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从坐姿到站立姿势转移过程中的生物力学和肌肉活动。

Biomechanics and muscular activity during sit-to-stand transfer.

作者信息

Roebroeck M E, Doorenbosch C A, Harlaar J, Jacobs R, Lankhorst G J

机构信息

Department of Rehabilitation Medicine, Free University Hospital Amsterdam, The Netherlands.

出版信息

Clin Biomech (Bristol). 1994 Jul;9(4):235-44. doi: 10.1016/0268-0033(94)90004-3.

Abstract

In the present study 10 healthy subjects were measured, performing sit-to-stand transfers in a natural way. Starting position and speed of movement were standardized. Sagittal kinematics, the ground reaction force, and muscle activity of nine leg muscles were recorded. During sit-to-stand transfer the mass centre of the body was moved forward and upward. Based on the velocity of the mass centre of the body three phases were distinguished. In horizontal direction forward rotation of the upper body contributed to the velocity of the mass centre of the body, whereas extension of the legs contributed considerably in vertical direction. After seat-off most muscles were concentrically active, whereas the shortening velocity of the rectus femoris was very low. Thus hip and knee joints were extended and a relatively high knee moment was delivered to control the ground reaction force in a slightly backward direction. Co-contraction of hamstrings and rectus femoris in sit-to-stand transfer was judged to be efficient.

摘要

在本研究中,对10名健康受试者进行了测量,他们以自然的方式进行从坐到站的转移动作。起始位置和运动速度进行了标准化。记录了矢状面运动学、地面反作用力以及九条腿部肌肉的肌肉活动情况。在从坐到站的转移过程中,身体的质心向前上方移动。根据身体质心的速度区分出三个阶段。在水平方向上,上半身的向前旋转有助于身体质心的速度,而腿部的伸展在垂直方向上贡献显著。离开座椅后,大多数肌肉进行向心收缩活动,而股直肌的缩短速度非常低。因此,髋关节和膝关节伸展,并且传递了相对较高的膝关节力矩以控制略微向后方向的地面反作用力。在从坐到站的转移过程中,腘绳肌和股直肌的共同收缩被认为是有效的。

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