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Cardiovascular responses to carotid chemoreceptor stimulation in the dog: their modulation by urinary bladder distension

机译:狗对颈动脉化学感受器刺激的心血管反应:膀胱扩张对它们的调节

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摘要

class="enumerated" style="list-style-type:decimal">Respiratory, heart rate and hindlimb vascular responses were studied in response to increasing levels of stimulation of the carotid body chemoreceptors, together with an examination of the modulation of their effects by distension of the urinary bladder in the dog anaesthetized with a mixture of chloralose and urethane.The vascularly isolated carotid bifurcation regions were perfused with blood, stimulation of the carotid bodies being carried out by three different levels of hypoxic isocapnic blood (PO2 approximately 58, 40 and 22 mmHg) obtained from a donor animal. A vascularly isolated hindlimb was autoperfused at constant blood flow through its femoral artery.In spontaneously breathing animals, increasingly intense hypoxic stimulation of the carotid bodies caused a progressive augmentation of respiratory minute volume. Superimposition of distension of the bladder increased ventilation further, by the same amount during hypoxic as during normoxic blood perfusion of the chemoreceptors.Prevention of the effects of lung stretch afferent stimulation by artificial ventilation modified the heart rate and hindlimb vascular responses to excitation of the carotid bodies by revealing or accentuating the primary cardiovascular responses, bradycardia and vasoconstriction. In contrast, no such respiratory modulation was apparent in the cardiovascular responses to bladder distension.When, under conditions of artificial ventilation and in the absence of changes in the arterial baroreceptor input, the primary cardio-inhibitory and vasoconstrictor responses to carotid chemoreceptor stimulation predominated, the heart slowed progressively as the stimulus was increased. At the same time the cardio-accelerator effects of bladder distension progressively diminished, indicating an interaction between the cardiac reflex responses evoked by the two inputs. In contrast, the reflex vascular responses resulting from stimulation of the two inputs were additive, at least for PO2 levels of carotid body perfusate down to approximately 40 mmHg.In conclusion these experiments demonstrate the differential nature of the integration of respiratory and cardiovascular responses evoked by stimulation of the carotid chemoreceptors and bladder distension.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 响应于颈动脉体化学感受器刺激水平的提高,研究了呼吸,心率和后肢血管反应,并研究了在用氯醛糖和氨基甲酸酯混合物麻醉的狗中通过膀胱扩张对它们的影响的调节作用。 向血管隔离的颈动脉分叉区灌注血液,通过从供体动物获得的三种不同水平的低氧等容量二氧化碳(PO2分别为58、40和22 mmHg)刺激颈动脉体。血管隔离的后肢会以恒定的血流量通过股动脉自动灌注。 在自发呼吸的动物中,对颈动脉体的日益强烈的低氧刺激导致呼吸分钟体积的逐渐增加。膀胱扩张的叠加进一步增加了通气量,在低氧时与化学感受器的正常氧灌注时的通气量相同。 通过人工通气防止肺牵张传入刺激的作用会改变心率和后肢通过揭示或加重主要的心血管反应,心动过缓和血管收缩,对颈动脉激发血管反应。相反,在对膀胱扩张的心血管反应中,没有这种呼吸调节作用。 在人工通气的情况下,在动脉压力感受器输入没有变化的情况下,主要的心脏抑制和血管收缩剂对颈动脉化学感受器刺激的反应占主导,随着刺激的增加,心脏逐渐减慢。同时,膀胱扩张的心脏-加速作用逐渐减弱,表明两个输入引起的心脏反射反应之间存在相互作用。相比之下,两个输入的刺激所引起的反射性血管反应是相加的,至少对于低至约40 mmHg的颈动脉灌注液的PO2水平。 总而言之,这些实验证明了整合的差异性刺激颈动脉化学感受器和膀胱扩张引起的呼吸道和心血管反应。

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