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The Characterization of Spinal Compression in Various-Sized Human and Manikin Subjects during +Gz Impact

机译:各种人体和人体模型受试者在+ Gz撞击过程中的脊柱压缩特征

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Background: During +Gz impacts such as those encountered during ejection, the human torso and spine compress or slump due to the inertial forces acting on the body. Spinal compression can be characterized by a second-order differential equation involving coefficients such as damping ratio, natural frequency and spring constant. Objective: To characterize spinal compression resulting from +Gz impacts and determine how well test manikins replicate responses of similar size humans. Methods: Various-sized humans were tested with identical conditions on a vertical deceleration tower. Seat and chest accelerations were used to calculate the damping ratio, natural frequency and spring constant of each subject. Data analysis was performed to determine what correlations may exist between spinal compression and sitting height, torso mass, gender or vibration parameters. Results: Results show that spinal compression had no significant correlation to sitting height, torso mass, gender, damping ratio, undamped natural frequency or spring constant. Estimated 5th, 50th, and 95th percentiles of spinal compression were 1.1", 1.7",and 2.5" for the Vertical Impact Protection seat and 2.4", 2.8", and 3.6" for the ACES II seat. The Large JPATS, Large ADAM and LOIS manikins were found to align closely with human spinal compression.
机译:背景:在+ Gz撞击(例如在弹出过程中遇到的撞击)期间,由于作用在身体上的惯性力,人体躯干和脊柱会压缩或塌陷。脊柱压缩可以通过涉及系数如阻尼比,固有频率和弹簧常数的二阶微分方程来表征。目的:表征+ Gz冲击导致的脊柱压迫,并确定测试人体模型复制相似大小的人类的反应的能力。方法:在垂直减速塔上以相同的条件对各种规模的人进行了测试。使用座椅和胸部的加速度来计算每个对象的阻尼比,固有频率和弹簧常数。进行了数据分析,以确定脊柱受压与坐姿,躯干质量,性别或振动参数之间可能存在哪些相关性。结果:结果表明,脊柱受压与坐姿,躯干质量,性别,阻尼比,无阻尼自然频率或弹簧常数没有显着相关性。垂直防撞座椅的估计第5,第50和第95个百分位分别为1.1英寸,1.7英寸和2.5英寸,而ACES II座椅的估计为2.4英寸,2.8英寸和3.6英寸。发现大型JPATS,大型ADAM和LOIS人体模型与人体脊柱压缩紧密对齐。

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