首页> 外文学位 >Evaluation of Biofidelity of Anthropomorphic Test Devices and Investigation of Cervical Spine Injury in Rear Impacts: Head-Neck Kinematics and Kinetics of Post Mortem Human Subjects.
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Evaluation of Biofidelity of Anthropomorphic Test Devices and Investigation of Cervical Spine Injury in Rear Impacts: Head-Neck Kinematics and Kinetics of Post Mortem Human Subjects.

机译:拟人化测试设备的生物保真度评估和后部撞击对颈椎损伤的研究:后人体模型受试者的头颈部运动学和动力学。

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摘要

Cervical spine injuries in rear impact collisions are very common and result in enormous societal cost, with estimates on the order of ;An experimental seat was designed to measure external loads on the head restraint (4 load cells), seat back (6 load cells), and seat pan (4 load cells) such that occupant dynamic interaction with the seat could be evaluated. A method for obtaining accurate 6 degrees of freedom (DOF) head kinematics in rear impact conditions is proposed and validated. A new instrumentation and dissection technique was proposed and validated in which instrumentation (three accelerometers, three angular rate sensors) capable of measuring the detailed intervertebral kinematics are installed on the anterior aspect of each vertebral body with no muscular damage. A total of seventeen sled tests using eight male PMHS (175+/- 6.9 cm of stature and 78.4 +/- 7.7 kg of weight) and a total of ten sled tests using rear impact ATDs (BioRID II, RID3D, and Hybrid III) have been conducted in both low (8.5g and 17km/h) and moderate (10.5g and 24km/h) speed rear impacts.;Biofidelity of the rear impact ATDs was assessed using the NHTSA Biofidelity Ranking system, which has been improved by compensating phase differences between the PMHS and the ATDs. Overall, both the BioRID II and RID3D were more biofidelic than the Hybrid III in both low and moderate speeds. Injury analyses were performed to find the best predictable physical parameters. Based on the results from the injury analysis, the intervertebral rotation exhibited best statistical significance, correlation with the injuries (0.68 of Pseudo R2 and 0.80 of Nagelkerke R2), goodness of fit of the regression model (-11.09 of log-likelihood with 0.00 of p-value), and predictive ability of the injuries (0.95 of Goodman-Kruskal Gamma). The current neck injury criteria were assessed and IV-NIC was selected as a best predictor of the injuries. The NDC for the rotation (NDCr) also showed good correlation with the intervertebral rotation. Two possible physical parameters for the potential neck injury criteria, OC-to-T1 linear velocity in the shear direction and OC-to-T1 angular velocity, were selected based on the correlation analyses.
机译:后方碰撞中颈椎受伤非常普遍,并导致巨大的社会成本,估计值约为;设计了一个实验座椅,用于测量头枕(4个测力传感器),座椅靠背(6个测力传感器)的外部负载以及座椅底板(4个称重传感器),以便可以评估乘员与座椅的动态相互作用。提出并验证了一种在后部撞击条件下获得准确的6自由度(DOF)头部运动学的方法。提出并验证了一种新的器械和解剖技术,其中能够测量详细的椎间运动学的器械(三个加速度计,三个角速度传感器)安装在每个椎体的前侧,而没有肌肉损伤。使用八个雄性PMHS(身高175 +/- 6.9厘米,体重78.4 +/- 7.7公斤)进行的总共17次雪橇测试,以及使用后部冲击ATD(BioRID II,RID3D和Hybrid III)进行的总共10次雪橇测试已在低速(8.5g和17km / h)和中速(10.5g和24km / h)的后碰撞中进行;;后碰撞ATD的生物保真度使用NHTSA生物保真度排名系统进行了评估,该系统通过补偿得以改善PMHS和ATD之间的相位差。总体而言,无论是低速还是中速,BioRID II和RID3D的生物杀伤性都比Hybrid III高。进行伤害分析以找到最佳的可预测物理参数。根据伤害分析的结果,椎间旋转表现出最佳的统计意义,与伤害相关(Pseudo R2为0.68,Nagelkerke R2为0.80),回归模型的拟合优度(对数似然为-11.09,0.00为0.00)。 p值)和伤害的预测能力(Goodman-Kruskal Gamma为0.95)。评估当前的颈部损伤标准,并选择IV-NIC作为损伤的最佳预测指标。旋转的NDC(NDCr)也显示出与椎间旋转的良好相关性。根据相关性分析,为潜在的颈部损伤标准选择了两个可能的物理参数:剪切方向上的OC-T1线速度和OC-T1角速度。

著录项

  • 作者

    Kang, Yun Seok.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 452 p.
  • 总页数 452
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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