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The LunHab project: Muscle and bone alterations in male participants following a 10?day lunar habitat simulation

机译:Lunhab项目:在10?日农历造型之后的男性参与者中的肌肉和骨骼改变

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New Findings What is the central question of this study? It is well established that muscle and bone atrophy in conditions of inactivity or unloading, but there is little information regarding the effect of a hypoxic environment on the time course of these deconditioning physiological systems. What is the main finding and its importance? The main finding is that a horizontal 10 day bed rest in normoxia results in typical muscle atrophy, which is not aggravated by hypoxia. Changes in bone mineral content or in metabolism were not detected after either normoxic or hypoxic bed rest. Abstract Musculoskeletal atrophy constitutes a typical adaptation to inactivity and unloading of weightbearing bones. The reduced‐gravity environment in future Moon and Mars habitats is likely to be hypobaric hypoxic, and there is an urgent need to understand the effect of hypoxia on the process of inactivity‐induced musculoskeletal atrophy. This was the principal aim of the present study. Eleven males participated in three 10?day interventions: (i) hypoxic ambulatory confinement; (ii) hypoxic bed rest; and (iii) normoxic bed rest. Before and after the interventions, the muscle strength (isometric maximal voluntary contraction), mass (lean mass, by dual‐energy X‐ray absorptiometry), cross‐sectional area and total bone mineral content (determined with peripheral quantitative computed tomography) of the participants were measured. Blood and urine samples were collected before and on the 1st, 4th and 10th day of the intervention and analysed for biomarkers of bone resorption and formation. There was a significant reduction in thigh and lower leg muscle mass and volume after both normoxic and hypoxic bed rests. Muscle strength loss was proportionately greater than the loss in muscle mass for both thigh and lower leg. There was no indication of bone loss. Furthermore, the biomarkers of resorption and formation were not affected by any of the interventions. There was no significant effect of hypoxia on the musculoskeletal variables. Short‐term normoxic (10?day) bed rest resulted in muscular deconditioning, but not in the loss of bone mineral content or changes in bone metabolism. Hypoxia did not modify these results.
机译:新发现这项研究的核心问题是什么?肌肉和骨骼萎缩在不活动或卸载条件下,肌肉和骨骼萎缩是很好的,但是关于缺氧环境对这些脱墨生理系统的时间过程的影响很少。主要发现和重要性是什么?主要发现是,常氧的水平10天卧床休息导致典型的肌肉萎缩,缺氧不会加剧。在常氧或缺氧床休息后未检测到骨矿物质含量或代谢的变化。摘要肌肉骨骼萎缩构成了典型的适应,以不活动和卸载骨骼骨骼。未来月亮和火星栖息地的重力环境可能是缺氧的缺氧,迫切需要了解缺氧对不活跃诱导的肌肉骨骼萎缩的影响。这是本研究的主要目标。 11名男性参加了三个10个?日间干预:(i)缺氧外国禁闭; (ii)缺氧床休息; (iii)常规床休息。在干预之前和之后,肌肉强度(等距最大自愿收缩),质量(贫质量,通过双能X射线吸收术),横截面积和总骨矿物质含量(用外围定量计算断层扫描确定)衡量参与者。在干预的第1,第4和第10天之前和第4天收集血液和尿液样品,并分析骨吸收和形成的生物标志物。在常氧和缺氧床休息后,大腿和小腿肌肉质量和体积显着降低。肌肉力量损失比例大于大腿和小腿的肌肉质量损失。没有骨丢失的迹象。此外,吸收和形成的生物标志物不受任何干预措施的影响。缺氧对肌肉骨骼变量没有显着影响。短期常规(10?日)卧床休息导致肌肉脱妆,但不导致骨矿物质含量或骨代谢的变化。缺氧没有修改这些结果。

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