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Carotid and cardiopulmonary baroreceptor control of splanchnic and forearm vascular resistance during venous pooling in man

机译:男性静脉合并期间颈动脉和心肺压力感受器对内脏和前臂血管阻力的控制

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1. This study evaluated the contribution of carotid and cardiopulmonary baroreceptors to reflex splanchnic and forearm vascular adjustments during venous pooling in man. We compared (a) responses to lower body suction which produces venous pooling with (b) responses to lower body suction plus simultaneous application of neck suction. The rationale was that simultaneous application of neck suction, which stretches carotid baroreceptors, would minimize the contribution of carotid baroreceptors to circulatory adjustments produced by lower body suction.2. Lower body suction at 40 mmHg decreased central venous pressure and arterial pulse pressure and increased forearm vascular resistance (plethysmography), splanchnic vascular resistance (indocyanine green dye clearance), and heart rate. Simultaneous application of neck suction prevented the tachycardia and most of the splanchnic vasoconstriction during lower body suction, but did not significantly attenuate the forearm vasoconstriction.3. The major findings in this study are first, that the splanchnic vasoconstrictor response during venous pooling is mediated primarily through carotid baroreceptors, and secondly, that carotid and cardiopulmonary baroreceptors produce strikingly contrasting and non-uniform regional vascular responses during venous pooling. Cardiopulmonary baroreceptors exert the predominant influence on forearm vascular resistance, but appear to have only a minor influence on splanchnic vascular resistance. Carotid baroreceptors produce most of the splanchnic vasoconstriction during venous pooling. but have a minor role in the forearm vasoconstriction.
机译:1.这项研究评估了男性静脉合并期间颈动脉和心肺压力感受器对反射性内脏和前臂血管调节的贡献。我们将(a)下半身吸引产生静脉合并的反应与(b)下半身吸引加上同时应用颈部吸引的反应进行了比较。基本原理是,同时应用拉伸颈动脉压力感受器的颈部吸气可最大程度地减少颈动脉压力感受器对下半身抽吸产生的循环调节的影响。2。在40 mmHg的压力下,较低的身体吸引降低了中心静脉压和动脉脉压,并增加了前臂血管阻力(容积描记法),内脏血管阻力(吲哚菁绿色染料清除率)和心率。同时应用颈吸引术可防止下半身吸引过程中的心动过速和大部分内脏血管收缩,但并不能显着减轻前臂血管收缩。3。这项研究的主要发现是,首先,静脉合并过程中的内脏血管收缩反应主要通过颈动脉压力感受器介导,其次,在静脉合并过程中,颈动脉和心肺压力感受器产生明显不同的区域性血管反应。心肺压力感受器对前臂血管阻力起主要作用,但似乎对内脏血管阻力影响很小。颈静脉压力感受器在静脉合并过程中产生大部分内脏血管收缩。但在前臂血管收缩中作用较小。

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