头颈脊柱运动子系统的生物力学解析模型

Valentin Amortila, E. Mereuta, M. Novetschi, M. Rus, S. Vereşiu
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引用次数: 0

摘要

在分析力学的帮助下进行生物力学建模,并结合专门的IT资源和力学模拟的应用,可以提高生物力学模型的准确性。本文从分析的角度出发,利用第二种情况的拉格朗日方程,推导了三自由度生物力学系统中人体头部的运动方程。人们认为,这个生物力学子系统由3个解剖学元素组成:头部、颈椎和脊柱的其余部分(被认为是由胸区、腰椎区、骶骨区和尾骨区组成的单一元素)。在正常运动或在工作场所进行活动时,头部和脊柱受到的压力使生物力学建模不同。因此,在矢状面上考虑圆柱型关节,并将子系统作为三重倒立摆进行运动分析。该模型的主要目的是得到被认为是矩阵解析形式的机械子系统的运动微分方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYTIC MODEL OF THE SUBSYSTEM HEAD-NECK-SPINE MOVEMENT BIOMECHANICS
Biomechanical modeling with the help of analytical mechanics together with the application of dedicated IT resources and mechanical simulations lead to a higher accuracy of the biomechanical model. From an analytical point of view, this article develops the equation of motion of the human head in a biomechanical system with three degrees of freedom using the Lagrange equations of the second case. It has been considered that this biomechanical subsystem consists of 3 anatomicalelements: the head, the cervical region and the rest of the spine (considered as being a single element consisting of the thoracic region, lumbar region, sacral region and coccygeal region).The forces which stress the head and spine during normal movements or when activities in the workplace are performed make biomechanical modeling different. Therefore, the movement of the subsystem was analyzed in the sagittal plane taking into consideration joints of cylindroid type, and the subsystem as a triple inverted pendulum.The main purpose of this model was to obtain the differential equations of motion of the mechanical subsystem considered to be in the matrix-analytical form.
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