Department of Medical Engineering and Technomathematics, University of Applied Sciences Aachen, Aachen, Germany.
Institute of Movement and Neurosciences, German Sport University Cologne, Cologne, Germany.
Sci Rep. 2021 Nov 19;11(1):22555. doi: 10.1038/s41598-021-00527-9.
The international partnership of space agencies has agreed to proceed forward to the Moon sustainably. Activities on the Lunar surface (0.16 g) will allow crewmembers to advance the exploration skills needed when expanding human presence to Mars (0.38 g). Whilst data from actual hypogravity activities are limited to the Apollo missions, simulation studies have indicated that ground reaction forces, mechanical work, muscle activation, and joint angles decrease with declining gravity level. However, these alterations in locomotion biomechanics do not necessarily scale to the gravity level, the reduction in gastrocnemius medialis activation even appears to level off around 0.2 g, while muscle activation pattern remains similar. Thus, it is difficult to predict whether gastrocnemius medialis contractile behavior during running on Moon will basically be the same as on Mars. Therefore, this study investigated lower limb joint kinematics and gastrocnemius medialis behavior during running at 1 g, simulated Martian gravity, and simulated Lunar gravity on the vertical treadmill facility. The results indicate that hypogravity-induced alterations in joint kinematics and contractile behavior still persist between simulated running on the Moon and Mars. This contrasts with the concept of a ceiling effect and should be carefully considered when evaluating exercise prescriptions and the transferability of locomotion practiced in Lunar gravity to Martian gravity.
国际空间机构合作伙伴已同意可持续地向月球推进。月球表面的活动(0.16g)将使机组人员能够提高在火星上扩大人类存在所需的探索技能(0.38g)。虽然实际微重力活动的数据仅限于阿波罗任务,但模拟研究表明,随着重力水平的下降,地面反作用力、机械功、肌肉激活和关节角度减小。然而,这些运动生物力学的改变并不一定与重力水平成比例,腓肠肌内侧的激活减少甚至在 0.2g 左右趋于平稳,而肌肉激活模式仍然相似。因此,很难预测在月球上跑步时腓肠肌内侧的收缩行为是否基本上与火星上的相同。因此,本研究在垂直跑步机设施上调查了在 1g、模拟火星重力和模拟月球重力下跑步时下肢关节运动学和腓肠肌内侧的行为。结果表明,在模拟的月球和火星跑步之间,微重力引起的关节运动学和收缩行为的改变仍然存在。这与上限效应的概念形成对比,在评估在月球重力下进行的运动的运动处方和可转移性时应谨慎考虑。