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一种用于估计人体矢状面运动期间外部和内部负荷的改进逆动力学公式。

An improved inverse dynamics formulation for estimation of external and internal loads during human sagittal plane movements.

作者信息

Blajer Wojciech, Dziewiecki Krzysztof, Mazur Zenon

机构信息

a Faculty of Mechanical Engineering, Institute of Applied Mechanics and Power Engineering, University of Technology and Humanities in Radom , ul. Krasickiego 54, 26-600 Radom , Poland.

出版信息

Comput Methods Biomech Biomed Engin. 2015;18(4):362-75. doi: 10.1080/10255842.2013.799147. Epub 2013 Jun 11.

Abstract

Planar musculoskeletal models are common in the inverse dynamics analysis of human movements such as walking, running and jumping. The continued interest in such models is justified by their simplicity and computational efficiency. Related to a human planar model, a unified formulation for both the flying and support phases of the sagittal plane movements is developed. The actuation involves muscle forces in the lower limbs and the resultant muscle torques in the other body joints. The dynamic equations, introduced in absolute coordinates of the segments, are converted into useful compact forms using the projective technique. The solution to a determinate inverse dynamics problem allows for the explicit determination of the external reactions (presumed to vanish during the flying phases) and the resultant muscle torques in all the model joints. The indeterminate inverse dynamics problem is then focused on the assessment of muscle forces and joint reaction forces selectively in the supporting lower limb. Numerical results of the inverse dynamics simulation of sample sagittal plane movements are reported to illustrate the validity and effectiveness of the improved formulation.

摘要

平面肌肉骨骼模型在诸如行走、跑步和跳跃等人体运动的逆动力学分析中很常见。对这类模型持续的关注源于其简单性和计算效率。针对人体平面模型,开发了矢状面运动飞行阶段和支撑阶段的统一公式。驱动涉及下肢的肌肉力以及身体其他关节的合成肌肉扭矩。在各节段的绝对坐标中引入的动力学方程,使用投影技术转换为有用的紧凑形式。确定的逆动力学问题的解允许明确确定外部反作用力(假定在飞行阶段消失)以及模型所有关节中的合成肌肉扭矩。然后,不确定的逆动力学问题专注于选择性地评估支撑下肢中的肌肉力和关节反作用力。报告了矢状面运动样本的逆动力学模拟的数值结果,以说明改进公式的有效性和实用性。

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