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Major Autonomic Neuroregulatory Pathways Underlying Short- and Long-Term Control of Cardiovascular Function

机译:短期和长期控制心血管功能的主要自主神经调节途径

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摘要

Short-term and long-term blood pressure (BP) regulation and its maintenance at levels adequate to perfuse tissue organs involve an integrated action of multiple neural, cardiovascular, renal, endocrine and local tissue control systems. In the recent year, there has been a growing interest in the understanding of neural pathways key to BP control. For instance, through major advances in studies using both anesthetized and conscious animals, our knowledge of the essential neural mechanisms that subserve the baroreceptor, cardiopulmonary and chemoreceptor reflexes, and those evoked by the activation of stress pathways has dramatically increased. While the importance of these neural pathways in the maintenance of cardiovascular homeostasis is well established, the recognition of the central processing nuclei that integrate various afferent inputs to produce synchronous adjustments of autonomic outflows is still progressively expanding. Based on the literature provided thus far, the present review provides an overview in relation to the important neural determinants of BP control and later offers a concise description of major neuronal pathways that control autonomic outflows to the cardiovascular system in the short and long term.
机译:短期和长期的血压(BP)调节及其维持在足以灌注组织器官的水平,涉及多个神经,心血管,肾脏,内分泌和局部组织控制系统的综合作用。近年来,人们越来越了解对BP控制至关重要的神经通路。例如,通过使用麻醉动物和清醒动物的研究取得重大进展,我们对支持压力感受器,心肺和化学感受器反射以及由应激途径激活而引起的反射的基本神经机制的了解大大增加。虽然这些神经途径在维持心血管稳态中的重要性已得到充分确立,但对整合各种传入输入以产生自主调节的同步调节的中央处理核的认识仍在逐步扩大。基于到目前为止提供的文献,本综述提供了有关BP控制的重要神经决定因素的概述,随后简要介绍了在短期和长期内控制自主向心血管系统流出的主要神经元途径。

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