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忽略虚拟力时,在以身体为中心的非惯性参考系中计算 L5/S1 关节力矩的误差。

The error of L5/S1 joint moment calculation in a body-centered non-inertial reference frame when the fictitious force is ignored.

机构信息

Liberty Mutual Research Institute for Safety, 71 Frankland Road, Hopkinton, MA 01748, USA.

出版信息

J Biomech. 2013 Jul 26;46(11):1943-7. doi: 10.1016/j.jbiomech.2013.05.012. Epub 2013 Jun 12.

Abstract

In ergonomics studies, linked segment models are commonly used for estimating dynamic L5/S1 joint moments during lifting tasks. The kinematics data input to these models are with respect to an arbitrary stationary reference frame. However, a body-centered reference frame, which is defined using the position and the orientation of human body segments, is sometimes used to conveniently identify the location of the load relative to the body. When a body-centered reference frame is moving with the body, it is a non-inertial reference frame and fictitious force exists. Directly applying a linked segment model to the kinematics data with respect to a body-centered non-inertial reference frame will ignore the effect of this fictitious force and introduce errors during L5/S1 moment estimation. In the current study, various lifting tasks were performed in the laboratory environment. The L5/S1 joint moments during the lifting tasks were calculated by a linked segment model with respect to a stationary reference frame and to a body-centered non-inertial reference frame. The results indicate that applying a linked segment model with respect to a body-centered non-inertial reference frame will result in overestimating the peak L5/S1 joint moments of the coronal plane, sagittal plane, and transverse plane during lifting tasks by 78%, 2%, and 59% on average, respectively. The instant when the peak moment occurred was delayed by 0.13, 0.03, and 0.09s on average, correspondingly for the three planes. The root-mean-square errors of the L5/S1 joint moment for the three planes are 21Nm, 19Nm, and 9Nm, correspondingly.

摘要

在人体工程学研究中,通常使用连接节段模型来估计举重任务中 L5/S1 关节的动态力矩。这些模型的运动学数据输入是相对于任意静止参考系的。然而,人体中心参考系(使用人体各节段的位置和方向定义)有时用于方便识别负载相对于身体的位置。当人体中心参考系随身体移动时,它是一个非惯性参考系,存在虚拟力。直接将连接节段模型应用于相对于人体中心非惯性参考系的运动学数据将忽略该虚拟力的影响,并在 L5/S1 力矩估计过程中引入误差。在当前研究中,在实验室环境中进行了各种举重任务。通过相对于静止参考系和人体中心非惯性参考系的连接节段模型计算了举重任务中的 L5/S1 关节力矩。结果表明,相对于人体中心非惯性参考系应用连接节段模型将导致在冠状面、矢状面和水平面的峰值 L5/S1 关节力矩分别高估 78%、2%和 59%。峰值时刻分别平均延迟 0.13、0.03 和 0.09s。三个平面的 L5/S1 关节力矩的均方根误差分别为 21Nm、19Nm 和 9Nm。

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