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The yin and yang of cardiac autonomic control: Vago-sympathetic interactions revisited.

机译:心脏自主神经的阴阳:重讨论过迷走神经交感。

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We review the pattern of activity in the parasympathetic and sympathetic nerves innervating the heart. Unlike the conventional textbook picture of reciprocal control of cardiac vagal and sympathetic nervous activity, as seen during a baroreceptor reflex, many other reflexes involve simultaneous co-activation of both autonomic limbs. Indeed, even at 'rest', the heart receives tonic drives from both sympathetic and parasympathetic cardiac nerves. Autonomic co-activation occurs during peripheral chemoreceptor, diving, oculocardiac, somatic nociceptor reflex responses as well as being evoked from structures within the brain. It is suggested that simultaneous co-activation may lead to a more efficient cardiac function giving greater cardiac output than activation of the sympathetic limb alone; this permits both a longer time for ventricular filling and a stronger contraction of the myocardium. This may be important when pumping blood into a constricted vascular tree such as is the case during the diving response. We discuss that in some instances, high drive to the heart from both autonomic limbs may also be arrhythmogenic.
机译:我们回顾了支配心脏的副交感神经和交感神经的活动模式。不像在压力感受器反射过程中看到的对心脏迷走神经和交感神经活动进行相互控制的传统教科书图片,许多其他反射都涉及同时自主激活两个自主肢体。的确,即使在“休息”时,心脏也会从交感神经和副交感神经得到强直性驱动。自主性共激活发生在周围化学感受器,潜水,眼动心,躯体伤害感受器反射反应以及从脑内结构诱发的过程中。提示同时共激活可能导致更有效的心功能,从而比单独激活交感肢体产生更大的心输出量。这样既可以延长心室充盈时间,又可以增强心肌收缩力。当将血液泵入狭窄的血管树时(例如在潜水响应过程中),这可能很重要。我们讨论在某些情况下,两个自主肢体对心脏的高驱动力也可能导致心律失常。

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