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The AirCirc: design and development of a thermal management prototype device for below-knee prosthesis leg socket

机译:Aircirc:用于膝关节假体腿插座的热管理原型装置的设计和开发

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摘要

This study describes a newly developed prosthetic leg socket design for a below-knee amputation. Excessive heat and the resulted perspiration within a prosthetic socket were the most common causes for reporting a reduced quality of life for prosthetic users. The product namely AirCirc means air circulation and it has been designed by approach of medical device design process in providing the amputees to maintain the skin temperature inside the socket. This device has been designed to provide the amputees with comfort and ultimate breathable. In order to design the device, the small hole was made in prosthetic socket surface since it has a function as air circulation. Four types of proposed sockets namely PI, P2, P3 and P4 and one control socket were compared on a single patient to determine the best design of prosthetic socket. The result successfully reveals that by using holes can be maintain the temperature inside prosthetic socket. In addition to the eco-friendly material, the woven kenaf was used as material that provides good strength as compared to glass fibre and offer sustainable and biodegradable product yet provides unique and aesthetic surface as came from woven kenaf itself. The objective of this paper is to provide the airflow prosthetic socket design and optimize the use of natural fibre in prostheses field. Thus, with the use of the environmental friendly material, functionality device and heat removal capability make the device suitable for maintaining a comfortable and healthy environment for prosthesis
机译:本研究描述了一种新开发的假肢腿套设计,用于以下膝关节截肢。在假体插座内过度的热量和产生的汗水是报告假肢用户的降低生活质量的最常见原因。该产品即Aircirc意味着空气循环,并通过医疗器械设计过程的方法设计,在提供术语中以维持插座内的皮肤温度。该设备旨在提供舒适性和终极透气的禁用。为了设计装置,小孔是在假体插座表面上制造的,因为它具有空气循环的功能。在单个患者上比较了四种所提出的插座,即PI,P2,P3和P4和一个控制插座,以确定假肢插座的最佳设计。结果成功显示,通过使用孔可以将温度保持在假体插座内。除了环保材料外,与玻璃纤维相比,织造kEnaf用作提供良好强度的材料,并提供可持续和可生物降解的产品,但提供独特而审美的表面,从编织keenaf本身提供。本文的目的是提供气流假体套接字设计,并优化天然纤维在假体场中的使用。因此,利用环保材料的使用,功能装置和散热能力使得该装置适用于维持舒适健康的假体环境

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