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用于模拟人体对振动应力响应的三维生物力学模型。

Three-dimensional biomechanical model for simulating the response of the human body to vibration stress.

作者信息

Fritz M

机构信息

Institut für Arbeitsphysiologie, Universität Dortmund, Germany.

出版信息

Med Biol Eng Comput. 1998 Nov;36(6):686-92. doi: 10.1007/BF02518870.

Abstract

Several investigations have revealed that long-term exposure to whole-body vibrations can induce low back pain. In analogy to materials handling, the health risk can be assessed if the forces transmitted in the spine during vibration are known. To estimate the forces a biomechanical model has been developed in which the human trunk, neck, head and arms are represented by 16 rigid bodies. An additional body simulates the vibrating seat. The bodies are connected by visco-elastic joint elements, and 56 force elements imitate the trunk and neck muscles. The motion equations are derived by means of the dynamics of systems of rigid bodies, and the motions are simulated in three directions. The frequency-response functions between the accelerations of the seat and the head satisfactorily correspond to data reported in the literature. The spine forces are composed of a static part, due to body posture, and a vibration-induced part. The relation between the oscillating parts of the forces transmitted from seat to pelvis and the spine forces are also described by frequency-response functions. To assess the health risk the simulated spine forces must be compared with the strength of the spine, bearing in mind that this is dependent on the number of load cycles.

摘要

多项调查显示,长期全身振动会引发腰痛。与物料搬运类似,如果已知振动过程中脊柱所传递的力,就可以评估健康风险。为了估算这些力,已经开发了一种生物力学模型,其中人体躯干、颈部、头部和手臂由16个刚体表示。另外一个物体模拟振动座椅。这些物体通过粘弹性关节元件连接,56个力元件模拟躯干和颈部肌肉。通过刚体系统动力学推导运动方程,并在三个方向上模拟运动。座椅和头部加速度之间的频率响应函数与文献报道的数据令人满意地相符。脊柱力由因身体姿势产生的静态部分和振动诱发部分组成。从座椅传递到骨盆的力的振荡部分与脊柱力之间的关系也由频率响应函数描述。为了评估健康风险,必须将模拟的脊柱力与脊柱强度进行比较,同时要记住这取决于负载循环的次数。

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