在长时间的太空飞行中,身体质量会发生变化。

Sara R Zwart, Ryan D Launius, Geoffrey K Coen, Jennifer L L Morgan, John B Charles, Scott M Smith
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引用次数: 19

摘要

背景:在早期的航天飞行中,许多机组人员没有满足他们的热量需求,因此在飞行期间体重下降,这是通过飞行后体重下降来评估的。在航天飞行期间保持身体质量对保持机组人员健康至关重要,因此监测身体质量对医疗操作很重要,也是人类研究的一个关键组成部分。在微重力环境下,确定体重变得很困难。方法:我们报告了国际空间站(ISS)上的两个质量测量装置的数据:俄罗斯的身体质量测量装置(BMMD),它使用弹簧振荡物理,以及美国宇航局的空间线性加速度质量测量装置(SLAMMD),它使用牛顿第二运动定律(F = ma)。结果:在这两种设备上测量体重的25名机组人员中,与飞行前(重力秤)相比,发生了明显的体重损失,BMMD评估的平均体重损失为-4.4%,SLAMMD评估的平均体重损失为-2.8%。在飞行前30天的初始损失之后,身体质量在任务的其余时间保持不变,使用任何一种设备都可以确定。当比较最接近的SLAMMD和BMMD测量值时,两种设备的平均差异为1.1 kg(间隔6.9±6.2 d)。飞行期间的膳食摄入量约为世界卫生组织估计需水量的80%,体重的下降与飞行中能量摄入的平均水平密切相关。结论:体重监测对于监测任务期间机组人员的健康非常重要,有助于确保机组人员摄入足够的能量,以减轻航天飞行的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Body mass changes during long-duration spaceflight.

Background: During early spaceflights, many crewmembers did not meet their caloric requirements and consequently lost body mass during flight, as assessed by a decrease in postflight body mass. Maintaining body mass during spaceflight is crucial for maintaining crew health and monitoring body mass is thus important to medical operations as well as being a key component of human research. Determining body mass becomes difficult in a microgravity environment.

Methods: We report data from two mass measurement devices on the International Space Station (ISS): the Russian body mass measuring device (BMMD), which uses spring oscillation physics, and NASA's Space Linear Acceleration Mass Measurement Device (SLAMMD), which uses Newton's second law of motion (F = ma).

Results: For 25 crewmembers whose body mass was measured on both devices, significant body mass loss occurred compared to preflight (gravimetric scale) and averaged -4.4% as assessed by BMMD and -2.8% as assessed by SLAMMD. After an initial loss in the first 30 d of flight, body mass remained constant through the rest of the mission, as determined using either device. The mean difference between the two devices was 1.1 kg when the closest SLAMMD and BMMD measurements were compared (6.9 ± 6.2 d apart). Dietary intake during flight is approximately 80% of the World Health Organization estimated requirement and the decrease in body mass follows in-flight energy intake closely on average.

Conclusion: Body mass monitoring is important for monitoring crew health during a mission and to help ensure that crewmembers consume adequate energy intake to mitigate the risks of spaceflight.

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来源期刊
Aviation, space, and environmental medicine
Aviation, space, and environmental medicine 医学-公共卫生、环境卫生与职业卫生
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