Suppr超能文献

月球定居点圆形墙壁内的水平跑步:一种应对低重力适应性下降的综合对策?

Horizontal running inside circular walls of Moon settlements: a comprehensive countermeasure for low-gravity deconditioning?

作者信息

Minetti Alberto E, Luciano Francesco, Natalucci Valentina, Pavei Gaspare

机构信息

Locomotion Physiomechanics Laboratory, Department of Pathophysiology and Transplantation, University of Milan, Milan, Italy.

出版信息

R Soc Open Sci. 2024 May 1;11(5):231906. doi: 10.1098/rsos.231906. eCollection 2024 May.

Abstract

Long-lasting exposure to low gravity, such as in lunar settlements planned by the ongoing Artemis Program, elicits muscle hypotrophy, bone demineralization, cardio-respiratory and neuro-control deconditioning, against which optimal countermeasures are still to be designed. Rather than training selected muscle groups only, 'whole-body' activities such as locomotion seem better candidates, but at Moon gravity both 'pendular' walking and bouncing gaits like running exhibit abnormal dynamics at faster speeds. We theoretically and experimentally show that much greater self-generated artificial gravities can be experienced on the Moon by running horizontally inside a static 4.7 m radius cylinder (motorcyclists' 'Wall of Death' of amusement parks) at speeds preventing downward skidding. To emulate lunar gravity, 83% of body weight was unloaded by pre-tensed (36 m) bungee jumping bands. Participants unprecedentedly maintained horizontal fast running (5.4-6.5 m s) for a few circular laps, with intense metabolism (estimated as 54-74 mlO kg min) and peak forces during foot contact, inferred by motion analysis, of 2-3 Earth body weight (corresponding to terrestrial running at 3-4 m s), high enough to prevent bone calcium resorption. A training regime of a few laps a day promises to be a viable countermeasure for astronauts to quickly combat whole-body deconditioning, for further missions and home return.

摘要

长期暴露在低重力环境中,比如在目前的阿尔忒弥斯计划所规划的月球定居点中,会引发肌肉萎缩、骨质流失、心肺功能和神经控制机能衰退,而针对这些问题的最佳应对措施仍有待设计。相较于仅训练特定肌肉群,像移动这样的“全身”活动似乎是更好的选择,但在月球重力环境下,无论是“摆动式”行走还是像跑步这样的跳跃步态,在速度较快时都会呈现出异常的动力学特征。我们通过理论和实验表明,在月球上,当在一个半径为4.7米的静止圆柱体(类似于游乐园中摩托车手的“死亡之墙”)内水平奔跑,且速度能防止向下滑行时,可以体验到比自身重力大得多的人造重力。为模拟月球重力,通过预先拉伸(36米)的蹦极带卸载了83%的体重。参与者前所未有的以5.4 - 6.5米/秒的速度在水平方向快速奔跑了几圈,新陈代谢剧烈(估计为54 - 74毫升氧气/千克/分钟),通过运动分析推断,足部接触时的峰值力为2 - 3倍地球体重(相当于在地球上以3 - 4米/秒的速度奔跑),这足以防止骨钙流失。每天进行几圈这样的训练方式有望成为宇航员快速对抗全身机能衰退的可行对策,以应对后续任务及返回地球。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验