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大鼠肠道中小静脉压力-直径关系的颈动脉窦压力感受器反射控制

Carotid sinus baroreceptor reflex control of venular pressure-diameter relations in rat intestine.

作者信息

Haase E B, Shoukas A A

机构信息

Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Am J Physiol. 1991 Mar;260(3 Pt 2):H752-8. doi: 10.1152/ajpheart.1991.260.3.H752.

Abstract

We tested the hypothesis that the venules of the small intestinal muscle are responsible for decreases in vascular capacitance during bilateral carotid artery occlusion. We measured microvascular venular pressure and diameter relations in 135 vessels during both control and baroreflexive conditions (bilateral carotid occlusion). Microvascular pressure was measured using a servo-null pressure system, and diameters were obtained from a video-monitoring system with a total magnification of X1,000. First-, second-, and fourth-order microvenules were studied in rat small intestinal muscle. The vessels showed an average diameter decrease of 11-12% and an increased stiffness or pressure-diameter slope of 31-53% during bilateral occlusion. We also tested whether the observed constriction during bilateral occlusion was caused by an increase in the sympathetic nerve activity to the venules and/or increased hormonal release via the baroreflex system. We studied an additional 22 microvenules before and after denervation of the preparation. Denervation eliminated any significant change in diameter or stiffness during bilateral occlusion. Based on our data, we conclude that the changes in the venular properties observed during bilateral occlusion are due to the increased sympathetic nerve activity resulting from decreased carotid sinus pressure. Intestinal venules can actively constrict to change vascular capacitance during bilateral carotid occlusion.

摘要

我们验证了这样一个假说

小肠肌层的微静脉在双侧颈动脉闭塞期间导致血管容量减少。我们在对照和压力反射条件(双侧颈动脉闭塞)下测量了135条血管的微血管微静脉压力与直径的关系。微血管压力使用伺服零压力系统进行测量,直径通过总放大倍数为1000倍的视频监测系统获得。对大鼠小肠肌层的一级、二级和四级微静脉进行了研究。在双侧闭塞期间,这些血管的平均直径减小了11% - 12%,硬度或压力 - 直径斜率增加了31% - 53%。我们还测试了双侧闭塞期间观察到的收缩是否是由微静脉交感神经活动增加和/或通过压力反射系统的激素释放增加所引起的。我们在制备去神经支配前后又研究了22条微静脉。去神经支配消除了双侧闭塞期间直径或硬度的任何显著变化。基于我们的数据,我们得出结论,双侧闭塞期间观察到的微静脉特性变化是由于颈动脉窦压力降低导致交感神经活动增加所致。在双侧颈动脉闭塞期间,小肠微静脉可主动收缩以改变血管容量。

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