DocumentCode :
1332644
Title :
Respiratory sinus arrhythmia on the ESA-short-arm human centrifuge
Author :
Migeotte, Pierre-francóis ; Pattyn, Nathalie ; Vanspauwen, Robby ; Neyt, Xavier ; Acheroy, Marc ; Van de Heyning, Paul ; Wuyts, Floris L.
Author_Institution :
R. Mil. Acad., Brussels, Belgium
Volume :
28
Issue :
6
fYear :
2009
Firstpage :
86
Lastpage :
91
Abstract :
In this article, we investigated the hypothesis that the effects of hypergravity on respiratory sinus arrhythmia (RSA) can mimic the effects observed after spaceflight cardiovascular deconditioning. Artificial gravity along the head-to-feet axis on a short-arm centrifuge induces gravity gradients. This physiological condition of significantly higher g at the feet than at the heart level is specific and likely induces blood sequestration in the lower limbs. After spaceflight, astronauts are in a condition of cardiovascular deconditioning, where blood pooling in the lower part of the body and autonomic adaptation are factors contributing to orthostatic intolerance and changes in heart-rate variability (HRV). ECG and respiration were recorded during imposed and controlled breathing (ICB) protocols, which were repeated at different levels of artificial gravity as well as during supine and standing control conditions, and the changes were analyzed.
Keywords :
blood; electrocardiography; haemodynamics; pneumodynamics; zero gravity experiments; ECG recording; ESA short arm human centrifuge; RSA; artificial gravity; autonomic adaptation; blood pooling; cardiorespiratory interactions; heart rate variability changes; hypergravity effects; imposed and controlled breathing protocols; induced gravity gradients; microgravity effects; orthostatic intolerance; respiration recording; respiratory sinus arrhythmia; spaceflight cardiovascular deconditioning; standing conditions; supine conditions; Blood; Cardiology; Electrocardiography; Gravity; Hafnium; Heart rate; Heart rate variability; Humans; Optical modulation; Protocols; Arrhythmia, Sinus; Astronauts; Centrifugation; Humans; Hypergravity; Models, Cardiovascular; Regression Analysis; Respiration; Space Flight;
fLanguage :
English
Journal_Title :
Engineering in Medicine and Biology Magazine, IEEE
Publisher :
ieee
ISSN :
0739-5175
Type :
jour
DOI :
10.1109/MEMB.2009.934618
Filename :
5335724
Link To Document :
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