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Tibial fracture adjustable-weight functional brace

A functional and tibial technology, applied in the field of lower extremity weight-bearing braces, can solve the problems of load-adjustable methods and products that have not been seen in literature or reports, cannot achieve patient training, and affect the normal life of patients, etc. Simple, easy-to-wear effect

Active Publication Date: 2015-11-11
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These two lead to inconvenient movement of the patient and affect the normal life of the patient.
Although there have been relevant studies on making the load completely free, there are no literature or reports on the methods and products for adjusting the load.
However, the lower extremity functional training instruments are generally very large in size and cannot be portable to enable patients to train
[0004] However, an auxiliary brace that can support body weight and assist function training as a whole can meet the needs of patients to walk freely during the rehabilitation period. There is still no such product in China.

Method used

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  • Tibial fracture adjustable-weight functional brace
  • Tibial fracture adjustable-weight functional brace
  • Tibial fracture adjustable-weight functional brace

Examples

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Embodiment Construction

[0025] The present invention will be further described below in conjunction with embodiment and accompanying drawing.

[0026] Such as figure 1 As shown, a tibial fracture adjustable load-bearing function brace of the present invention is composed of a receiving cavity 1, a height adjustment module 2, a spring load-bearing module 3 and a foot plate module 4 connected sequentially from top to bottom; the receiving cavity 1 It is used to accommodate and fix the calf, and can be opened and closed; the socket 1 and the height adjustment module 2 are fixedly connected through the socket connector 201; the height adjustment module 2 is coaxial with the spring load-bearing module 3, and the height adjustment The lower part 203 is fixedly connected to the spring upper end plate 301; the spring load-bearing module 3 and the foot plate module 4 are fixedly connected to the bottom plate seat 404 through the spring lower end plate 304; the foot plate module 4 is used to support the foot s...

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PUM

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Abstract

The invention discloses a tibial fracture adjustable-weight functional brace, comprising a receiving chamber, a height adjusting module, a spring bearing module and a footplate module. The receiving chamber is attached to the upper portion of a shank. The receiving chamber is fixedly connected with the height adjusting module through a receiving chamber connector. The height adjusting module and the spring bearing module are coaxial. The lower portion of the height adjusting module is fixedly connected with a spring upper end plate. The spring bearing module is fixedly connected with the footplate module through the spring lower end plate and a bottom plate holder. The footplate module comprises a bearing balloon used for supporting a human foot. The brace is worn on a diseased limb through an elastic bandage. The brace can replace the fractured limb to share body weight during a tibial fracture rehabilitation phase, the shared weight is adjustable during the rehabilitation phase, fracture end faces are therefore stimulated, and actual facture healing is accelerated. The brace allows the patient to freely walk and do functional training without a crutch or a wheelchair.

Description

technical field [0001] The invention relates to a lower limb weight-bearing brace, in particular to a tibia fracture rehabilitation training brace. Background technique [0002] Tibia and fibula fractures are the most frequent fracture site in the long tubular bone, accounting for about 13.7% of systemic fractures. After the operation, the patient still needs functional training to restore the normal function of the injured part as much as possible. It is necessary to carry out scientific and various forms of functional training under the guidance of medical staff, so that patients can reduce complications, heal smoothly, and resume work and living ability as soon as possible. Effective functional training can improve and increase local blood circulation, enhance muscle strength, prevent tendon and joint capsule adhesion and contracture, soften scars, and restore normal function of joints and limbs. Reasonable postoperative weight-bearing training can strengthen the longit...

Claims

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Application Information

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IPC IPC(8): A61F4/00
Inventor 王兴松田梦倩马振兴
Owner SOUTHEAST UNIV
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