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大脑中单胺类神经递质对心血管功能的调节。

The regulation of cardiovascular functions by monoamine neurotransmitters in the brain.

作者信息

Richardson J S, Chiu E K

出版信息

Int J Neurosci. 1983 Jul;20(1-2):103-48. doi: 10.3109/00207458308986567.

Abstract

The complexity of the central nervous system's influence on cardiovascular integration is underscored by the extensive neural interconnections between the various higher and lower brain structures shown by electrophysiological studies to have an influence on cardiovascular function. Furthermore, complex neural connections exist within each level of cardiovascular integration (for instance, the medullary reticular formation, or the limbic system). The electrophysiological analysis of the integrative aspects of central cardiovascular regulation has been the subject of several reviews (Reis, 1972; Smith, 1974; Calaresu et al., 1975; Oberg, 1976). In recent years, the methodology of analyzing the anatomical neural pathways of central cardiovascular regulation by lesion-degeneration, evoked potential, and fluorescent histochemical procedures, has been improved with the introduction of anterograde and retrograde tracer techniques. The result is the delineation of previously undetected neural interconnections among various brain areas, long known as cardiovascular centres, such as the NTS, the parabrachial nucleus, the paraventricular nucleus of the hypothalamus, the central nucleus of the amygdala, and the bed nucleus of the stria terminalis (Loewy & McKellar, 1980). Undoubtedly the next few years will see major advances in the understanding of the neuroanatomical pathways involved in central cardiovascular control.

摘要

电生理研究表明,各种高级和低级脑结构之间存在广泛的神经互连,这些互连对心血管功能有影响,这突出了中枢神经系统对心血管整合影响的复杂性。此外,在心血管整合的每个层面(例如,延髓网状结构或边缘系统)都存在复杂的神经连接。中枢心血管调节整合方面的电生理分析已成为多篇综述的主题(里斯,1972年;史密斯,1974年;卡莱雷苏等人,1975年;奥伯格,1976年)。近年来,通过损伤 - 变性、诱发电位和荧光组织化学方法分析中枢心血管调节的解剖神经通路的方法,随着顺行和逆行示踪技术的引入而得到改进。结果是描绘出了各个脑区之间以前未被发现的神经互连,这些脑区长期以来被称为心血管中枢,如孤束核、臂旁核、下丘脑室旁核、杏仁核中央核和终纹床核(洛伊和麦凯勒,1980年)。毫无疑问,在未来几年里,人们对参与中枢心血管控制的神经解剖通路的理解将取得重大进展。

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