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Acute response of aortic nerve activity to free drop-induced microgravity in anesthetized rats.

机译:麻醉大鼠中主动脉神经活动对游离液滴诱导的微重力的急性反应。

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摘要

To test the hypothesis that arterial baroreflex was stimulated during microgravity (microG), arterial pressure (AP), intrathoracic pressure (ITP), and aortic nerve activity (ANA) were measured in anesthetized rats during 4.5 s of microG produced by free drop. A smooth and immediate reduction in G occurred during free drop, microG being achieved 100 ms after the start of the drop. Acute microG elicited an immediate and striking, but transient, increase in ANA, with no significant change in the AP, but a significant decrease in the end-expiratory ITP. The calculated transmural pressure of the aorta increased by 6.9 mmHg 2 s after the start of the drop. The increase in ANA lasted 2 s, then ANA returned to the control level, despite the calculated end-expiratory transmural pressure still being high. These results suggest that microG conditions stimulate the aortic baroreceptor by increasing transmural pressure by reducing the ITP. However, this effect is only transient, probably due to the high-pass property of the baroreceptors.
机译:为了验证以下假设:在微重力(microG)期间刺激了动脉压力反射,在麻醉后的大鼠中通过自由下落产生的4.5 s microG中,测量了动脉压(AP),胸腔内压力(ITP)和主动脉神经活动(ANA)。自由滴落过程中G发生了平滑而立即的降低,在滴落开始后100 ms达到了microG。急性microG引起ANA的立即且惊人的但短暂的增加,AP并无明显变化,但呼气末ITP明显下降。下降开始后2 s,计算出的主动脉透壁压力增加6.9 mmHg。尽管计算出的呼气末透壁压力仍然很高,但ANA的增加持续了2 s,然后ANA恢复至控制水平。这些结果表明,microG条件可通过降低ITP来增加透壁压,从而刺激主动脉压力感受器。但是,这种影响只是暂时的,可能是由于压力感受器的高通特性所致。

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