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Prosthetics socket that incorporates an air splint system focusing on dynamic interface pressure

机译:带有空气夹板系统的假肢插座,专注于动态接口压力

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Background The interface pressure between the residual limb and prosthetic socket has a significant effect on an amputee’s satisfaction and comfort. This paper presents the design and performance of a new prosthetic socket that uses an air splint system. Methods The air splint prosthetic socket system was implemented by combining the air splint with a pressure sensor that the transhumeral user controls through the use of a microcontroller. The modular construction of the system developed allows the FSR pressure sensors that are placed inside the air splint socket to determine the required size and fitting for the socket used. Fifteen transhumeral amputees participated in the study. Results The subject’s dynamic pressure on the socket that’s applied while wearing the air splint systems was recorded using F-socket transducers and microcontroller analysis. The values collected by the F-socket sensor for the air splint prosthetic socket system were determined accordingly by comparing the dynamic pressure applied using statically socket. The pressure volume of the air splint fluctuated and was recorded at an average of 38 kPa (2.5) to 41 kPa (1.3) over three hours. Conclusion The air splint socket might reduce the pressure within the interface of residual limb. This is particularly important during the daily life activities and may reduce the pain and discomfort at the residual limb in comparison to the static socket. The potential development of an auto-adjusted socket that uses an air splint system as the prosthetic socket will be of interest to researchers involved in rehabilitation engineering, prosthetics and orthotics.
机译:背景技术残肢与假牙窝之间的界面压力对被截肢者的满意度和舒适度有重要影响。本文介绍了一种使用空气夹板系统的新型假牙插座的设计和性能。方法通过将空气夹板与压力传感器相结合来实现空气夹板假体插座系统,该压力传感器由肱骨使用者通过使用微控制器来控制。所开发系统的模块化结构允许FSR压力传感器(位于空气夹板插座内部)确定所需的尺寸和所用插座的配合。十五名经肱截肢者参加了这项研究。结果使用F型插座传感器和微控制器分析记录了受试者在穿着空气夹板系统时施加在插座上的动态压力。因此,通过比较使用静态插座施加的动态压力,可以确定F型插座传感器为空气夹板假体插座系统收集的值。空气夹板的压力体积波动,并在三个小时内记录为平均38 kPa(2.5)至41 kPa(1.3)。结论空气夹板可能会降低残肢界面内的压力。这在日常生活活动中尤其重要,并且与静态插槽相比,可以减少残留肢体的疼痛和不适。涉及康复工程,假肢和矫形器的研究人员将对使用空气夹板系统作为假牙套的自动调节牙套的潜在发展感兴趣。

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