Johnson Dale, Koya Bharath, Gayzik F Scott
Center for Injury Biomechanics, Wake Forest University, Winston-Salem, NC, United States.
Department of Biomedical Engineering, Wake Forest University, Winston-Salem, NC, United States.
Front Bioeng Biotechnol. 2020 Aug 18;8:985. doi: 10.3389/fbioe.2020.00985. eCollection 2020.
Due to the severity and frequency of cervical spine injuries, the neck injury criterion (Nij) was developed to provide a quantitative relationship between forces and moments of the upper neck with accompanied injury risk. The present study was undertaken to evaluate differences in calculated Nij for the Global Human Body Model Consortium's detailed and simplified average 50th percentile male models. The simplified model is a computationally light version of the more detailed model and therefore it is of interest to achieve similar Nij values between the two models. These models were compared in 15 match paired conditions of rigid head impact and a mixture of seven full body rigid hub and sled pulses, for 44 total simulations. Collectively, Nij values of the simplified model were found to exhibit a second-degree polynomial fit, allowing for a conversion to the prediction of the detailed model. Correlates were also derived for impact and inertial loading cases individually, for which the latter may be the subject of future work. The differences in Nij may be attributed to a variety of modeling approach differences related to neck muscles (attachment location and morphometric implementation), localization of head mass within the M50-OS, head geometry, and intervertebral joint space properties. With a primary focus on configurations in the anterior-posterior direction, there is a potential limitation in extensibility to lateral loading cases. In response to the relatively low Nij values exhibited, future work should evaluate the appropriateness of the established critical intercepts of Nij for computational human body models.
由于颈椎损伤的严重性和频繁性,颈部损伤标准(Nij)被开发出来,以提供上颈部力和力矩与伴随损伤风险之间的定量关系。本研究旨在评估全球人体模型联盟的详细和简化的平均第50百分位男性模型计算出的Nij的差异。简化模型是更详细模型的计算轻量化版本,因此使两个模型之间的Nij值相似是有意义的。在15种刚性头部撞击的匹配配对条件以及7种全身刚性轮毂和雪橇脉冲的组合下对这些模型进行了比较,总共进行了44次模拟。总体而言,发现简化模型的Nij值呈现二次多项式拟合,从而可以转换为详细模型的预测值。还分别针对撞击和惯性加载情况得出了相关性,后者可能是未来工作的主题。Nij的差异可能归因于与颈部肌肉(附着位置和形态计量学实现)、M50-OS内头部质量的定位、头部几何形状以及椎间关节空间特性相关的各种建模方法差异。主要关注前后方向的配置,对于横向加载情况的可扩展性存在潜在限制。针对所呈现的相对较低的Nij值,未来的工作应评估为计算人体模型建立的Nij临界截距的适用性。