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Lateral Neck Injury Assessments in Side Impact Using Post Mortem Human Subject Tests

机译:使用事后人类人体测试评估侧面碰撞中的颈项外侧损伤

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摘要

Current neck injury criteria are based on matching upper cervical spine injuries from piglet tests to airbag deployment loads and pairing kinematics from child dummies. These “child-based” scaled data together with adult human cadaver tolerances in axial loading are used to specify neck injury thresholds in axial compression and tension, and flexion and extension moment about the occipital condyles; no thresholds are specified for any other force or moment including lateral bending. The objective of this study was to develop a testing methodology and to determine the lateral bending moment injury threshold under coronal loading. Post mortem human subjects (PMHS) were used. Specimens consisted of whole body and isolated head-neck complexes with intact musculature. Intact specimen positioning included: sitting PMHS upright on a rigid seat, supporting the torso by a plate, maintaining Frankfurt plane horizontal. Isolated head-neck complexes were fixed at T1 with the occiput connected via a custom apparatus to a testing device to induce lateral bending motion. Head angular and linear accelerations and angular velocities were computed using a pyramid nine accelerometer package on the head; specimen-specific physical properties including center of gravity and moments of inertia in the three-dimensions; and equations of equilibrium. These data were used to determine neck loads at the occipital condyles. No specimens sustained injuries, identified by palpation, x-rays, CT, and autopsy. Results from 24 tests indicated that PMHS head-neck complexes can tolerate 75 Nm of coronal moment at low axial load without failure, and this level may be used as an initial estimate of the injury reference value under lateral loading to the human head-neck complex.
机译:当前的颈部损伤标准是基于将仔猪试验中的上颈椎损伤与安全气囊展开负荷相匹配,以及儿童假人的运动学配对。这些“基于儿童”的缩放数据与成人人体尸体在轴向载荷中的公差一起用于指定轴向压缩和拉伸以及枕骨about周围的屈伸力矩的颈部损伤阈值。没有为任何其他力或力矩(包括横向弯曲)指定阈值。这项研究的目的是开发一种测试方法并确定在冠状载荷下的侧弯矩损伤阈值。使用了尸检后的人类受试者(PMHS)。标本包括完整的肌肉组织和全身孤立的头颈复合体。完整的样本定位包括:将PMHS直立在刚性座椅上,用平板支撑躯干,保持法兰克福飞机水平。隔离的头颈复合体固定在T1,枕骨通过定制设备连接到测试设备,以引起横向弯曲运动。头部的角加速度和线性加速度以及角速度是使用头部的金字塔九加速度计套件计算的;特定于样品的物理特性,包括三个维度的重心和惯性矩;和平衡方程。这些数据用于确定枕con的颈部负荷。触诊,X射线,CT和尸检均未发现标本遭受伤害。 24个测试的结果表明,PMHS头颈复合体在低轴向载荷下可以承受75 Nm的冠状矩而不会发生故障,该水平可用作对人头颈复合体侧向载荷下损伤参考值的初始估计。

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