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Fatigue-free operation of most body-powered prostheses not feasible for majority of users with trans-radial deficiency

机译:大多数身体动力假体的无疲劳运行对于大多数具有跨径向缺陷的用户来说不可行

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Background: Body-powered prostheses require cable operation forces between 33 and 131 N. The accepted upper limit for fatigue-free long-duration operation is 20% of a users’ maximum cable operation force. However, no information is available on users’ maximum force. Objectives: To quantify users’ maximum cable operation force and to relate this to the fatigue-free force range for the use of body-powered prostheses. Study design: Experimental trial. Methods: In total, 23 subjects with trans-radial deficiencies used a bypass prosthesis to exert maximum cable force three times during 3 s and reported discomfort or pain on a body map. Additionally, subjects’ anthropometric measures were taken to relate to maximum force. Results: Subjects generated forces ranging from 87 to 538 N. Of the 23 subjects, 12 generated insufficient maximum cable force to operate 8 of the 10 body-powered prostheses fatigue free. Discomfort or pain did not correlate with the magnitude of maximum force achieved by the subjects. Nine subjects indicated discomfort or pain. No relationships between anthropometry and maximal forces were found except for maximum cable forces and the affected upper-arm circumference for females. Conclusion: For a majority of subjects, the maximal cable force was lower than acceptable for fatigue-free prosthesis use. Discomfort or pain occurred in ~40% of the subjects, suggesting a suboptimal force transmission mechanism. Clinical relevance The physical strength of users determines whether a body-powered prosthesis is suitable for comfortable, fatigue-free long-duration use on a daily basis. High cable operation forces can provoke discomfort and pain for some users, mainly in the armpit. Prediction of the users’ strength by anthropometric measures might assist the choice of a suitable prosthesis.
机译:背景:身体供电的假体需要33和131 n之间的电缆操作力。无疲劳长持续时间操作的接受的上限为用户最大电缆运行力的20%。但是,没有关于用户最大力的信息。目的:为了量化用户的最大电缆运行力,并将其与疲劳性假体使用的无疲劳力范围相关联。研究设计:实验试验。方法:总共23个受试者使用跨径向缺陷的受试者使用旁路假体在3秒内施加最大电缆力三次,并报告身体图的不适或疼痛。另外,受试者的人体计量措施涉及最大力。结果:受试者产生的力量为87至538 N.在23个受试者中,12个产生的最大电缆力量不足,以便在10个身体动力假体疲劳中操作8。不适或疼痛与受试者实现的最大力的大小没有相关。九个受试者表明不适或疼痛。除了最大电缆力和女性的受影响的上臂围轴外,没有发现人类测量法和最大力之间的关系。结论:对于大多数受试者,最大电缆力低于无疲劳假体使用的可接受。在〜40%的受试者中发生不适或疼痛,表明次优势传动机制。临床相关性用户的身体强度决定了身体供电的假体是否适合于每天进行舒适,无疲劳的长期使用。高电缆运行力可以为某些用户引起不适和痛苦,主要是在腋下。通过人体测量措施预测用户的强度可能有助于选择合适的假体。

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