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豆荚核在意识中的作用是由迷幻鼠尾草的作用和靶点定位所支持的。

The claustrum's proposed role in consciousness is supported by the effect and target localization of Salvia divinorum.

机构信息

The MARCS Institute, University of Western Sydney Sydney, NSW, Australia.

NPS Medicinewise Sydney, NSW, Australia.

出版信息

Front Integr Neurosci. 2014 Feb 26;8:20. doi: 10.3389/fnint.2014.00020. eCollection 2014.

Abstract

THIS ARTICLE BRINGS TOGETHER THREE FINDINGS AND IDEAS RELEVANT FOR THE UNDERSTANDING OF HUMAN CONSCIOUSNESS

(I) Crick's and Koch's theory that the claustrum is a "conductor of consciousness" crucial for subjective conscious experience. (II) Subjective reports of the consciousness-altering effects the plant Salvia divinorum, whose primary active ingredient is salvinorin A, a κ-opioid receptor agonist. (III) The high density of κ-opioid receptors in the claustrum. Fact III suggests that the consciousness-altering effects of S. divinorum/salvinorin A (II) are due to a κ-opioid receptor mediated inhibition of primarily the claustrum and, additionally, the deep layers of the cortex, mainly in prefrontal areas. Consistent with Crick and Koch's theory that the claustrum plays a key role in consciousness (I), the subjective effects of S. divinorum indicate that salvia disrupts certain facets of consciousness much more than the largely serotonergic hallucinogen lysergic acid diethylamide (LSD). Based on this data and on the relevant literature, we suggest that the claustrum does indeed serve as a conductor for certain aspects of higher-order integration of brain activity, while integration of auditory and visual signals relies more on coordination by other areas including parietal cortex and the pulvinar.

摘要

这篇文章汇集了三个与理解人类意识相关的发现和想法

(一)克里克和科赫的理论,认为神经节是一种“意识导体”,对于主观意识体验至关重要。(二)迷幻鼠尾草植物及其主要活性成分——紫堇醇酮,对意识产生改变作用的主观报告。紫堇醇酮是κ-阿片受体激动剂。(三)神经节中κ-阿片受体的高密度。事实三表明,迷幻鼠尾草/紫堇醇酮(二)对意识的改变作用是由于κ-阿片受体介导的抑制作用,主要是神经节,以及大脑皮层的深层,主要在前额叶区域。与克里克和科赫的理论一致,即神经节在意识中起着关键作用(一),迷幻鼠尾草的主观效应表明,紫堇醇酮破坏了意识的某些方面,比主要血清素能致幻剂麦角酸二乙酰胺(LSD)更严重。基于这些数据和相关文献,我们认为神经节确实作为大脑活动高级整合的某些方面的导体,而听觉和视觉信号的整合则更多地依赖于包括顶叶皮层和丘脑枕在内的其他区域的协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bab2/3935397/5fbb23926b16/fnint-08-00020-g001.jpg

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