...
首页> 外文期刊>Biomechanics and modeling in mechanobiology >A forward dynamics simulation of human lumbar spine flexion predicting the load sharing of intervertebral discs, ligaments, and muscles
【24h】

A forward dynamics simulation of human lumbar spine flexion predicting the load sharing of intervertebral discs, ligaments, and muscles

机译:腰椎前屈的前向动力学模拟,预测椎间盘,韧带和肌肉的负荷分担

获取原文
获取原文并翻译 | 示例
           

摘要

Determining the internal dynamics of the human spine's biological structure is one essential step that allows enhanced understanding of spinal degeneration processes. The unavailability of internal load figures in other methods highlights the importance of the forward dynamics approach as the most powerful approach to examine the internal degeneration of spinal structures. Consequently, a forward dynamics full-body model of the human body with a detailed lumbar spine is introduced. The aim was to determine the internal dynamics and the contribution of different spinal structures to loading. The multi-body model consists of the lower extremities, two feet, shanks and thighs, the pelvis, five lumbar vertebrae, and a lumped upper body including the head and both arms. All segments are modelled as rigid bodies. 202 muscles (legs, back, abdomen) are included as Hill-type elements. 58 nonlinear force elements are included to represent all spinal ligaments. The lumbar intervertebral discs were modelled nonlinearly. As results, internal kinematics, muscle forces, and internal loads for each biological structure are presented. A comparison between the nonlinear (new, enhanced modelling approach) and linear (standard modelling approach, bushing) modelling approaches of the intervertebral disc is presented. The model is available to all researchers as ready-to-use C/C++ code within our in-house multi-body simulation code demoa with all relevant binaries included.
机译:确定人体脊柱生物结构的内部动力学是一个必不可少的步骤,可以增进对脊柱变性过程的了解。其他方法无法获得内部载荷数据,这凸显了前向动力学方法作为检查脊柱结构内部退化的最强大方法的重要性。因此,引入了具有详细腰椎的人体的前向动力学全身模型。目的是确定内部动力学以及不同脊柱结构对负荷的贡献。多体模型由下肢,两只脚,小腿和大腿,骨盆,五个腰椎和一个包括头和双臂的集总上半身组成。所有线段均建模为刚体。 202种肌肉(腿,背部,腹部)被包括为Hill型元素。包括58个非线性力元件,代表所有脊柱韧带。腰椎间盘被非线性建模。结果,呈现了每个生物结构的内部运动学,肌肉力和内部负荷。提出了椎间盘的非线性(新的,增强的建模方法)和线性(标准的建模方法,衬套)建模方法之间的比较。该模型可供我们的内部多体仿真代码演示中的现成C / C ++代码使用,其中包括所有相关的二进制文件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号