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INJURIES TO POST MORTEM HUMAN SURROGATES IN OBLIQUE AIRCRAFT SEAT ENVIRONMENT

机译:倾斜飞机座椅环境中验尸人替代品的伤害

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Increased interest in the airline industry to enhance occupant comfort and maximize seating density has prompted the design and installation of obliquely mounted seats in aircraft. The potential for injury and their mechanism in this seating environment is unknown. Epidemiology-based field injury data do not exist for airplane crashes, however, typical impact scenarios have been determined and safety standards addressing fore, aft, and side-facing seats have been levied by the FAA. The impact scenarios defined in these standards can be used to study likely injuries and injury mechanisms using Post Mortem Human Surrogates (PMHS) in a controlled laboratory environment. Four PMHS were seated upright with Frankfurt plane horizontal in a custom designed seat configured to simulate potential aircraft environments and candidate restraint geometries. A scaled Part 25.562 Emergency Landing condition for horizontal impact was used as the dynamic test input. High speed video recorded occupant kinematics. Pre and posttest x-rays and CT’s were obtained and autopsies were conducted. Severe injuries to the cervical, thoracic, and lumbar spine were observed in three of the four specimens and attributed to torso flail. Pelvis injuries likely caused by the seat belt were found in two tests. Multiple rib fractures were also seen, caused by contact with arm rest or other body regions. The fourth test was run at a lower severity and did not produce injury. This suggests a conservative threshold for human tolerance to this loading environment. Although the study is of a limited sample size, it suggests the need for further testing to develop standards that provide similar levels of safety for obliquely mounted seats as forward/aft facing seats in aircraft.
机译:增加了航空公司行业的兴趣,以提高乘员舒适性,最大化座位密度促使在飞机上的倾斜安装座椅的设计和安装。在这个座位环境中受伤的可能性及其机制是未知的。飞机崩溃不存在基于流行病学的现场损伤数据,但是,FAA已经确定了典型的影响方案,并由FAA征收了前置,船尾和侧面座位的安全标准。这些标准中定义的影响方案可用于研究在受控实验室环境中使用验尸人替代物(PMHS)的可能伤害和损伤机制。四个PMH与法兰克福平面直立,在定制设计的座椅中横向,配置为模拟潜在的飞机环境和候选克制几何形状。用于水平冲击的缩放部分25.562应急起落状况作为动态测试输入。高速视频录制乘员运动学。获得了预先和后塔X射线和CT,并进行了尸检。在四个标本中的三个中观察到宫颈癌,胸腔和腰椎的严重损伤,并归因于躯干枯萎病。在两个测试中发现了可能由安全带引起的骨盆受伤。还可以看到多个肋骨骨折,由与臂静止或其他体积接触引起的。第四种测试以较低的严重程度运行,并没有产生伤害。这表明对这种装载环境的人类耐受的保守阈值。虽然该研究具有有限的样本量,但它表明需要进一步测试,以开发提供类似的安全性水平的标准,以在飞机中的前进/尾部面向座椅。

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