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COMPUTER SIMULATION OF LUMBAR SPINE FUNCTION

机译:腰椎脊柱功能的计算机模拟

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An understanding of the mechanical response of the lumbar human spine is pertinent to numerous medical problems. Among these are pathogenesis of the lumbar discs-segments degeneration, effects of vertebral arthrodesis, endplate fractures during pilot ejection, effects of the short-time dynamical loadings in special working processes or some types of sports activities, disc replacement and development and correction of spinal deformities. The human spine represents a complex columnar in space curved structure occurring in the "delicate" equilibrium state. In the diseased (or injured) state this equilibrium is disturbed. Low back pain presents one of such disturbance. Since mechanical factors play a significant role in the onset of low back pain, in vitro biomechanical studies may be undertaken to provide a basic understanding of the proportional resistance offered by the various spinal elements in response to external loading. This contribution deals with biomechanical modeling of the human lumbar spine. The study of the stress - strain distributions, deflections and stiffness of segments L1-L5 under statical loads is presented. The technique of the biomechanical modeling is described and 3D FEM of spine segment is used.
机译:理解腰椎人脊柱的机械反应与许多医学问题相关。其中包括腰椎盘分段的发病机制退化,椎管肌瘤的影响,在试验喷射过程中,底板裂缝,特殊工作过程中的短时动力载荷的影响或某些类型的体育活动,椎间盘替代和开发和脊柱矫正畸形。人脊柱表示在“精致”平衡状态下发生的空间弯曲结构中的复杂柱状。在患病(或受伤)状态下,这种均衡受到干扰。腰痛呈现出这样的骚动之一。由于机械因素在低腰疼痛的发作中发挥着重要作用,因此可以进行体外生物力学研究,以提供对各种脊柱元素提供的比例阻力的基本了解响应外部载荷。这种贡献涉及人腰椎的生物力学建模。介绍了静态载荷下区段L1-L5的应力 - 应变分布,偏转和刚度的研究。描述了生物力学建模的技术,并使用了脊柱段的3D PEM。

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