Oblique Loading in Post Mortem Human Surrogates from Vehicle Lateral Impact Tests using Chestbands.

Q2 Medicine Stapp car crash journal Pub Date : 2015-11-09 DOI:10.4271/2015-22-0001
N. Yoganandan, J. Humm, F. Pintar, Mike W. J. Arun, Heather H Rhule, R. Rudd, M. Craig
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引用次数: 8

Abstract

While numerous studies have been conducted to determine side impact responses of Post Mortem Human Surrogates (PMHS) using sled and other equipment, experiments using the biological surrogate in modern full-scale vehicles are not available. The present study investigated the presence of oblique loading in moving deformable barrier and pole tests. Threepoint belt restrained PMHS were positioned in the left front and left rear seats in the former and left front seat in the latter condition and tested according to consumer testing protocols. Three chestbands were used in each specimen (upper, middle and lower thorax). Accelerometers were secured to the skull, shoulder, upper, middle and lower thoracic vertebrae, sternum, and sacrum. Chestband signals were processed to determine magnitudes and angulations of peak deflections. The magnitude and timing of various signal peaks are given. Vehicle accelerations, door velocities, and seat belt loads are also given. Analysis of deformation contours, peak deflections, and angulations indicated that the left rear seated specimen were exposed to anterior oblique loading while left front specimens in both tests sustained essentially pure lateral loading to the torso. These data can be used to validate human body computational models. The occurrence of oblique loading in full-scale testing, hitherto unrecognized, may serve to stimulate the exploration of its role in injuries to the thorax and lower extremities in modern vehicles. It may be important to continue research in this area because injury metrics have a lower threshold for angled loading.
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用胸带进行车辆横向碰撞试验的死后人体替代物的倾斜载荷
虽然已经进行了大量研究,以确定使用雪橇和其他设备的死后人体替代品(PMHS)的侧面碰撞反应,但在现代全尺寸车辆中使用生物替代品的实验是不可用的。本文研究了在移动变形屏障和杆体试验中斜向载荷的存在。在前一种情况下,将三点式带约束PMHS放置在左前、左后座椅上,在后一种情况下放置在左前座椅上,并根据消费者检测方案进行检测。每个标本使用三个胸带(上、中、下胸腔)。加速度计固定在颅骨、肩部、上、中、下胸椎、胸骨和骶骨上。对板条信号进行处理,以确定峰值偏转的幅度和角度。给出了各种信号峰值的幅度和时序。还给出了车辆加速度、车门速度和安全带载荷。对变形轮廓、峰值挠度和角度的分析表明,在这两项测试中,左后方坐着的标本暴露在前斜载荷下,而左前方的标本基本上只承受躯干的侧向载荷。这些数据可用于验证人体计算模型。斜载荷在全尺寸试验中的出现,迄今尚未被认识到,可能有助于探索其在现代车辆中对胸部和下肢损伤的作用。继续在这一领域的研究可能是很重要的,因为损伤指标对于角度载荷具有较低的阈值。
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Stapp car crash journal
Stapp car crash journal Medicine-Medicine (all)
CiteScore
3.20
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