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High-speed 3-D kinematics from whole-body lateral impact sled tests.

机译:全身侧向冲击雪橇测试的高速3-D运动学。

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摘要

While lateral impact sled studies have been conducted to determine injuries, injury mechanisms, and derive human tolerance using post mortem human subject (PMHS) for the chest and pelvis regions of the human body, there is a paucity of three-dimensional (3-D) motions at high-speeds. Since out-of-position occupants respond with 3-D motions even under pure frontal and lateral impacts, it is important to determine such kinematics at high-speeds in the temporal domain. Consequently, the objective of the study was to determine lateral impact-induced 3-D temporal motions at 1,000 frames per sec. PMHS were screened, seated on a sled, restrained using belt systems, and 13.5 g lateral impact acceleration was applied. Retroreflective photographic markers were placed at various locations including the head, first thoracic vertebra, sacrum, dorsal spine, and sled. 3-D coordinates of the anatomical locations of PMHS, fiducially placed markers, and sled were obtained pretest and post test. Kinematics of the head with respect to sled, head with respect to first thoracic vertebra, and first thoracic vertebra with respect to sled in the Cartesian system of reference were determined using a nine-camera system. Head and first thoracic vertebral kinematic data are reported in the paper. 3-D motions induced from lateral impacts supplement sensor-based data for improved crashworthiness evaluations.
机译:尽管已经进行了侧面撞击雪橇研究以确定人体的胸部和骨盆区域的事后人体受试者(PMHS),以确定伤害,伤害机制和得出人的耐受性,但三维(3-D)缺乏)高速运动。由于位置不正确的乘员即使在纯正的正面和侧面碰撞下也会响应3D运动,因此重要的是在时域中以高速确定此类运动学。因此,该研究的目的是确定以每秒1,000帧的速度产生的横向撞击引起的3-D时间运动。筛选PMHS,坐在雪橇上,使用皮带系统约束,并施加13.5 g的横向冲击加速度。逆反射照相标记物被放置在各个位置,包括头部,第一胸椎、,骨,背脊和雪橇。在测试前和测试后获得PMHS解剖位置,基准放置标记和雪橇的3-D坐标。在笛卡尔参考系统中,使用九相机系统确定了相对于雪橇的头部运动,相对于第一胸椎的头部运动以及相对于雪橇的第一胸椎运动。本文报道了头和第一胸椎的运动学数据。横向碰撞引起的3D运动补充了基于传感器的数据,以改善耐撞性评估。

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