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OVERVIEW OF THE NAVAIR SPINAL INJURY MITIGATION PROGRAM

机译:海军脊髓损伤缓解计划概述

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In order to enhance flight performance, numerous Naval and joint DoD development programs feature head-supported devices (HSD) for fixed and rotary wing aircraft, e.g. night vision goggles and displays. However, wearing these systems during long duration operations or while exposed to repeated shock, impact, ejection, and crash increases the risk of spinal injury. Factors that affect injury tolerance include the additional weight, which typically pitches the head forward, age, gender, work/rest cycle, cervical orientation, and behavior. Limited applicable risk criteria exist due to specific gaps in our knowledge of spinal injury in aerospace environments. Current injury criteria are principally based on automotive crash data using individuals without headgear. The Office of Naval Research is sponsoring a multidisciplinary effort led by NAVAIR to quantitatively determine the risk of injury through the development of an anatomically based parameterized probabilistic spinal injury prediction model. This effort includes conducting a series of studies to fill those knowledge gaps and apply the data to build a validated model that accounts for gender, size, and loading factors. New techniques have also been developed to quantify parachute opening shock loads and determine the limits of dynamic neck strength and endurance. By applying these tools, neck injury mitigation devices have been prototyped.
机译:为了提高飞行性能,许多海军和国防部联合开发计划都采用了用于固定翼飞机和旋翼飞机的头戴式设备(HSD)。夜视镜和显示器。但是,在长时间运行过程中或在反复遭受冲击,撞击,弹出和撞击的情况下佩戴这些系统会增加脊柱受伤的风险。影响容忍度的因素包括额外的重量,通常使头部向前倾斜,年龄,性别,工作/休息周期,颈椎方位和行为。由于我们在航空航天环境中脊柱损伤的知识方面存在特定差距,因此存在有限的适用风险标准。当前的伤害标准主要基于使用没有头盔的个人的汽车碰撞数据。海军研究办公室正在赞助由NAVAIR领导的多学科研究,以通过开发基于解剖学的参数化概率性脊柱损伤预测模型来定量确定损伤风险。这项工作包括进行一系列研究以填补这些知识空白,并应用数据来建立一个经过验证的模型,该模型可以说明性别,人数和负荷因素。还开发了新技术来量化降落伞打开时的冲击载荷并确定动态颈部力量和耐力的极限。通过应用这些工具,减轻了颈部伤害的设备已经成为原型。

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