BIOENERGETIC DIFFERENCES DURING WALKING AND RUNNING IN TRANSFEMORAL AMPUTEE RUNNERS USING ARTICULATING AND NON-ARTICULATING KNEE PROSTHESES.

IF 0.7 Q3 MULTIDISCIPLINARY SCIENCES
M. J. Highsmith, Jason T. Kahle, Rebecca M Miro, L. Mengelkoch
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引用次数: 7

Abstract

Transfemoral amputation (TFA) patients require considerably more energy to walk and run than non-amputees. The purpose of this study was to examine potential bioenergetic differences (oxygen uptake (VO2), heart rate (HR), and ratings of perceived exertion (RPE)) for TFA patients utilizing a conventional running prosthesis with an articulating knee mechanism versus a running prosthesis with a non-articulating knee joint. Four trained TFA runners (n = 4) were accommodated to and tested with both conditions. VO2 and HR were significantly lower (p ≤ 0.05) in five of eight fixed walking and running speeds for the prosthesis with an articulating knee mechanism. TFA demonstrated a trend for lower RPE at six of eight walking speeds using the prosthesis with the articulated knee condition. A trend was observed for self-selected walking speed, self-selected running speed, and maximal speed to be faster for TFA subjects using the prosthesis with the articulated knee condition. Finally, all four TFA participants subjectively preferred running with the prosthesis with the articulated knee condition. These findings suggest that, for trained TFA runners, a running prosthesis with an articulating knee prosthesis reduces ambulatory energy costs and enhances subjective perceptive measures compared to using a non-articulating knee prosthesis.
使用关节和非关节膝关节假体的经股骨截肢跑步者行走和跑步时的生物能量差异。
经股骨截肢(TFA)患者比非截肢者需要更多的能量来行走和跑步。本研究的目的是检查TFA患者使用带关节的传统跑步假体与不带关节的跑步假体的潜在生物能量差异(摄氧量(VO2)、心率(HR)和感知运动评分(RPE))。四名训练有素的TFA跑步者(n = 4)被适应并接受了两种条件的测试。在8个固定步行和跑步速度中,有5个固定步行和跑步速度的VO2和HR显著降低(p≤0.05)。使用关节膝关节的假体,在8种行走速度中的6种下,TFA显示出较低RPE的趋势。使用关节膝关节假体的TFA受试者的自选步行速度、自选跑步速度和最大速度有较快的趋势。最后,所有四名TFA参与者主观上都更喜欢在膝关节关节状况下使用假体跑步。这些发现表明,对于训练有素的TFA跑步者来说,与使用非关节膝关节假体相比,带有关节膝关节假体的跑步假体减少了运动能量消耗,增强了主观感知能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Technology and Innovation
Technology and Innovation MULTIDISCIPLINARY SCIENCES-
自引率
20.00%
发文量
12
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