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大鼠体位变化时前庭心血管反射与动脉压力感受反射的相互作用。

Interaction between vestibulo-cardiovascular reflex and arterial baroreflex during postural change in rats.

机构信息

Department of Physiology, Gifu University Graduate School of Medicine, Gifu, Japan.

出版信息

J Appl Physiol (1985). 2011 Dec;111(6):1614-21. doi: 10.1152/japplphysiol.00501.2011. Epub 2011 Sep 15.

Abstract

To examine a cooperative role for the baroreflex and the vestibular system in controlling arterial pressure (AP) during voluntary postural change, AP was measured in freely moving conscious rats, with or without sinoaortic baroreceptor denervation (SAD) and/or peripheral vestibular lesion (VL). Voluntary rear-up induced a slight decrease in AP (-5.6 ± 0.8 mmHg), which was significantly augmented by SAD (-14.7 ± 1.0 mmHg) and further augmented by a combination of VL and SAD (-21 ± 1.0 mmHg). Thus we hypothesized that the vestibular system sensitizes the baroreflex during postural change. To test this hypothesis, open-loop baroreflex analysis was conducted on anesthetized sham-treated and VL rats. The isolated carotid sinus pressure was increased stepwise from 60 to 180 mmHg while rats were placed horizontal prone or in a 60° head-up tilt (HUT) position. HUT shifted the carotid sinus pressure-sympathetic nerve activity (SNA) relationship (neural arc) to a higher SNA, shifted the SNA-AP relationship (peripheral arc) to a lower AP, and, consequently, moved the operating point to a higher SNA while maintaining AP (from 113 ± 5 to 114 ± 5 mmHg). The HUT-induced neural arc shift was completely abolished in VL rats, whereas the peripheral arc shifted to a lower AP and the operating point moved to a lower AP (from 116 ± 3 to 84 ± 5 mmHg). These results indicate that the vestibular system elicits sympathoexcitation, shifting the baroreflex neural arc to a higher SNA and maintaining AP during HUT.

摘要

为了研究在自主姿势变化过程中,压力反射和前庭系统在控制动脉血压(AP)方面的协同作用,我们在自由活动的清醒大鼠中测量了 AP,这些大鼠接受了或未接受窦弓压力感受器去神经(SAD)和/或外周前庭损伤(VL)。自愿后倾引起 AP 轻微下降(-5.6 ± 0.8 mmHg),SAD 使 AP 显著下降(-14.7 ± 1.0 mmHg),VL 和 SAD 的组合使 AP 进一步下降(-21 ± 1.0 mmHg)。因此,我们假设前庭系统在姿势变化过程中使压力反射敏感。为了验证这一假设,我们对麻醉的假处理和 VL 大鼠进行了开环压力反射分析。在大鼠被置于水平俯卧位或 60°头高位(HUT)位置时,将分离的颈动脉窦压力逐步从 60 mmHg 增加到 180 mmHg。HUT 将颈动脉窦压力-交感神经活性(SNA)关系(神经弧)转移到更高的 SNA,将 SNA-AP 关系(外周弧)转移到更低的 AP,从而将工作点转移到更高的 SNA,同时保持 AP(从 113 ± 5 到 114 ± 5 mmHg)。VL 大鼠的 HUT 诱导的神经弧移位完全被消除,而外周弧移向更低的 AP,工作点移向更低的 AP(从 116 ± 3 到 84 ± 5 mmHg)。这些结果表明,前庭系统引起交感神经兴奋,将压力反射神经弧转移到更高的 SNA,并在 HUT 期间维持 AP。

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