CN213130611U - Flexor tendon injury rehabilitation brace - Google Patents
Flexor tendon injury rehabilitation brace Download PDFInfo
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- CN213130611U CN213130611U CN202021335310.6U CN202021335310U CN213130611U CN 213130611 U CN213130611 U CN 213130611U CN 202021335310 U CN202021335310 U CN 202021335310U CN 213130611 U CN213130611 U CN 213130611U
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- elastic rib
- fixedly connected
- stall
- sheath
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Abstract
The utility model relates to a flexor tendon injury rehabilitation brace, paste including layer board, elasticity dactylotheca, fixed bolster and magic, the layer board includes sheath and backplate, fixed connection on the sheath the magic is pasted, and the fixed bolster includes first support, second support and third support, and first support fixed mounting just is located boat bone department position on the backplate, second support fixed mounting be in sheath and backplate junction just are located palm ulna one side palm striae department position, and third support fixed mounting just is located forearm central line half department position on the sheath, and the elasticity dactylotheca includes thumb stall, index finger cover, well dactylotheca, ring dactylotheca and little dactylotheca, the first elastic muscle of fixedly connected with on the thumb cover. The utility model provides a recovered brace of flexor tendons damage of hand through the process of initiative extension, passive bucking, makes the flexor tendons produce and slides, promotes joint activity, extensor tendon adhesion and joint stiffness that reduction that can furthest arouse because of long-term braking.
Description
Technical Field
The utility model relates to a tendon rehabilitation device correlation technique field, concretely relates to flexor tendon injury rehabilitation brace.
Background
Generally, in clinic, the brace is worn to protect the patient after tendon injury such as flexor longissimus, flexor superficial muscles, flexor longissimus, flexor superficial muscles and flexor deep muscles above the wrist. The existing brace mainly plays a role in positioning, the brace is sleeved on the wrist to fix the wrist in a certain posture, but long-term braking can cause adhesion of flexor tendons and joint stiffness, and is not beneficial to recovery of hand functions of a patient.
SUMMERY OF THE UTILITY MODEL
For solving the problem that prior art exists, the utility model provides a recovered brace of flexor tendon damage through the process of initiative extension, passive bucking, makes the flexor tendon produce and slides, promotes the joint activity, extensor tendon adhesion and joint stiffness that reduction that can furthest arouse because of long-term braking.
In order to achieve the above object, the utility model adopts the following technical scheme: a flexor tendon injury rehabilitation brace comprises a supporting plate, an elastic finger sleeve, a fixing support and a magic tape, wherein the supporting plate comprises a sheath and a protective plate, the magic tape is fixedly connected to the sheath and sleeved on an arm through the magic tape, and one end of the protective plate is fixedly connected with the sheath, and the other end of the protective plate extends to a palm transverse striation;
the fixing support comprises a first support, a second support and a third support, the first support is fixedly installed on the protective plate and located at the position of the navicular bone, the second support is fixedly installed at the joint of the sheath and the protective plate and located at the position of the palmar transverse striation on one side of the ulna of the palm, and the third support is fixedly installed on the sheath and located at the position of one half of the midline of the forearm;
the elastic finger sleeves comprise a thumb sleeve, an index finger sleeve, a middle finger sleeve, a ring finger sleeve and a small finger sleeve, the thumb sleeve, the index finger sleeve, the middle finger sleeve, the ring finger sleeve and the small finger sleeve are respectively sleeved on corresponding fingers, a first elastic rib is fixedly connected on the thumb sleeve, the other end of the first elastic rib penetrates through the first support and is fixedly connected to the third support, a second elastic rib is fixedly connected on the index finger sleeve, the other end of the second elastic rib penetrates through the second support and is fixedly connected to the third support, a third elastic rib is fixedly connected on the middle finger sleeve, the other end of the third elastic rib penetrates through the second support and is fixedly connected to the third support, a fourth elastic rib is fixedly connected on the ring finger sleeve, the other end of the fourth elastic rib penetrates through the second support and is fixedly connected to the third support, and a fifth elastic rib is fixedly connected on the small finger sleeve, the other end of the fifth elastic rib penetrates through the second support and is fixedly connected to the third support.
Preferably, the thumb stall, the index finger stall, the middle stall, the ring stall and the small stall are all sleeved at the front ends of the fingers.
In any of the above schemes, preferably, the thumb stall, index finger stall, middle finger stall, ring finger stall and little finger stall are all made of leather sheath materials.
In any of the above solutions, it is preferable that the pallet is made of low temperature thermoplastic plate, and the size is adjusted by softening and plasticizing treatment.
In any of the above schemes, preferably, the first elastic rib, the second elastic rib, the third elastic rib, the fourth elastic rib and the fifth elastic rib are made of rubber.
In any of the above schemes, preferably, the second support is provided with 4 support holes arranged in an array, the second elastic rib, the third elastic rib, the fourth elastic rib and the fifth elastic rib sequentially penetrate through different support holes, and the second elastic rib, the third elastic rib, the fourth elastic rib and the fifth elastic rib are not crossed at the second support.
Compared with the prior art, the utility model provides a pair of recovered brace of flexor tendon injury has following beneficial effect:
1) the utility model provides a pair of recovered brace of flexor tendons damage uses the process of realizing initiatively extending, bucking passively through fixed bolster, elasticity muscle and elasticity dactylotheca cooperation, makes the flexor tendons produce and slides, promotes the joint activity, and extensor tendon adhesion and joint stiffness that can furthest's reduction arouse because of long-term braking help the patient to resume the function of hand after the operation.
2) The utility model provides a pair of recovered brace of flexor tendons damage, layer board adopt low temperature to heat the plastic sheet, adapt to the arm of equidimension not through softening the back, then plastic processing adjusts the size, and application scope is extensive, and the realization is fixed, convenient to use is pasted to cooperation magic.
Drawings
Fig. 1 is a schematic view of the overall structure of a flexor tendon injury rehabilitation brace provided by the present invention;
the figures are labeled as follows: 1. an arm; 2. a palm; 3. a guard plate; 4. a first bracket; 5. a second bracket; 6. a third support; 7. a thumb sleeve; 8. a forefinger sleeve; 9. a middle finger sleeve; 10. looping a finger stall; 11. a small finger stall; 12. a second elastic rib; 13. a third elastic rib; 14. a fourth elastic rib; 15. a first elastic rib; 16. a fifth elastic rib; 17. magic tape; 18. a sheath.
Detailed Description
In order to further understand the inventive content of the present invention, the present invention will be explained in detail with reference to the specific embodiments.
As shown in fig. 1, according to the utility model provides a pair of recovered brace of flexor tendon injury, including layer board, elasticity dactylotheca, fixed bolster and magic subsides 17, the layer board includes sheath 18 and backplate 3, and fixed connection magic subsides 17 on the sheath 18, and pastes 17 covers on arm 1 through the magic, and 3 one ends of backplate and the 18 fixed connection other end of sheath extend to 2 striae departments of palm.
In the embodiment, the supporting plate is made of low-temperature thermoplastic plate, and the size is adjusted through softening and plasticizing treatment.
The fixed bolster includes first support 4, second support 5 and third support 6, and first support 4 fixed mounting just is located navicular bone department position on backplate 3, and second support 5 fixed mounting just is located palm 2 ulna one side palm striae department position in the sheath 18 and backplate 3 junction, and third support 6 fixed mounting just is located forearm midline half department position on the sheath 18.
The elastic finger stall comprises a thumb stall 7, an index finger stall 8, a middle finger stall 9, a ring finger stall 10 and a small finger stall 11, the thumb stall 7, the index finger stall 8, the middle finger stall 9, the ring finger stall 10 and the small finger stall 11 are respectively sleeved on corresponding fingers, a first elastic rib 15 is fixedly connected to the thumb stall 7, the other end of the first elastic rib 15 penetrates through the first support 4 and is fixedly connected to the third support 6, a second elastic rib 12 is fixedly connected to the index finger stall 8, the other end of the second elastic rib 12 penetrates through the second support 5 and is fixedly connected to the third support 6, a third elastic rib 13 is fixedly connected to the middle finger stall 9, the other end of the third elastic rib 13 penetrates through the second support 5 and is fixedly connected to the third support 6, a fourth elastic rib 14 is fixedly connected to the ring finger stall 10, the other end of the fourth elastic rib 14 penetrates through the second support 5 and is fixedly connected to the third support 6, a fifth elastic rib 16 is fixedly, the other end of the fifth elastic rib 16 penetrates the second bracket 5 and is fixedly connected to the third bracket 6.
The first elastic rib 15, the second elastic rib 12, the third elastic rib 13, the fourth elastic rib 14 and the fifth elastic rib 16 are made of rubber.
In the previous embodiment, the thumb sleeve 7, the index finger sleeve 8, the middle finger sleeve 9, the ring finger sleeve 10 and the small finger sleeve 11 are sleeved on the side of the front end of the finger far away from the palm 2.
It should be noted that the thumb stall 7, the index finger stall 8, the middle finger stall 9, the ring finger stall 10 and the small finger stall 11 are made of leather sheaths, and are elastic and convenient to use.
The first elastic rib 15, the second elastic rib 12, the third elastic rib 13, the fourth elastic rib 14 and the fifth elastic rib 16 are made of rubber.
The second support 5 is provided with 4 support holes arranged in an array, the second elastic rib 12, the third elastic rib 13, the fourth elastic rib 14 and the fifth elastic rib 16 sequentially penetrate through different support holes, and the second elastic rib 12, the third elastic rib 13, the fourth elastic rib 14 and the fifth elastic rib 16 are not crossed at the second support 5.
The working principle and method of the embodiment are as follows:
when the hand-held wrist brace is used, the protective sleeve 18 is sleeved on the arm 1, the thumb sleeve 7, the index finger sleeve 8, the middle finger sleeve 9, the ring finger sleeve 10 and the small finger sleeve 11 are respectively sleeved on corresponding fingers, the first elastic rib 15, the second elastic rib 12, the third elastic rib 13, the fourth elastic rib 14 and the fifth elastic rib 16 are connected with the corresponding finger sleeves, the fingers are in active straightening and passive bending positions, the flexor tendons slide through the processes of active stretching and passive bending, joint movement is promoted, and extensor tendon adhesion and joint stiffness caused by long-term braking can be reduced to the maximum extent.
Compared with the prior art, the embodiment has the following beneficial effects:
1) the utility model provides a pair of recovered brace of flexor tendons damage uses the process of realizing initiatively extending, bucking passively through fixed bolster, elasticity muscle and elasticity dactylotheca cooperation, makes the flexor tendons produce and slides, promotes the joint activity, and extensor tendon adhesion and joint stiffness that can furthest's reduction arouse because of long-term braking help the patient to resume the function of hand after the operation.
2) The utility model provides a pair of recovered brace of flexor tendons damage, layer board adopt low temperature to heat the plastic sheet, adapt to the arm of equidimension not through softening the back, then plastic processing adjusts the size, and application scope is extensive, and the realization is fixed, convenient to use is pasted to cooperation magic.
It will be understood by those skilled in the art that any combination of the elements of the present invention, including the summary and detailed description of the invention provided in the foregoing description and illustrated in the accompanying drawings, is not to be considered limiting in scope and in order to make the description more concise, and not to describe every element of the combination. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The support for rehabilitation of flexor tendon injury is characterized by comprising a supporting plate, an elastic finger sleeve, a fixing support and a magic tape, wherein the supporting plate comprises a sheath and a protective plate, the magic tape is fixedly connected to the sheath and sleeved on an arm through the magic tape, and one end of the protective plate is fixedly connected with the sheath, and the other end of the protective plate extends to a palm transverse striation;
the fixing support comprises a first support, a second support and a third support, the first support is fixedly installed on the protective plate and located at the position of the navicular bone, the second support is fixedly installed at the joint of the sheath and the protective plate and located at the position of the palmar transverse striation on one side of the ulna of the palm, and the third support is fixedly installed on the sheath and located at the position of one half of the midline of the forearm;
the elastic finger sleeves comprise a thumb sleeve, an index finger sleeve, a middle finger sleeve, a ring finger sleeve and a small finger sleeve, the thumb sleeve, the index finger sleeve, the middle finger sleeve, the ring finger sleeve and the small finger sleeve are respectively sleeved on corresponding fingers, a first elastic rib is fixedly connected on the thumb sleeve, the other end of the first elastic rib penetrates through the first support and is fixedly connected to the third support, a second elastic rib is fixedly connected on the index finger sleeve, the other end of the second elastic rib penetrates through the second support and is fixedly connected to the third support, a third elastic rib is fixedly connected on the middle finger sleeve, the other end of the third elastic rib penetrates through the second support and is fixedly connected to the third support, a fourth elastic rib is fixedly connected on the ring finger sleeve, the other end of the fourth elastic rib penetrates through the second support and is fixedly connected to the third support, and a fifth elastic rib is fixedly connected on the small finger sleeve, the other end of the fifth elastic rib penetrates through the second support and is fixedly connected to the third support.
2. The flexor tendon injury rehabilitation brace of claim 1, wherein: the thumb stall, the index finger stall, the middle stall, the ring stall and the small stall are all sleeved at the front ends of the fingers.
3. The flexor tendon injury rehabilitation brace of claim 2, wherein: the thumb stall, the index finger stall, the middle finger stall, the ring finger stall and the small finger stall are all made of leather sheath materials.
4. The flexor tendon injury rehabilitation brace of claim 1, wherein: the supporting plate is made of low-temperature thermoplastic plates, and the size of the supporting plate is adjusted through softening and plasticizing treatment.
5. The flexor tendon injury rehabilitation brace of claim 1, wherein: the first elastic rib, the second elastic rib, the third elastic rib, the fourth elastic rib and the fifth elastic rib are all made of rubber materials.
6. The flexor tendon injury rehabilitation brace of claim 1, wherein: the second support is provided with 4 support holes which are arranged in an array mode, the second elastic rib, the third elastic rib, the fourth elastic rib and the fifth elastic rib sequentially penetrate through the different support holes, and the second elastic rib, the third elastic rib, the fourth elastic rib and the fifth elastic rib are not crossed at the second support.
Priority Applications (1)
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CN202021335310.6U CN213130611U (en) | 2020-07-09 | 2020-07-09 | Flexor tendon injury rehabilitation brace |
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CN202021335310.6U CN213130611U (en) | 2020-07-09 | 2020-07-09 | Flexor tendon injury rehabilitation brace |
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CN213130611U true CN213130611U (en) | 2021-05-07 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113576832A (en) * | 2021-07-27 | 2021-11-02 | 华中科技大学 | Line-drive modular soft rehabilitation glove |
CN114259383A (en) * | 2021-12-23 | 2022-04-01 | 华中科技大学 | Hand exoskeleton device with under-actuated traction function |
-
2020
- 2020-07-09 CN CN202021335310.6U patent/CN213130611U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113576832A (en) * | 2021-07-27 | 2021-11-02 | 华中科技大学 | Line-drive modular soft rehabilitation glove |
CN114259383A (en) * | 2021-12-23 | 2022-04-01 | 华中科技大学 | Hand exoskeleton device with under-actuated traction function |
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