在太空飞行和在地球上重新适应1年后,脊椎骨密度和脊肌肉形态的变化
Jennifer C Coulombe1,2, Fjola Johannesdottir1,2, Katelyn A Burkhart1
1Center for Advanced Orthopedic Studies, Department of Orthopedic Surgery Beth Israel Deaconess Medical Center Boston Massachusetts USA.
JBMR plus
|December 22, 2023
概括
太空飞行会导致脊柱的骨质损失显著,特别是在上脊椎区域. 肌肉质量和密度也减少,在地球上一年后恢复不完全,可能导致宇航员背部疼痛.
科学领域:
- 太空医学 太空医学
- 肌肉骨生理学 肌肉骨生理学
- 骨生物学 骨生物学 骨生物学
背景情况:
- 宇航员在返回地球后面临脊柱问题增加的风险,如背痛和椎间盘.
- 了解太空飞行和重新适应对脊髓组织的影响对于宇航员健康至关重要.
研究的目的:
- 在太空飞行后调查脊椎体的区域性骨损失.
- 评估在太空飞行之前,期间和之后的脊椎骨密度和脊肌肉形态之间的关系.
主要方法:
- 腰椎的计算机断层扫描 (CT) 扫描被用来测量椎骨矿物质密度 (Tb.BMD),副脊髓肌肉截面面积 (CSA) 和肌肉密度.
- 在飞行前,航天飞行后 (大约17名宇航员) 从17名宇航员那里进行了测量. 6个月),并在重新适应地球引力的12个月后.
主要成果:
- 太空飞行导致较高的骨损失在上脊椎区域 (-6.7%) 与较低的和横向区域.
- 副脊髓肌肉CSA和密度在太空飞行每月显著下降.
- 经过一年的重新适应后,横向区域的Tb.BMD仍然低于飞行前的水平.
结论:
- 太空飞行引起的骨损失,特别是在上脊椎体,以及副脊柱肌肉脱可能导致宇航员的脊柱病理.
- 在地球一年后,骨密度和肌肉健康的不完全恢复凸显了太空旅行对脊椎的长期影响.
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