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Neural reflex regulation of arterial pressure in pathophysiological conditions: interplay among the baroreflex, the cardiopulmonary reflexes and the chemoreflex

机译:病理生理状况下动脉压的神经反射调节:压力反射,心肺反射和化学反射之间的相互作用

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The maintenance of arterial pressure at levels adequate to perfuse the tissues is a basic requirement for the constancy of the internal environment and survival. The objective of the present review was to provide information about the basic reflex mechanisms that are responsible for the moment-to-moment regulation of the cardiovascular system. We demonstrate that this control is largely provided by the action of arterial and non-arterial reflexes that detect and correct changes in arterial pressure (baroreflex), blood volume or chemical composition (mechano- and chemosensitive cardiopulmonary reflexes), and changes in blood-gas composition (chemoreceptor reflex). The importance of the integration of these cardiovascular reflexes is well understood and it is clear that processing mainly occurs in the nucleus tractus solitarii, although the mechanism is poorly understood. There are several indications that the interactions of baroreflex, chemoreflex and Bezold-Jarisch reflex inputs, and the central nervous system control the activity of autonomic preganglionic neurons through parallel afferent and efferent pathways to achieve cardiovascular homeostasis. It is surprising that so little appears in the literature about the integration of these neural reflexes in cardiovascular function. Thus, our purpose was to review the interplay between peripheral neural reflex mechanisms of arterial blood pressure and blood volume regulation in physiological and pathophysiological states. Special emphasis is placed on the experimental model of arterial hypertension induced by N-nitro-L-arginine methyl ester (L-NAME) in which the interplay of these three reflexes is demonstrable
机译:将动脉压维持在足以灌注组织的水平是维持内部环境和生存的基本要求。本综述的目的是提供有关基本反射机制的信息,这些反射机制负责心血管系统从瞬间到瞬间的调节。我们证明了这种控制主要是由动脉和非动脉反射的作用提供的,该作用可检测和纠正动脉压(压力反射),血容量或化学成分(对机械和化学敏感的心肺反射)以及血气变化的变化组成(化学感受器反射)。这些心血管反射的整合的重要性已广为人知,并且很清楚,加工过程主要发生在孤束核中,尽管对其机理了解甚少。有多种迹象表明,压力反射,化学反射和Bezold-Jarisch反射输入之间的相互作用以及中枢神经系统通过平行的传入和传出途径控制自主神经节前神经元的活动,从而实现心血管稳态。令人惊讶的是,关于这些神经反射在心血管功能中的整合的文献很少出现。因此,我们的目的是回顾生理和病理生理状态下动脉血压的周围神经反射机制与血容量调节之间的相互作用。特别强调由N-硝基-L-精氨酸甲酯(L-NAME)诱导的动脉高血压的实验模型,其中这三个反射的相互作用是可证实的

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