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基于镍钛合金的夹板设计用于矫正手指关节畸形。

Design of splints based on the NiTi alloy for the correction of joint deformities in the fingers.

机构信息

Department of Mechanical Engineering, University of Zaragoza, María de Luna 3, 50018 Zaragoza, Spain.

出版信息

Biomed Eng Online. 2010 Sep 13;9:49. doi: 10.1186/1475-925X-9-49.

Abstract

BACKGROUND

The proximal interphalange joint (PIP) is fundamental for the functional nature of the hand. The contracture in flexion of the PIP, secondary to traumatisms or illnesses leads to an important functional loss. The use of correcting splints is the common procedure for treating this problem. Its functioning is based on the application of a small load and a prolonged stress which can be dynamic, static progressive or static serial.It is important that the therapist has a splint available which can release a constant and sufficient force to correct the contracture in flexion. Nowadays NiTi is commonly used in bio-engineering, due to its superelastical characteristics. The experience of the authors in the design of other devices based on the NiTi alloy, makes it possible to carry out a new design in this work--the production of a finger splint for the treatment of the contracture in flexion of the PIP joint.

METHODS

Commercial orthosis have been characterized using a universal INSTRON 5565 machine. A computational simulation of the proposed design has been conducted, reproducing its performance and using a model "ad hoc" for the NiTi material. Once the parameters have been adjusted, the design is validated using the same type of test as those carried out on commercial orthosis.

RESULTS AND DISCUSSION

For commercial splint the recovering force falls to excessively low values as the angle increases. Angle curves for different lengths and thicknesses of the proposed design have been obtained, with a practically constant recovering force value over a wide range of angles that vary between 30° and 150° in every case. Then the whole treatment is possible with only one splint, and without the need of progressive replacements as the joint recovers.

CONCLUSIONS

A new model of splint based on NiTi alloy has been designed, simulated and tested comparing its behaviour with two of the most regularly used splints. Its uses is recommended instead of other dynamic orthosis used in orthopaedics for the PIP joint. Besides, its extremely simple design, makes its manufacture and use on the part of the specialist easier.

摘要

背景

近侧指间关节(PIP)对于手的功能性质至关重要。由于创伤或疾病导致 PIP 关节屈曲挛缩,会导致重要的功能丧失。使用矫正夹板是治疗此问题的常见方法。其功能基于应用小负荷和长时间的应力,这些应力可以是动态的、静态渐进的或静态连续的。治疗师拥有能够释放恒定且足够的力量来矫正屈曲挛缩的夹板非常重要。如今,由于其超弹性特性,NiTi 通常用于生物工程。由于作者在基于 NiTi 合金的其他设备设计方面的经验,使得在这项工作中进行新的设计成为可能——为治疗 PIP 关节屈曲挛缩制作手指夹板。

方法

使用通用的 INSTRON 5565 机器对商业矫形器进行了特性描述。对提出的设计进行了计算模拟,复制了其性能,并使用了针对 NiTi 材料的专用模型。一旦调整了参数,就使用与对商业矫形器进行的相同类型的测试来验证设计。

结果与讨论

对于商业夹板,随着角度的增加,恢复力会降至过低的值。获得了不同长度和厚度的建议设计的角度曲线,在 30°至 150°的广泛角度范围内,恢复力值几乎保持恒定。然后,整个治疗过程只需使用一个夹板即可完成,并且由于关节恢复,不需要渐进式更换。

结论

已经设计、模拟和测试了一种基于 NiTi 合金的新型夹板模型,并将其行为与两种最常用的夹板进行了比较。建议将其用于替代矫形外科中用于 PIP 关节的其他动态矫形器。此外,其极其简单的设计使其更容易制造和使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3c6/2946293/7cb6d2e9d1a9/1475-925X-9-49-1.jpg

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