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首页> 外文期刊>American Journal of Physiology >Acute hemodynamic responses in the head during microgravity induced by free drop in anesthetized rats.
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Acute hemodynamic responses in the head during microgravity induced by free drop in anesthetized rats.

机译:麻醉大鼠自由下落在微重力作用下头部的急性血液动力学反应。

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To examine acute hemodynamic responses to microgravity (microG) in the head, we measured carotid artery pressure (CAP) and jugular vein pressure (JVP) to calculate cephalic perfusion pressure (CPP = CAP - JVP) and recorded images of microvessels in the iris to evaluate capillary blood flow velocity (CBFV) and capillary diameter (CD) in anesthetized rats during 4.5 s of microG induced by free drop. Rats were placed in 30 degrees head-up whole body-tilted (HU, n = 7) or horizontal (flat, n = 6) position. In the flat group, none of the measured variables was significantly affected by microG, whereas in the HU group, CAP, JVP, and CPP increased, respectively, by 23.4 +/- 2.6, 1.3 +/- 0.2, and 22.9 +/- 3.1 mmHg, and CBFV and CD increased, respectively, by 33 +/- 8 and 9 +/- 3%, showing an increase in capillary blood flow. To further examine the mechanisms underlying these CAP and JVP increases, another experiment was performed in which CAP and JVP were measured in anesthetized rats (n = 6) during a posturalchange from HU to flat. In these animals, the change in JVP was similar to that observed during actual microG, but no change in CAP was seen, indicating that the JVP increase during actual microG is caused by disappearance of the gravitational pressure gradient in the head-to-foot axis, whereas the CAP increase is not. In conclusion, actual microG elicits an increase in CPP due to a greater increase in CAP than JVP, resulting in increased capillary blood flow. Although the increase in JVP is explained by the disappearance of gravitational pressure gradient in the head-to-foot axis as a result of microG, the larger increase in CAP is not.
机译:为了检查对头部微重力(microG)的急性血液动力学反应,我们测量了颈动脉压(CAP)和颈静脉压(JVP)来计算头部灌注压(CPP = CAP-JVP)并记录了虹膜中微血管的图像。在自由落体诱导的4.5 s microG期间,评估麻醉大鼠的毛细血管血流速度(CBFV)和毛细血管直径(CD)。将大鼠以30度抬起的身体倾斜方向(HU,n = 7)或水平(平坦,n = 6)放置。在扁平化组中,没有任何测量变量受microG显着影响,而在HU组中,CAP,JVP和CPP分别增加了23.4 +/- 2.6、1.3 +/- 0.2和22.9 +/- 3.1 mmHg和CBFV和CD分别增加了33 +/- 8%和9 +/- 3%,表明毛细血管血流量增加。为了进一步检查这些CAP和JVP升高的潜在机制,进行了另一项实验,其中在从HU到平直的姿势改变期间,在麻醉的大鼠(n = 6)中测量了CAP和JVP。在这些动物中,JVP的变化与实际microG期间观察到的相似,但未观察到CAP的变化,这表明实际microG期间JVP的增加是由头到脚轴上的重力梯度消失引起的,而CAP却没有增加。总之,由于CAP的增加幅度大于JVP,因此实际的microG引起CPP的增加,从而导致毛细血管血流量增加。尽管JVP的增加是由microG导致的头对脚轴重力压力梯度的消失所解释的,但CAP的增加却不是。

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