Suppr超能文献

迷走神经张力与情绪的生理调节

Vagal tone and the physiological regulation of emotion.

作者信息

Porges S W, Doussard-Roosevelt J A, Maiti A K

机构信息

Institute for Child Study, University of Maryland.

出版信息

Monogr Soc Res Child Dev. 1994;59(2-3):167-86.

PMID:7984159
Abstract

On the basis of current knowledge of neuroanatomy and our previous research with cardiac vagal tone, we have proposed the vagal circuit of emotion regulation. The vagal circuit of emotion regulation incorporates lateral brain function with the regulation of the peripheral autonomic nervous system in the expression of emotion. The vagus and the vagal circuit do not function independently of other neurophysiological and neuroendocrine systems. Research on brain activity (see Dawson, in this volume; Fox, in this volume) and research on adrenocortical activity (see Stansbury & Gunnar, in this volume) demonstrate that EEG and cortisol are related to emotion states and to individual differences similar to those that we have investigated. The vagal circuit emphasizes not only the vagus but also the lateralization of specific brain structures in emotion regulation. The emphasis of the vagal circuit on right-brain-stem structures stimulates several testable hypotheses regarding the function of specific structures in the right brain in emotion regulation. These speculations are consistent with other reports (see Dawson, in this volume; Fox, in this volume) describing asymmetrical EEG activity during expressed emotions. Moreover, the vagal circuit does not exist independently of the brain structures and peptide systems regulating cortisol (see Stansbury & Gunnar, in this volume). Areas in the brain stem regulating vagal activity are also sensitive to the peptides that regulate cortisol (e.g., vasopressin and corticotropin-releasing hormone). In this essay, we have provided information regarding the relation between vagal tone and emotion regulation. A review of research indicates that baseline levels of cardiac vagal tone and vagal tone reactivity abilities are associated with behavioral measures of reactivity, the expression of emotion, and self-regulation skills. Thus, we propose that cardiac vagal tone can serve as an index of emotion regulation. Historically, the vagus and other components of the parasympathetic nervous system have not been incorporated in theories of emotion. Recent developments in methodology have enabled us to define and accurately quantify cardiac vagal tone. Theories relating the parasympathetic nervous system to the expression and regulation of emotion are now being tested in several laboratories.

摘要

基于当前对神经解剖学的认识以及我们之前关于心脏迷走神经张力的研究,我们提出了情绪调节的迷走神经回路。情绪调节的迷走神经回路将大脑的侧向功能与外周自主神经系统在情绪表达中的调节相结合。迷走神经和迷走神经回路并非独立于其他神经生理和神经内分泌系统发挥作用。关于大脑活动的研究(见本卷中的道森;本卷中的福克斯)以及关于肾上腺皮质活动的研究(见本卷中的斯坦斯伯里和冈纳尔)表明,脑电图和皮质醇与情绪状态以及个体差异相关,这些差异与我们所研究的相似。迷走神经回路不仅强调迷走神经,还强调情绪调节中特定脑结构的侧向化。迷走神经回路对右脑 - 脑干结构的强调激发了一些关于右脑特定结构在情绪调节中功能的可测试假设。这些推测与其他描述情绪表达期间脑电图不对称活动的报告(见本卷中的道森;本卷中的福克斯)一致。此外,迷走神经回路并非独立于调节皮质醇的脑结构和肽系统而存在(见本卷中的斯坦斯伯里和冈纳尔)。脑干中调节迷走神经活动的区域也对调节皮质醇的肽(如血管加压素和促肾上腺皮质激素释放激素)敏感。在本文中,我们提供了关于迷走神经张力与情绪调节之间关系的信息。一项研究综述表明,心脏迷走神经张力的基线水平和迷走神经张力反应能力与反应性的行为指标、情绪表达和自我调节技能相关。因此,我们提出心脏迷走神经张力可作为情绪调节的指标。从历史上看,迷走神经和副交感神经系统的其他组成部分并未被纳入情绪理论中。方法学上的最新进展使我们能够定义并准确量化心脏迷走神经张力。将副交感神经系统与情绪表达和调节相关联的理论目前正在多个实验室中进行测试。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验