首页> 外文会议>Intelligent Robots and Systems, 2005. (IROS 2005). 2005 IEEE/RSJ International Conference on >Three-dimensional lifting-up motion analysis for wearable power assist device of lower back support
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Three-dimensional lifting-up motion analysis for wearable power assist device of lower back support

机译:下背部支撑式可穿戴动力辅助装置的三维提升运动分析

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The objective of this research is to develop a wearable power assist device which helps a person to lift up a heavy object. The device is designed to support him by holding his upper body weight and reducing his inner force. It turns to the reduction of a compression force of his lower back discs, which is a major factor of a lower back injury. In a lifting-up motion, he twists and bends his body, which means three-dimensional motion analysis is necessary for the compression force analysis. However, most of related works on the compression force analysis have been carried out in a vertical plane. For understanding the characteristics of a lifting-up motion better, this paper presents three-dimensional analysis of it. Using a motion capture system, we measured a sequence of body positions with and without the power assist device in different object location and mass, as well as surface EMG (electro-myogram) signals. The compression force of the lower back discs is estimated by a three-dimensional biomechanical human body model utilizing the position data. The results show that the range of the twist angle of his body is about 30 degree in maximum and the compression force increases about 10% due to the twist angle. With respect to the effect of the power assist device, the magnitude of the surface EMG signals of spine muscles is decreased when wearing the power assist device. It means the proposed power assist device gives a good support to him.
机译:这项研究的目的是开发一种可穿戴的动力辅助装置,该装置可帮助人举起重物。该设备旨在通过握住他的上半身重量并减小其内力来支撑他。转向降低了他的下背部椎间盘的压缩力,这是下背部受伤的主要因素。在举起运动中,他扭曲并弯曲了身体,这意味着三维运动分析对于压缩力分析是必需的。但是,有关压缩力分析的大多数相关工作都是在垂直平面上进行的。为了更好地理解举起运动的特性,本文对它进行了三维分析。使用运动捕捉系统,我们测量了有无辅助设备在不同物体位置和质量以及表面肌电图(肌电图)信号下的一系列身体位置。通过利用位置数据的三维生物力学人体模型估算下背部椎间盘的压缩力。结果表明,他的身体的扭转角范围最大为约30度,并且由于扭转角,压缩力增加了约10%。关于动力辅助装置的效果,当佩戴动力辅助装置时,脊柱肌肉的表面EMG信号的大小减小。这意味着所建议的动力辅助装置将为他提供良好的支持。

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