Saltykova M, Capderou A, Atkov O, Gusakov V, Baillart O, Konovalov G, Kataev Yu, Voronin L, Kaspranskiy R, Morgun V, Vaida P
Cardiology Research Complex, Moscow, Russia.
J Gravit Physiol. 2004 Jul;11(2):P87-8.
The aim of the study was to analyze ECG (QRS) voltage responses to body fluid shift due to gravity chances. Acute changes in gravity were created by two ways: 1) changes in gravity value during parabolic flights (within 27 subjects 45 ECG have been analyzed); 2) changes in gravity direction due to rotation of the body during postural tests (within 11 subjects 14 ECG have been analyzed). Results and conclusions. Gravity change leads to body fluid shift and changes of intrathoracic organs and tissues electroconduction. It influences on ECG voltage. During parabolic flights in up-right position: R amplitude in Z axis increases in hypergravity (+0.19 mV) and decreases in microgravity (-0.24 mV). During postural tests, R amplitude in Z axis increases in orthostatic position (+0.09 mV) and decreases in antiorthostatic position (-0.025 mV). Changes in QRS voltage during parabolic flights are more important than during postural tests. This could be due to more effective blood redistribution during parabolic flights.
本研究的目的是分析由于重力变化导致体液转移时的心电图(QRS)电压反应。重力的急性变化通过两种方式产生:1)抛物线飞行期间重力值的变化(在27名受试者中分析了45份心电图);2)姿势测试期间身体旋转导致重力方向的变化(在11名受试者中分析了14份心电图)。结果与结论。重力变化导致体液转移以及胸腔内器官和组织的电传导变化。它影响心电图电压。在抛物线飞行中处于直立位置时:Z轴上的R波振幅在超重时增加(+0.19 mV),在微重力时降低(-0.24 mV)。在姿势测试期间,Z轴上的R波振幅在直立位时增加(+0.09 mV),在反直立位时降低(-0.025 mV)。抛物线飞行期间QRS电压的变化比姿势测试期间更显著。这可能是由于抛物线飞行期间血液再分配更有效。