Harris Katie M, Petersen Lonnie G, Weber Tobias
Faculty of Medicine, Memorial University of Newfoundland, St. John's, NL, Canada.
Department of Mechanical and Aerospace Engineering, University of California San Diego, San Diego, CA, USA.
NPJ Microgravity. 2020 Dec 17;6(1):38. doi: 10.1038/s41526-020-00127-3.
Mitigation of spaceflight-related pathologies such as spaceflight-associated neuro-ocular syndrome (SANS) and the recently discovered risk of venous thrombosis must happen before deep space exploration can occur. Lower body negative pressure (LBNP) can simulate gravitational stress during spaceflight that is likely to counteract SANS and venous thrombosis, but the ideal dose and method of delivery have yet to be determined. We undertook a review of current LBNP literature and conducted a gap analysis to determine the steps needed to adapt LBNP for in-flight use. We found that to use LBNP in flight, it must be adapted to long time duration/low pressure use that should be compatible with crew activities. A lack of understanding of the etiology of the pathologies that LBNP can counteract hinders the application of LBNP as a countermeasure during spaceflight. Future research should aim at filling the knowledge gaps outlined in this review.
在进行深空探索之前,必须减轻与太空飞行相关的病症,如太空飞行相关神经眼科综合征(SANS)以及最近发现的静脉血栓形成风险。下体负压(LBNP)可以模拟太空飞行期间的重力应激,这可能会对抗SANS和静脉血栓形成,但理想的剂量和给药方法尚未确定。我们对当前的LBNP文献进行了综述,并进行了差距分析,以确定使LBNP适用于飞行中使用所需的步骤。我们发现,要在飞行中使用LBNP,必须使其适应长时间/低压力使用,且应与机组人员的活动相兼容。对LBNP可对抗的病症病因缺乏了解,阻碍了LBNP作为太空飞行期间对策的应用。未来的研究应致力于填补本综述中概述的知识空白。