首页> 外文会议>International astronautical congress;IAC 2008 >FORCASTING PROXIMAL FEMUR AND WRIST FRACTURE CAUSED BY A FALL TO THE SIDE DURING SPACE EXPLORATION MISSIONS TO THE MOON AND MARS
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FORCASTING PROXIMAL FEMUR AND WRIST FRACTURE CAUSED BY A FALL TO THE SIDE DURING SPACE EXPLORATION MISSIONS TO THE MOON AND MARS

机译:预测月球和火星的空间探索任务期间由于坠落而导致的近端股骨和腕部骨折

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The possibility of bone fracture in space is a concern due to the negative impact it could have on a mission. The Bone Fracture Risk Module (BFxRM) developed at the NASA Glenn Research Center is a statistical simulation that quantifies the probability of bone fracture at specific skeletal locations for particular activities or events during space exploration missions. This paper reports fracture probability predictions for the proximal femur and wrist resulting from a fall to the side during an extravehicular activity (EVA) on specific days of lunar and Martian exploration missions. The risk of fracture at the proximal femur on any given day of the mission is small and fairly constant, although it is slightly greater towards the end of the mission, due to a reduction in proximal femur bone mineral density (BMD). The risk of wrist fracture is greater than the risk of hip fracture and there is an increased risk on Mars since it has a higher gravitational environment than the moon. The BFxRM can be used to help manage the risk of bone fracture in space as an engineering tool that is used during mission operation and resource planning.
机译:空间骨折的可能性是一个令人担忧的问题,因为它可能会对任务造成负面影响。 NASA格伦研究中心开发的骨骼骨折风险模块(BFxRM)是一种统计模拟,它可以量化太空探索任务中特定活动或事件在特定骨骼位置骨折的概率。本文报道了在月球和火星探测任务的特定日子,在进行舱外活动(EVA)期间跌落到一侧所导致的股骨近端和腕部骨折概率预测。在手术的任何给定日期,在股骨近端骨折的风险很小且相当恒定,尽管由于在股骨近端骨矿物质密度(BMD)降低,在手术结束时骨折的风险稍大。腕部骨折的风险大于髋部骨折的风险,而火星的引力环境要比月球高,因此火星的风险增加。 BFxRM可作为任务操作和资源规划期间使用的工程工具,用于帮助管理空间中的骨折风险。

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