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颈动脉压力感受器对血管系统不同组成部分的影响。

Influence of carotid baroreceptors on different components of the vascular system.

作者信息

Brender D, Webb-Peploe M M

出版信息

J Physiol. 1969 Nov;205(2):257-74. doi: 10.1113/jphysiol.1969.sp008963.

DOI:10.1113/jphysiol.1969.sp008963
PMID:5357231
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1348600/
Abstract
  1. Reflex changes in wall tension of the lateral saphenous vein of one hind limb, the splenic veins and capsule, and the resistance vessels of the other hind limb caused by changes in baroreceptor activity were measured in vagotomized dogs under thiopentone-chloralose anaesthesia.2. Three different methods were used to alter pressure in one or both carotid sinuses. (1) Both carotid sinuses were vascularly isolated and filled with fully oxygenated Krebs-Ringer bicarbonate solution (pH 7.4) from a reservoir in which the pressure could be altered at will. (2) One sinus was denervated, and the contralateral sinus was perfused with arterial blood at different flow rates. (3) One sinus was denervated, and the innervated sinus was perfused with arterial blood at constant flow, the pressure being altered by changing the outflow resistance.3. The left saphenous vein was perfused at constant flow with autologous blood; changes in perfusion pressure were used as a measure of changes in veno-motor activity. The right common iliac artery was perfused at constant flow to measure changes in resistance vessel activity. Blood flow through the spleen was temporarily arrested, trapping a fixed volume of blood in the organ. Under these conditions, changes in splenic vein pressure were a measure of changes in smooth-muscle tension in the splenic capsule and veins.4. In order to assess the responses to baroreceptor stimulation in terms of alterations in sympathetic nerve traffic to different components of the peripheral vascular system, ;frequency-response curves' were constructed for spleen, saphenous vein, and limb resistance vessels by electrical stimulation of the splenic nerves and lumbar sympathetic chains.5. The saphenous vein showed no consistent response to changes in baroreceptor activity. Reduction in carotid sinus pressure from 180 to 100 mm Hg caused an increase in venous pressure in the isovolumetric spleen and in the iliac artery perfusion pressure. These results were confirmed by electrical stimulation of the carotid sinus nerve. Whereas the peak responses of the limb resistance vessels corresponded to an increase in lumbar sympathetic nerve traffic of 6-10 c/s, the maximal splenic responses were equivalent to an increase in splenic nerve traffic of 1-4 c/s. These results are consistent with selective autonomic nervous control of different components of the peripheral vascular system.
摘要
  1. 在硫喷妥钠-氯醛糖麻醉下,对迷走神经切断的犬测量了由压力感受器活动变化引起的一侧后肢隐静脉、脾静脉和脾包膜以及另一侧后肢阻力血管壁张力的反射性变化。

  2. 采用三种不同方法改变一侧或双侧颈动脉窦压力。(1)将双侧颈动脉窦进行血管分离,并用来自一个压力可随意改变的储液器的充分氧合的碳酸氢盐林格液(pH 7.4)灌注。(2)一侧窦去神经支配,对侧窦以不同流速灌注动脉血。(3)一侧窦去神经支配,对有神经支配的窦以恒定流速灌注动脉血,通过改变流出阻力来改变压力。

  3. 左隐静脉以恒定流速用自体血灌注;灌注压力的变化用作静脉运动活动变化的指标。右髂总动脉以恒定流速灌注以测量阻力血管活动的变化。流经脾脏的血流暂时阻断,使固定体积的血液滞留在器官内。在这些条件下,脾静脉压力的变化是脾包膜和静脉平滑肌张力变化的指标。

  4. 为了根据交感神经向周围血管系统不同成分的传出活动变化来评估对压力感受器刺激的反应,通过电刺激脾神经和腰交感链构建了脾脏、隐静脉和肢体阻力血管的“频率-反应曲线”。

  5. 隐静脉对压力感受器活动变化未表现出一致反应。颈动脉窦压力从180毫米汞柱降至100毫米汞柱导致等容脾脏中的静脉压力和髂动脉灌注压力升高。这些结果通过电刺激颈动脉窦神经得到证实。肢体阻力血管的峰值反应对应于腰交感神经传出活动增加6 - 10次/秒,而脾脏的最大反应相当于脾神经传出活动增加1 - 4次/秒。这些结果与周围血管系统不同成分的自主神经选择性控制一致。

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