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Effect of Acute Exposure to Hypergravity (Gx vs. Gz) on Dynamic Cerebral Autoregulation

机译:急性超重力暴露(Gx vs. Gz)对动态脑自动调节的影响

摘要

We examined the effects of 30 min of exposure to either +3G(sub x) or +3G(sub z) centrifugation on cerebrovascular responses to 800 head-up tilt (HUT) in 14 healthy individuals. Both before and after +3G(sub x) or +3G(sub z) centrifugation, eye-level blood pressure (BP(sub eye)), end tidal CO2 (P(sub ET)CO2), mean cerebral flow velocity (CFV) in the middle cerebral artery (trans cranial Doppler ultrasound), cerebral vascular resistance (CVR) and dynamic cerebral autoregulatory gain (GAIN) were measured with subjects in the supine position and during subsequent 800 HUT for 30 min. Mean BP(sub eye) decreased with HUT in both the G(sub x) (n= 7) and G(sub z) (n=7) groups (P less than 0.00l), with the decrease being greater after centrifugation only in the G(sub z) group (P less than 0.05). P(sub ET)CO2 also decreased with HUT in both groups (P less than 0.0l), but the absolute level of decrease was unaffected by centrifugation. CFV decreased during HUT more significantly after than before centrifugation in both groups (P less than 0.02). However, these greater decreases were not associated with greater increases in CVR. In the supine position after compared to before centrifugation, GAIN increased in both groups (P less than 0.05, suggesting an autoregulatory deficit), with the change being correlated to a measure of otolith function (the linear vestibulo-ocular reflex) in the G(sub x) group (R=0.76, P less than 0.05) but not in the G(sub z) group (R=0.24, P=0.60). However, GAIN was subsequently restored to pre-centrifugation levels during post-centrifugation HUT (i.e., as BP(sub eye) decreased), suggesting that both types of centrifugation resulted in a leftward shift of the cerebral autoregulation curve. We speculate that this leftward shift may have been due to vestibular activation (especially during +G(sub x)) or potentially to an adaptation to reduced cerebral perfusion pressure during +G(sub z).
机译:我们在14名健康个体中研究了暴露于+ 3G(sub x)或+ 3G(sub z)离心30分钟对脑血管对800头抬头倾斜(HUT)的反应的影响。 + 3G(sub x)或+ 3G(sub z)离心前后,眼平血压(BP(sub eye)),潮气末CO2(P(sub ET)CO2),平均脑血流速度(CFV) )在大脑中动脉(经颅多普勒超声检查)中,在受试者仰卧位以及随后的800 HUT进行30分钟的过程中测量了脑血管阻力(CVR)和动态脑自动调节增益(GAIN)。 G(sub x)(n = 7)和G(sub z)(n = 7)组的平均BP(sub eye)随HUT降低(P小于0.00l),仅在离心后降低幅度更大在G(sub z)组中(P小于0.05)。两组的P(sub ET)CO2均随HUT降低(P小于0.0l),但绝对降低水平不受离心作用的影响。两组离心后,HUT期间的CFV下降更为显着(P小于0.02)。但是,这些更大的下降与CVR的更大增长无关。与离心之前相比,在仰卧位时,两组的GAIN均增加(P小于0.05,表明存在自动调节缺陷),该变化与G中耳石功能(线性前庭眼反射)的量度相关( sub x)组(R = 0.76,P小于0.05),但在G(sub z)组中不存在(R = 0.24,P = 0.60)。但是,GAIN随后在离心后的HUT期间恢复到离心前的水平(即BP(sub eye)降低),表明这两种离心都会导致大脑自动调节曲线向左移动。我们推测这种向左移动可能是由于前庭激活(特别是在+ G(sub x)期间)或可能是由于适应+ G(sub z)期间脑灌注压降低。

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