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The reachable 3-D workspace volume is a measure of payload and body mass-index: A quasi-static kinetic assessment

机译:可达3-D工作区体积是有效载荷和体重指数的量度:静态动力学评估

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摘要

An experimental protocol with five tasks is proposed for a low-cost empirical assessment of the reachable 3-D workspace (RWS), including both close-to-torso and far-from-torso regions. Ten participants repeated the protocol for four distinct hand payloads. The RWS expressed as a point cloud and its non-convex alpha-shape were obtained for each case. Moreover, individual strength surrogates for glenohumeral flexion and abduction, and elbow flexion were collected using a dynamometer. The RWS volume was statistically modelled using payload, body-mass-index and the strength surrogates as predictors. For increasing payload, a significant (r = -0.736,p 0.001) decrease in RWS volume was found for distinct payload cases across all subjects. The only significant predictors found for the RWS volume were normalized payload (F = 73.740,p 0.001) and body-mass-index (F = 11.008,p = 0.003). No significant interactions were found. The consequent regression model (F(2,27) = 41.11, p 0.001, R-adj(2) = 0.7345) explained around 73% of the variation in the data. The RWS volume is a function of payload and body-mass-index.
机译:提出了一种具有五项任务的实验方案,用于可达3-D工作空间(RWS)的低成本实证评估,包括近躯干和远离躯干区域。十名参与者重复了四个不同的手工载荷的协议。为每种情况获得表示为点云及其非凸α形状的RW。此外,使用测功机收集胶质骨屈曲和绑架的个体强度替代物和肘部屈曲。 RWS体积使用有效载荷,体重指数和强度代理作为预测因子进行统计建模。为了增加有效载荷,在所有受试者跨越的不同有效载荷案例,发现RWS体积的显着(R = -0.736,P <0.001)。发现RWS体积的唯一重要预测因子是归一化有效载荷(F = 73.740,P <0.001)和体重指数(F = 11.008,P = 0.003)。没有发现显着的相互作用。随后的回归模型(F(2,27)= 41.11,P <0.001,R-adj(2)= 0.7345)解释了数据变化的73%。 RWS卷是有效载荷和体重索引的函数。

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