ends of the elastic connector 30 respectively in the fitting holes 81 of the left glove 10 and the right glove 20 to realize the connection between the elastic connector 30 and the left glove 10 and the right glove 20. Further, the patient wears the left glove 10 and the right glove 20 on both hands. At this time, the action of lifting both arms can be exercised by pulling with the healthy limb.

[0034] It should be understood that the main body 31 of the elastic connecting member 30 can be a longitudinally elongated strip structure, a longitudinally elongated rope structure, or an elastic component such as a spring, and no specific limitation is made here.

[0035] In this application, by providing two hooks 32 and arranging assembly holes 81 at the left glove 10 and the right glove 20, the quick disassembly and convenient disassembly between the elastic connecting member 30 and the left glove 10 and the right glove 20 can be achieved, which is beneficial to the use of patients.

[0036] In some other alternative embodiments, the assembly manner between the elastic connecting member 30 and the left glove 10 and the right glove 20 can also be achieved through Velcro. Or through holes are arranged at both ends of the elastic connecting member 30, and during use, the left glove 10 and the right glove 20 are respectively passed through the through holes, and the above effects can also be achieved.

[0037] In this embodiment, the fitting 80 is arc-shaped, and both ends are respectively connected to two spaced points of the gloves (collectively defined as the left glove 10 and the right glove 20, and will not be elaborated hereinafter), thereby defining the assembly hole 81 with the gloves.

[0038] It should be understood that the fitting 80 can be made of flexible material or rigid material, and no limitation is made here.

[0039] In some other alternative embodiments, the fitting 80 can also be set as an annular structure, installed on the gloves, and defining the assembly hole 81 by itself.

[0040] It should be understood that taking the elastic coefficient of the elastic connecting member 30 as an example, under standard test conditions (the initial lengths of the elastic connecting members 30 are the same), the tensile force (in pounds) that the elastic connecting member 30 can provide at a fixed length (the length change of the elastic connecting members 30 during stretching is the same) can be 5 pounds, 10 pounds, 15 pounds, 20 pounds, 25 pounds, 30 pounds, etc., or 3 pounds, 6 pounds, 9 pounds, 12 pounds, 15 pounds, 18 pounds, 21 pounds, 24 pounds, 27 pounds, 30 pounds, etc. There are many optional values, and no specific limitation is made here.

[0041] It should be understood that the elastic coefficients between multiple elastic connecting members 30 can be set at evenly spaced intervals or irregularly, and no limitation is made here either.

[0042] It should be understood that the length of the longitudinal main body 31 should ensure that during use, the healthy limb can pull up the affected limb through the connection of the elastic connector 30 to achieve the action of raising both arms. Therefore, its length should not be too long (for example, the length of the main body 31 exceeds the length of the patient's arm, so that during use, after the healthy limb of the patient is raised, the affected limb is still in a state of not being raised), etc., so as to achieve the action of raising both arms. The range of options is relatively large and is not specifically limited here.

[0043] It should be understood that the "outer side of the palm side" refers to the side of the palm side wall of the glove facing away from the arm side wall.

[0044] like Figure 2 As shown, in some embodiments, the hemiplegic upper limb exercise auxiliary tooling 1 further includes a plurality of longitudinal elastic support members 40 of different lengths. The left hand glove 10 and the right hand glove 20 are respectively formed with an assembly space 100 along the extension direction of the five fingers, and the assembly space 100 is longitudinally arranged. The plurality of elastic support members 40 are respectively detachably arranged in the assembly space 100.

[0045] By providing the elastic support member 40, the glove can have a certain supporting force. When worn on the patient's affected hand, the glove can stretch the affected hand, thereby achieving extension of the affected hand and preventing the affected hand from being in a contracted state.

[0046] In this embodiment, the upper limb exercise auxiliary tooling 1 for hemiplegic patients constructed in the present application can not only assist the affected limb in performing double-arm raising exercises, but also wear corresponding gloves on the affected hand in daily life to prevent contracture of the affected hand, thereby realizing multiple functions of assisting the rehabilitation of the upper limb on the affected side.

[0047] It is important to understand that Figure 2 For exemplary purposes only, it is shown that the back of the right hand glove 20 is provided with the assembly space 100. This does not mean that the back of the left hand glove 10 is not provided with the assembly space 100.

[0048] The present application provides five assembly spaces 100 on the left hand glove 10 and the right hand glove 20 respectively, and provides them along the extension direction of the five fingers, so that the elastic support member 40 can be selectively provided in the left hand glove 10 or the right hand glove 20, and can be applied to the patient's left hand or right hand. When only some fingers of the patient's hand are contracted, the elastic support member 40 can be specifically provided at the positions corresponding to some fingers, so as to improve the patient's use experience.

[0049] In this application, by detachably connecting the elastic connecting member 30 to the left - hand glove 10 and the right - hand glove 20 respectively, the left - hand glove 10 and the right - hand glove 20 can be used separately. During the period when the exercise of raising both arms is not required, the glove can be worn on the affected hand, and an elastic support member 40 is provided on the glove to play a role in daily stretching of the affected hand and prevent the affected hand from contracture.

[0050] It should be understood that the lengths of the elastic support members 40 can be the same or different. When they are set to different lengths, they can be correspondingly set according to the different lengths of the five fingers of the glove. When they are set to the same length, the length can be such that it can prevent the fingers from bending and contracting, and no further limitation is made here.

[0051] It should be understood that the number of the elastic support members 40 and the assembly spaces 100 is not limited here either. The number of assembly spaces 100 on each glove can be set to five, one for each finger, or can be set to ten, fifteen, twenty, etc., with multiple for each finger. When there are multiple for each finger, the number of assembly spaces 100 set at each finger can be the same or different. No limitation is made here.

[0052] The number of the elastic support members 40 can be equal to the sum of the number of assembly spaces 100 set on the left - hand glove 10 and the right - hand glove 20, can be greater than this number, or can be less than the sum of the number of assembly spaces 100 set on the left - hand glove 10 and the right - hand glove 20, and greater than or equal to the number of assembly spaces 100 set on the left - hand glove 10 or the right - hand glove 20. No limitation is made here.

[0053] The extension length of the assembly space 100 on the glove can only cover the finger part, or can extend from the finger part to the palm part. When its length extends from the finger part to the palm part, it can also play the role of preventing the metacarpophalangeal joint from bending and contracting.

[0054] In this embodiment, the elastic support member 40 is in the shape of a longitudinally long straight plate, and the assembly spaces 100 are respectively arranged on the dorsal sides of the left - hand glove 10 and the right - hand glove 20, and the length extends from the fingertip to the back of the hand.

[0055] It should be understood that "the dorsal sides of the left - hand glove 10 and the right - hand glove 20" can be understood as the positions corresponding to the five fingers on the lateral walls of the dorsal sides of the gloves in this embodiment. The assembly spaces 100 can be arranged on the outer wall surface or the inner wall surface of the lateral walls of the dorsal sides.

[0056] By setting the elastic support member 40 as a plate shape and arranging the assembly space 100 on the dorsal side, it can avoid the contact between the elastic support member 40 located in the assembly space 100 and the affected hand, and improve the patient's use experience.

[0057] In some other alternative embodiments, the elastic support member 40 may also be provided in other shapes such as rod-shaped, a shape corresponding to a finger, etc.

[0058] In some other alternative embodiments, the assembly space 100 may also be provided on the palm side, or at the side end where two adjacent fingers are in contact.

[0059] Referring together Figure 3 , in some embodiments, the upper limb exercise assistance tooling 1 for hemiplegic patients on the affected side further includes a telescopic assembly 50, which is used to pull the elastic support member 40 in the assembly space 100 to bend, so as to realize the exercise between the two actions of extending and contracting the affected hand.

[0060] Specifically, in this embodiment, the telescopic assembly 50 is detachably and movably inserted through the assembly hole 81, and is detachably connected to the five fingers of the glove where the assembly hole 81 is located respectively.

[0061] It should be understood that "the telescopic assembly 50 is detachably connected to the five fingers of the glove where the assembly hole 81 is located respectively". In this embodiment, it can be understood that when the telescopic assembly 50 is inserted through the assembly hole 81 on the left glove 10, the telescopic assembly 50 is detachably connected to the five fingers of the left glove 10 respectively. When the telescopic assembly 50 is inserted through the assembly hole 81 on the right glove 20, the telescopic assembly 50 is detachably connected to the five fingers of the right glove 20 respectively. Figure 3 The situation shown is only one of the possibilities.

[0062] Specifically, the telescopic assembly 50 includes an operating member 53, five finger sleeves 51 and five connecting members 52. Among them, the five finger sleeves 51 are respectively used to be detachably sleeved on the fingertips of the five fingers of the left glove 10 or the right glove 20. The five connecting members 52 are arranged in one-to-one correspondence with the five finger sleeves 51, and the first ends of the five connecting members 52 are respectively connected to the five finger sleeves 51. The second ends of the five connecting members 52 are all connected to the operating member 53. The operating member 53 is detachably and movably inserted through the assembly hole 81, and is used for the healthy hand of the patient to perform a pulling operation.

[0063] It should be understood that "at the fingertips of the five fingers" can be understood as any position of the distal interphalangeal joint (the finger joint away from the palm) of the five fingers in this embodiment, and no specific limitation is made here.

[0064] When specifically exercising the two actions of stretching and contracting the affected hand, first, the operating member 53 of the telescopic assembly 50 needs to be passed through the assembly hole 81 on the glove corresponding to the affected hand, and the five finger sleeves 51 are respectively sleeved on the five fingers of the glove corresponding to the affected hand. Further, when performing the contraction action, the healthy hand of the patient can pull the operating member 53 away from the side of the five fingers of the assembly hole 81, so that the five fingers are bent under the drive of the operating member 53 and the connecting member 52. When performing the stretching action, the healthy hand of the patient gradually reduces the pulling force on the operating member 53, so that the five fingers can rebound to the stretched state under the elastic force of the elastic support member 40 itself.

[0065] By providing the telescopic assembly 50, the upper limb exercise assistance tooling 1 for the affected side of hemiplegic patients constructed in the present application can not only assist the affected upper limb to perform the exercise of lifting both arms, but also assist the affected hand to perform stretching and contracting exercises, and can also be worn during daily life to prevent contracture of the affected hand, with multiple functions.

[0066] In the present application, by movably and detachably arranging the telescopic assembly 50 in the assembly hole 81, the number of components of the upper limb exercise assistance tooling 1 for the affected side of hemiplegic patients can be reduced. When performing the exercise of lifting both arms, the elastic connecting member 30 is connected by using the assembly hole 81, and when performing the stretching and contracting exercises of the affected hand, the telescopic assembly 50 is installed by using the assembly hole 81.

[0067] Further, in this embodiment, the connecting member 52 corresponding to each finger is a longitudinally long elastic member. To achieve the slow continuity of the change in the stretching and contracting exercise actions of the affected hand is beneficial for the patient to feel the action changes.

[0068] In some other alternative embodiments, the telescopic assembly 50 and the elastic connecting member 30 may not share the same assembly hole 81. For example, two fittings 80 are provided on the palm sides of the left glove 10 and the right glove 20, one is only used for passing through the hook 32 of the elastic connecting member 30, and the other is only used for passing through the telescopic assembly 50.

[0069] In some embodiments, the finger sleeve 51 can be in a ring shape and sleeved on the finger. The operating member 53 can be in a rope shape, a strip shape, etc., which is convenient for passing through the assembly hole 81 and at the same time convenient for the healthy hand of the patient to perform pulling and releasing operations.

[0070] In some other alternative embodiments, the finger sleeve 51 can also be set as a cap-shaped structure with one end closed and the other end through, and sleeved at the fingertip.

[0071] In some embodiments, the palm sides of the left glove 10 and the right glove 20 are respectively provided with Velcro (not shown in the figure).

[0072] By setting Velcro, the mutual connection between the left - hand glove 10 and the right - hand glove 20 can be realized, which is beneficial for the healthy hand of the patient to hold the affected hand. Moreover, the patient can also use the auxiliary tooling 1 for exercising the affected upper limb of hemiplegic patients to perform Bobath (a method for treating motor dysfunction caused by central nervous system injury) handshake exercises.

[0073] In some embodiments, the materials for making the left - hand glove 10 and the right - hand glove 20 can be silica gel or the like to ensure a good feel for the patient to use and a large frictional force, preventing the gloves from falling off the patient's hands.

[0074] When the materials for making the left - hand glove 10 and the right - hand glove 20 are fabrics or the like, a tightening structure (not shown in the figure) can be provided at the wrist of the glove, and Velcro can be provided along the circumferential direction of the outer side of the wrist. By pasting the tightening structure on the Velcro, the size of the opening at the wrist can be adjusted to adapt to the different hand sizes of different patients, improving the universality of the auxiliary tooling 1 for exercising the affected upper limb of hemiplegic patients.

[0075] Again, Figure 1 As shown, in some embodiments, the auxiliary tooling 1 for exercising the affected upper limb of hemiplegic patients further includes a magnet 90, a magnetic induction probe 60, and an alarm 70. Among them, the magnet 90 is provided on the left - hand glove 10 and / or the right - hand glove 20. The magnetic induction probe 60 is used to output an alarm signal to the alarm 70 when it senses the magnet 90. The alarm 70 is electrically connected to the magnetic induction probe 60 and is used to emit an alarm signal after receiving the alarm signal from the magnetic induction probe 60 to remind the patient that the movement is in place.

[0076] By setting the magnet 90, the magnetic induction probe 60, and the alarm 70, when the patient is performing the exercise of raising both arms, the patient can judge whether the movement is in place by himself without the assistance and supervision of other people.

[0077] Specifically, since the patient can use the auxiliary tooling 1 for exercising the affected upper limb of hemiplegic patients in different states, the installation position of the magnetic induction probe 60 can be flexibly set according to the specific situation of the patient and is not limited here. For example, when the patient lies flat on the bed, the magnetic induction probe 60 can be set at the head of the bed at a position corresponding to the height of the magnet 90 when the patient raises both arms. When the patient is in a standing or sitting - lying state, the magnetic induction probe 60 can be set on the wall at a position corresponding to the height of the magnet 90 when the patient raises both arms.

[0078] Taking the example of a patient lying flat in bed, in the specific usage process, first, the patient needs to complete a standard double-arm raising movement under the guidance of medical staff. And in this movement, the magnetic induction probe 60 is set at a position corresponding to the magnet 90 (such as on the wall at the head of the bed at the corresponding height, etc.) by the medical staff or other on-site personnel.

[0079] Further, finely adjust the setting position of the magnetic induction probe 60 until the alarm 70 emits an alarm signal.

[0080] Further, the patient repeats the double-arm raising movement by himself / herself. Each time the movement makes the alarm 70 emit an alarm signal, it is regarded as the movement being in place.

[0081] It should be understood that the alarm signal of the alarm 70 can be a sound signal and / or a light signal, which is not limited here.

[0082] In some other alternative embodiments, the magnetic induction probe 60 and the magnet 90 can also be replaced by other sensors such as infrared sensors, ultrasonic sensors, and photoelectric sensors. Details are not described here again.

[0083] It can be understood that the above embodiments only represent some implementation manners of the present application. The description is relatively specific and detailed, but it cannot be understood as a limitation to the patent scope of the present application; it should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, the above embodiments or technical features can be freely combined, and several deformations and improvements can also be made, which all belong to the protection scope of the present application, that is, the embodiments described in "in some embodiments" can be freely combined with any of the above or below embodiments; therefore, all equivalent transformations and modifications made to the scope of the claims of the present application should fall within the scope covered by the claims of the present application.

Claims

1. An upper limb exercise assistance tooling for the affected side of hemiplegic patients, characterized in that, It includes a left - hand glove (10), a right - hand glove (20), and a plurality of elastic connecting members (30) that are selectively disposed between the left - hand glove (10) and the right - hand glove (20); the elastic coefficients of the plurality of elastic connecting members (30) are different; both ends of the elastic connecting member (30) are detachably connected to the left - hand glove (10) and the right - hand glove (20) respectively.

2. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 1, characterized in that, On the outer sides of the palm sides of the left - hand glove (10) and the right - hand glove (20), fitting members (80) are provided. The fitting members (80) and the left - hand glove (10) and the right - hand glove (20) respectively define fitting holes (81). Both ends of the elastic connecting member (30) are respectively detachably inserted into the fitting hole (81) of the left - hand glove (10) and the fitting hole (81) of the right - hand glove (20).

3. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 2, wherein The elastic connecting member (30) includes hooks (32) located at both ends.

4. The upper limb exercise assisting tooling for the affected side of hemiplegic patients according to claim 1, wherein It further includes a plurality of longitudinally - extending elastic support members (40). In each finger of the left - hand glove (10) and the right - hand glove (20), a longitudinally - extending fitting space (100) is formed along its extending direction. The elastic support members (40) are detachably disposed in the fitting space (100).

5. The upper limb exercise assisting tooling for the affected side of hemiplegic patients according to claim 4, characterized in that, The elastic support member (40) is in the shape of a longitudinally - extending straight plate, and the fitting spaces (100) are respectively disposed on the back - hand sides of the left - hand glove (10) and the right - hand glove (20).

6. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 4, characterized in that It further includes a telescopic assembly (50) for pulling the elastic support member (40) in the fitting space (100) to bend. On the palm sides of the left - hand glove (10) and the right - hand glove (20), fitting members (80) are provided. The fitting members (80) and the left - hand glove (10) and the right - hand glove (20) respectively define fitting holes (81); the telescopic assembly (50) is detachably and movably inserted into the fitting holes (81), and is respectively detachably connected to the five fingers of the glove where the fitting holes (81) are located.

7. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 6, wherein The telescopic assembly (50) includes an operating member (53), five finger sleeves (51), and five connecting members (52); the five finger sleeves (51) are respectively detachably sleeved on the fingertips of the five fingers of the left - hand glove (10) or the right - hand glove (20); the first ends of the five connecting members (52) are respectively connected to the five finger sleeves (51), and the second ends are all connected to the operating member (53); the operating member (53) is detachably and movably inserted into the fitting hole (81).

8. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 7, characterized in that, The connecting member (52) is a longitudinally - extending elastic member.

9. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 1, wherein On the palm sides of the left - hand glove (10) and the right - hand glove (20), Velcro is respectively provided.

10. The upper limb exercise assistance tooling for the affected side of hemiplegic patients according to claim 1, wherein It further includes a magnet (90), a magnetic induction probe (60), and an alarm (70) electrically connected to the magnetic induction probe (60). The magnet (90) is disposed on the left - hand glove (10) and / or the right - hand glove (20).