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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Human Thoracolumbar Spine Tolerance to Injury and Mechanisms From Caudo-Cephalad Loading: A Parametric Modeling Study
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Human Thoracolumbar Spine Tolerance to Injury and Mechanisms From Caudo-Cephalad Loading: A Parametric Modeling Study

机译:人体胸腰椎脊柱损伤和宽容从Caudo-Cephalad加载机制:A参数的建模研究

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The aims of this investigation were to delineate the internal biomechanics of the spine under vertical impact vector and assess the probability of injury. Male and female whole-body human finite element models were used. The restrained occupants were positioned on the seat, and caudo-cephalad impacts were applied to the base. Different acceleration-time profiles (50-200ms pulse durations, 11-46g peak accelerations) were used as inputs in both models. The resulting stress-strain profiles in the cortical and cancellous bones were evaluated at different vertebral levels. Using the peak transmitted forces at the thoracolumbar disc level as the response variable, the probability of injury for the male spine was obtained from experimental risk curves for the various pulses. Results showed that the shorter pulse durations and rise times impart greater loading on the thoracolumbar spine. The analysis of von Mises stress and strain distributions showed that the compression-related fractures are multifaceted with contributions from both the cortical and cancellous bony components of the body. Profiles are provided in the paper. The intervertebral disc may be involved in the fracture mechanism, because it acts as a medium of load transfer between adjacent vertebrae. Injury risks for the shortest pulse was 63%, and for the widest pulse it was close to zero, and injury probabilities for other pulses are given. The present modeling study provides insights into the mechanisms of internal load transfer and describes injury risk levels from caudal to cephalad impacts.
机译:这个调查的目的是描述内部的脊柱生物力学垂直的向量和影响评估的概率的伤害。有限元模型。居住者被定位在座位上,caudo-cephalad影响应用到基地。不同的加速时间配置文件(50 - 200 ms脉冲持续时间,11-46g峰值加速度)作为模型输入。应力-应变皮质和概要文件松质骨进行评估在不同椎的水平。部队在胸腰椎椎间盘水平响应变量,受伤的概率男性脊柱从实验获得风险曲线的各种脉冲。表明,短脉冲持续时间和上升次传授更多的加载在胸腰椎脊柱。表明,应变分布compression-related骨折是多方面的皮质和贡献松质骨的组成部分。提供。盘可能参与断裂机理,因为它可以充当荷载传递媒介相邻椎骨之间。最短脉冲是63%,和最宽的脉冲它接近于零,受伤的概率对于其他脉冲。的机制研究提供了见解内部荷载传递和描述了受伤的风险从尾水平向头部地影响。

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