School of Kinesiology, Department of Physiology and Pharmacology, The University of Western Ontario, London, Ontario, Canada N6A 3K7.
Anat Rec (Hoboken). 2012 Sep;295(9):1375-84. doi: 10.1002/ar.22528. Epub 2012 Jul 31.
Beginning with clinical evidence of fatal cardiac arrhythmias in response to severe stress, in epileptic patients, and following stroke, the role of the cerebral cortex in autonomic control of the cardiovascular system has gained both academic and clinical interest. Studies in anesthetized rodents have exposed the role of several forebrain regions involved in cardiovascular control. The introduction of functional neuroimaging techniques has enabled investigations into the conscious human brain to illuminate the temporal and spatial activation patterns of cortical regions that are involved with cardiovascular control through the autonomic nervous system. This symposia report emphasizes the research performed by the authors to understand the functional organization of the human forebrain in cardiovascular control during physical stressors of baroreceptor unloading and handgrip exercise. The studies have exposed important associations between activation patterns of the insula cortex, dorsal anterior cingulate, and the medial prefrontal cortex and cardiovascular adjustments to physical stressors. Furthermore, these studies provide functional anatomic evidence that sensory signals arising from baroreceptors and skeletal muscle are represented within the insula cortex and the medial prefrontal cortex, in addition to the sensory cortex. Thus, the cortical pathways subserving reflex cardiovascular control integrate viscerosensory inputs with outgoing traffic that modulates the autonomic nervous system.
从癫痫患者在严重应激、中风后出现致命性心律失常的临床证据开始,大脑皮层在心血管系统自主控制中的作用引起了学术界和临床的兴趣。在麻醉啮齿动物中的研究揭示了涉及心血管控制的几个前脑区域的作用。功能性神经影像学技术的引入使人们能够对有意识的人类大脑进行研究,阐明通过自主神经系统参与心血管控制的皮质区域的时间和空间激活模式。本次专题讨论会报告强调了作者进行的研究,以了解在血压感受器卸载和手握运动等身体应激源下,人类前脑在心血管控制中的功能组织。这些研究揭示了岛叶皮层、背侧前扣带和内侧前额叶皮层的激活模式与身体应激源的心血管调节之间的重要关联。此外,这些研究提供了功能解剖学证据,表明来自压力感受器和骨骼肌的感觉信号除了在感觉皮层之外,还在岛叶皮层和内侧前额叶皮层内得到表示。因此,反射性心血管控制的皮质通路将内脏感觉输入与调节自主神经系统的传出流量整合在一起。