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首页> 外文期刊>Journal of Biomechanics >A foot/ground contact model for biomechanical inverse dynamics analysis
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A foot/ground contact model for biomechanical inverse dynamics analysis

机译:生物力学逆动力学分析的脚/地面接触模型

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The inverse dynamics simulation of the musculoskeletal system is a common method to understand and analyse human motion. The ground reaction forces can be accurately estimated by experimental measurements using force platforms. However, the number of steps is limited by the number of force platforms available in the laboratory. Several numerical methods have been proposed to estimate the ground reaction forces without force platforms, i.e., solely based on kinematic data combined with a model of the foot-ground contact. The purpose of this work is to provide a more efficient method, using a unilaterally constrained model of the foot at the center of pressure to compute the ground reaction forces. The proposed model does not require any data related with the compliance of the foot-ground contact and is kept as simple as possible. The indeterminacy in the force estimation is handled using a least square approach with filtering. The relative root mean square error (rRMSE) between the numerical estimations and experimental measurements are 4.1% for the vertical component of the ground reaction forces (GRF), 11.2% for the anterior component and 5.3% for the ground reaction moment (GRM) in the sagittal plane. (C) 2019 Elsevier Ltd. All rights reserved.
机译:肌肉骨骼系统的逆动力学模拟是理解和分析人类运动的常见方法。可以通过使用力平台通过实验测量精确地估计地面反作用力。然而,步骤数量受实验室中可用的力平台数量的限制。已经提出了几种数值方法来估计没有力平台的地面反作用力,即,仅基于运动学数据与脚踏接触的模型相结合。本作作品的目的是提供一种更有效的方法,使用单方面约束的脚在压力中心来计算地面反作用力。所提出的模型不需要任何与脚踏接触符合相关的数据,并且保持尽可能简单。力估计中的不确定性由使用最小二乘方法进行处理。数值估计和实验测量之间的相对根均方误差(RRMSE)对于地面反作用力(GRF)的垂直部件为4.1%,前部组分11.2%,接地反应时刻(GRM)的5.3%矢状平面。 (c)2019年elestvier有限公司保留所有权利。

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