...
首页> 外文期刊>Traffic Injury Prevention >Importance of Physical Properties of the Human Head on Head-Neck Injury Metrics
【24h】

Importance of Physical Properties of the Human Head on Head-Neck Injury Metrics

机译:人头的物理特性对头颈部损伤度量的重要性

获取原文
获取原文并翻译 | 示例
           

摘要

Objectives: To demonstrate the importance of using specimen-specific head physical properties in head-neck dynamics. Methods: Eight postmortem human subjects were subjected to side impact. A 9-axis accelerometer package was used to obtain head translational accelerations. After test, the head was isolated at the skull base, circumference, breadth, and length were obtained, and mass, center of gravity, and occipital condylar locations and moments of inertia were determined. Using specimen-specific and gathered accelerations, 3-dimensional head center of gravity accelerations and forces and moments at the occipital condyles were computed. Head physical properties were also extracted from regression equations using external dimensions of each subject. Using these properties and gathered kinematics, above-described accelerations and forces and moments were computed and compared with specimen-specific results. Results: Head masses predicted by stature and total body mass were more in close agreement with specimen-specific data than head masses predicted by head circumference or head circumference and head length. The center of gravity to the occipital condyle vector was shorter in the literature-based dataset than the actual specimen-specific vector. Differences in moments of inertias between predicted and specimen-specific data ranged from -15 to 59 percent. Variations in peak antero-posterior shear, lateral shear, and axial force ranged from -12 to 46 percent, -21 to 78 percent, and -17 to 50 percent. Differences in peak lateral moment, sagittal moment, and axial torque ranged from -45 to 78 percent, -86 to 327 percent, and -96 to 112 percent. These were normalized using specimen-specific data. Conclusions: Considerable variations in physical properties and injury metrics between data obtained from literaturebased regression equations and actual data for each specimen suggest the critical importance of specimen-specific data to accurately describe the biodynamic response and establish tolerance criteria. Because neck dynamics control head kinematics (and vice versa), these results emphasize the need to determine physical properties of each specimen following impact tests.
机译:目的:证明在头颈部动力学中使用标本特定的头部物理特性的重要性。方法:对八名死后人类受试者进行了侧面撞击。 9轴加速度计套件用于获得头部平移加速度。测试后,将头从颅骨底部分离,获得周长,宽度和长度,并确定其质量,重心和枕骨con突位置和惯性矩。使用特定于样本的加速度和聚集的加速度,可计算3维头部重心加速度以及枕骨con突处的力和力矩。还使用每个对象的外部尺寸从回归方程中提取头部的物理特性。利用这些特性和收集的运动学,可以计算上述加速度,力和力矩,并将其与特定于样本的结果进行比较。结果:由身高和整体体重预测的头部质量与标本特定数据更相符,而不是由头围或头围和头长预测的头部质量。在基于文献的数据集中,枕骨vector矢量的重心比实际的标本特异性矢量短。预测数据和样本特定数据之间的惯性矩差异在-15%到59%之间。前后峰值剪切,横向剪切和轴向力的变化范围为-12%至46%,-21%至78%和-17%至50%。峰值横向力矩,矢状力矩和轴向转矩的差异范围为-45%至78%,-86%至327%和-96%至112%。使用标本特定数据对这些数据进行标准化。结论:从基于文献的回归方程获得的数据与每个样本的实际数据之间,物理性质和伤害指标之间存在相当大的差异,这表明样本特定数据对于准确描述生物动力反应和建立耐受标准至关重要。由于颈部动力学控制头部运动学(反之亦然),因此这些结果强调了在冲击试验后需要确定每个试样的物理性能的必要性。

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