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实时监测胫骨高位假肢:关于接受腔气压的病例系列研究。

Real time monitoring of transtibial elevated vacuum prostheses: A case series on socket air pressure.

机构信息

Department of Medicine, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta, Canada.

Department of Biomedical Engineering, Lerner Research Institute, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2018 Oct 22;13(10):e0202716. doi: 10.1371/journal.pone.0202716. eCollection 2018.

Abstract

Prosthetic elevated vacuum is a suspension method used to reduce daily volume changes of the residual limb. Evaluation of the effectiveness of these systems is limited due to a lack of correlation to actual socket air pressure, particularly during unconstrained movements. This may explain some of the variability in functional outcomes reported in the literature. Our objective was to develop a light-weight portable socket measurement system to quantify internal socket air pressure, temperature, and acceleration; and to present preliminary results from implementation with three transtibial prosthesis users with mechanical elevated vacuum pumps. Participants completed five functional tasks with and without the vacuum pumps actively connected, including the 2-Minute Walk test, 5-Times Sit-to-Stand test, 4-Square Step test, L-Test, and Figure-8 test. Results demonstrated different gait profiles and pressure ranges for each user. Two of the participants demonstrated substantially lower air pressure (higher vacuum) over time while the pump was active compared to inactive. The minimum air pressure measured for all participants was -34.6 ± 7.7 kPa. One participant did not show substantial changes in pressure over time for either pump condition. Functional task performance was not significantly different between pump conditions. Correlation with accelerometer readings indicated peak positive pressures occurred just following initial contact of the foot in early stance, and the most negative pressures (highest vacuum) were observed throughout swing. This study has demonstrated the use of a portable data logging tool that may serve the clinical and research communities to quantify the operation of elevated vacuum systems, and better understand the variability of mechanical pump operation and overall system performance.

摘要

假肢抬高真空是一种用于减少残肢日常体积变化的悬吊方法。由于与实际套筒内气压缺乏相关性,特别是在不受限制的运动期间,这些系统的效果评估受到限制。这可能解释了文献中报道的功能结果的一些可变性。我们的目的是开发一种轻便的便携式套筒测量系统,以量化内部套筒内的气压、温度和加速度;并介绍与三个机械抬高真空泵的小腿假肢使用者一起实施的初步结果。参与者在真空泵主动连接和不主动连接的情况下完成了五项功能任务,包括 2 分钟步行测试、5 次坐立站起测试、4 方步测试、L 测试和 8 字测试。结果表明,每个使用者的步态特征和压力范围都不同。其中两名参与者在泵处于活动状态时,其空气压力(更高的真空度)随时间推移而显著降低,而在泵处于非活动状态时则没有明显变化。所有参与者的最低空气压力为-34.6±7.7kPa。一名参与者在两种泵状态下,其压力随时间的变化都没有明显变化。在泵状态下,功能任务的表现没有显著差异。与加速度计读数的相关性表明,峰值正压出现在脚刚接触到早期站立时,而最低的负压(最高的真空度)则出现在整个摆动过程中。本研究证明了一种便携式数据记录工具的使用,该工具可能为临床和研究界服务,以量化抬高真空系统的运行情况,并更好地了解机械泵运行和整体系统性能的可变性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db0c/6197629/d314568a3fed/pone.0202716.g001.jpg

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