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狗肺血管床中神经的作用部位。

The cite of action of nerves in the pulmonary vascular bed in the dog.

作者信息

Daly I de B, Ramsay D J, Waaler B A

出版信息

J Physiol. 1970 Aug;209(2):317-39. doi: 10.1113/jphysiol.1970.sp009167.

Abstract
  1. The effects of stimulation of the thoracic vagosympathetic nerve or upper thoracic sympathetic chain on the pulmonary vascular resistance have been studied in atropinized, isolated, ventilated lung lobes under various conditions of pulmonary circulation perfusion. Throughout the nerve-stimulation tests bronchial circulation perfusion was maintained or temporarily interrupted.2. The pulmonary vascular resistance increase evoked by nerve stimulation (a) occurred in the absence of tidal air changes; (b) did not consistently differ during predominantly ;sluice' and ;non-sluice' conditions of pulmonary circulation perfusion; (c) was approximately one and a half times greater during constant pressure than during constant volume inflow perfusion of the pulmonary circulation; and (d) was greater during reverse than during forward perfusion.3. In lung lobes perfused in either direction at constant volume inflow nerve stimulation produced an increase in inflow pressure and a diminution in total lung blood volume reflected by a temporary increase in blood outflow.4. In lung lobes in which neither the pulmonary nor the bronchial circulations were perfused and the capillaries were completely blocked by high intratracheal pressures, thus isolating the pulmonary arterial system from the venous system, nerve stimulation produced a diminution in the blood volume of both systems.5. Nerve stimulation produced a rise in bronchial arterial pressure in the absence of pulmonary circulation perfusion.6. Further evidence is adduced that pulmonary vasomotor nerve responses do not depend upon the transfer of transmitter substances from the bronchial to the pulmonary circulation.7. The possible significance of these observations in relation to the site of action of pulmonary vasomotor nerves is discussed.
摘要
  1. 在不同肺循环灌注条件下,对阿托品化、离体、通气的肺叶进行研究,观察刺激胸段迷走交感神经或胸上段交感神经链对肺血管阻力的影响。在整个神经刺激试验过程中,维持支气管循环灌注或使其暂时中断。

  2. 神经刺激引起的肺血管阻力增加:(a) 在无潮气量变化时出现;(b) 在肺循环灌注的主要“分流”和“非分流”状态下无持续差异;(c) 在肺循环恒压灌注时比恒容流入灌注时大约大一倍半;(d) 在逆向灌注时比正向灌注时更大。

  3. 在恒容流入条件下向任一方向灌注的肺叶中,神经刺激导致流入压力增加,肺总血容量减少,表现为血液流出暂时增加。

  4. 在既不进行肺循环也不进行支气管循环灌注且气管内高压使毛细血管完全阻塞从而使肺动脉系统与静脉系统隔离的肺叶中,神经刺激使两个系统的血容量减少。

  5. 在无肺循环灌注时,神经刺激使支气管动脉压力升高。

  6. 进一步的证据表明,肺血管运动神经反应不依赖于递质从支气管循环向肺循环的转移。

  7. 讨论了这些观察结果与肺血管运动神经作用部位相关的可能意义。

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6
The nervous control of the pulmonary circulation.肺循环的神经控制。
Naunyn Schmiedebergs Arch Exp Pathol Pharmakol. 1961;240:431-45. doi: 10.1007/BF00244936.
7
The measurement of tension in vascular smooth muscle.血管平滑肌张力的测量。
J Physiol. 1960 Sep;153(2):290-305. doi: 10.1113/jphysiol.1960.sp006535.

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