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Human body modeling method to simulate the biodynamic characteristics of spine in vivo with different sitting postures

机译:人体建模方法模拟不同坐姿的体内脊柱生物力学特征

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The aim of this study is to model the computational model of seated whole human body including skeleton, muscle, viscera, ligament, intervertebral disc, and skin to predict effect of the factors (sitting postures, muscle and skin, buttocks, viscera, arms, gravity, and boundary conditions) on the biodynamic characteristics of spine. Two finite element models of seated whole body and a large number of finite element models of different ligamentous motion segments were developed and validated. Static, modal, and transient dynamic analyses were performed. The predicted vertical resonant frequency of seated body model was in the range of vertical natural frequency of 4 to 7Hz. Muscle, buttocks, viscera, and the boundary conditions of buttocks have influence on the vertical resonant frequency of spine. Muscle played a very important role in biodynamic response of spine. Compared with the vertical posture, the posture of lean forward or backward led to an increase in stress on anterior or lateral posterior of lumbar intervertebral discs. This indicated that keeping correct posture could reduce the injury of vibration on lumbar intervertebral disc under whole-body vibration. The driving posture not only reduced the load of spine but also increased the resonant frequency of spine.
机译:这项研究的目的是对坐下的整个人体(包括骨骼,肌肉,内脏,韧带,椎间盘和皮肤)的计算模型进行建模,以预测各种因素(坐姿,肌肉和皮肤,臀部,内脏,手臂,重力和边界条件)对脊柱的生物力学特性的影响。建立并验证了坐姿全身的两个有限元模型和不同韧带运动节段的大量有限元模型。进行了静态,模态和瞬态动态分析。坐姿人体模型的预测垂直共振频率在4至7Hz的垂直固有频率范围内。肌肉,臀部,内脏和臀部的边界条件会影响脊柱的垂直共振频率。肌肉在脊柱的生物动力反应中起着非常重要的作用。与垂直姿势相比,向前或向后倾斜的姿势导致腰椎间盘前或后侧的应力增加。这表明保持正确的姿势可以减少全身振动下腰椎间盘的振动损伤。驾驶姿势不仅减轻了脊柱的负担,而且增加了脊柱的共振频率。

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