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抗阻运动和营养补充对头低位卧床休息时动态脑自动调节的影响。

Effects of Resistance Exercise and Nutritional Supplementation on Dynamic Cerebral Autoregulation in Head-Down Bed Rest.

作者信息

Kermorgant Marc, Nasr Nathalie, Custaud Marc-Antoine, Navasiolava Nastassia, Arbeille Philippe, Guinet Patrick, Labrunée Marc, Besnier Florent, Arvanitis Dina N, Czosnyka Marek, Senard Jean-Michel, Pavy-Le Traon Anne

机构信息

INSERM UMR 1048, Institute of Cardiovascular and Metabolic Diseases (I2MC), Toulouse, France.

Department of Neurology, Institute for Neurosciences, Toulouse University Hospital, Toulouse, France.

出版信息

Front Physiol. 2019 Aug 27;10:1114. doi: 10.3389/fphys.2019.01114. eCollection 2019.

Abstract

Head-down bed rest (HDBR) is commonly considered as ground-based analog to spaceflight and simulates the headward fluid shift and cardiovascular deconditioning associated with spaceflight. We investigated in healthy volunteers whether HDBR, with or without countermeasures, affect cerebral autoregulation (CA). Twelve men (at selection: 34 ± 7 years; 176 ± 7 cm; 70 ± 7 kg) underwent three interventions of a 21-day HDBR: a control condition without countermeasure (CON), a condition with resistance vibration exercise (RVE) comprising of squats, single leg heel, and bilateral heel raises and a condition using also RVE associated with nutritional supplementation (NeX). Cerebral blood flow velocity was assessed using transcranial Doppler ultrasonography. CA was evaluated by transfer function analysis and by the autoregulatory index (Mxa) in order to determine the relationship between mean cerebral blood flow velocity and mean arterial blood pressure. In RVE condition, coherence was increased after HDBR. In CON condition, Mxa index was significantly reduced after HDBR. In contrast, in RVE and NeX conditions, Mxa were increased after HBDR. Our results indicate that HDBR without countermeasures may improve dynamic CA, but this adaptation may be dampened with RVE. Furthermore, nutritional supplementation did not enhance or worsen the negative effects of RVE. These findings should be carefully considered and could not be applied in spaceflight. Indeed, the subjects spent their time in supine position during bed rest, unlike the astronauts who perform normal daily activities.

摘要

头低位卧床休息(HDBR)通常被视为太空飞行的地面模拟方式,可模拟与太空飞行相关的头向体液转移和心血管机能失调。我们在健康志愿者中研究了有无对策的HDBR是否会影响脑自动调节(CA)。12名男性(入选时:34±7岁;176±7厘米;70±7千克)接受了为期21天的HDBR的三项干预措施:无对策的对照条件(CON)、包括深蹲、单腿足跟抬起和双侧足跟抬起的抗阻振动运动(RVE)条件,以及使用与营养补充剂(NeX)相关的RVE的条件。使用经颅多普勒超声评估脑血流速度。通过传递函数分析和自动调节指数(Mxa)评估CA,以确定平均脑血流速度与平均动脉血压之间的关系。在RVE条件下,HDBR后相干性增加。在CON条件下,HDBR后Mxa指数显著降低。相比之下,在RVE和NeX条件下,HBDR后Mxa增加。我们的结果表明,无对策的HDBR可能会改善动态CA,但这种适应性可能会因RVE而减弱。此外,营养补充剂并未增强或恶化RVE的负面影响。这些发现应仔细考虑,且不能应用于太空飞行。实际上,受试者在卧床休息期间处于仰卧位,这与进行正常日常活动的宇航员不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/740d/6718616/f892314ad35b/fphys-10-01114-g001.jpg

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