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超越人类脑岛的三分认知-情感-内脏感知模型。

Beyond the tripartite cognition-emotion-interoception model of the human insular cortex.

机构信息

Stanford University School of Medicine, Stanford, CA.

出版信息

J Cogn Neurosci. 2014 Jan;26(1):16-27. doi: 10.1162/jocn_a_00462. Epub 2013 Aug 12.

Abstract

Functional MRI studies report insular activations across a wide range of tasks involving affective, sensory, and motor processing, but also during tasks of high-level perception, attention, and control. Although insular cortical activations are often reported in the literature, the diverse functional roles of this region are still not well understood. We used a meta-analytic approach to analyze the coactivation profiles of insular subdivisions-dorsal anterior, ventral anterior, and posterior insula-across fMRI studies in terms of multiple task domains including emotion, memory, attention, and reasoning. We found extensive coactivation of each insular subdivision, with substantial overlap between coactivation partners for each subdivision. Functional fingerprint analyses revealed that all subdivisions cooperated with a functionally diverse set of regions. Graph-theoretical analyses revealed that the dorsal anterior insula was a highly "central" structure in the coactivation network. Furthermore, analysis of the studies that activate the insular cortex itself showed that the right dorsal anterior insula was a particularly "diverse" structure in that it was likely to be active across multiple task domains. These results highlight the nuanced functional profiles of insular subdivisions and are consistent with recent work suggesting that the dorsal anterior insula can be considered a critical functional hub in the human brain.

摘要

功能磁共振成像研究报告称,在涉及情感、感觉和运动处理的广泛任务中,以及在高级感知、注意力和控制任务中,岛叶会被激活。尽管文献中经常报道岛叶皮质的激活,但该区域的多样化功能作用仍未得到很好的理解。我们使用元分析方法,根据包括情感、记忆、注意力和推理在内的多个任务领域,分析了岛叶各部分(背侧前、腹侧前和后岛叶)的共激活图谱。我们发现每个岛叶部分都有广泛的共激活,每个部分的共激活伙伴之间有很大的重叠。功能指纹分析显示,所有的细分部分都与功能多样的区域合作。图论分析表明,背侧前岛叶是共激活网络中的一个高度“中心”结构。此外,对激活岛叶皮层本身的研究的分析表明,右侧背侧前岛叶是一个特别“多样化”的结构,因为它可能在多个任务领域中活跃。这些结果突出了岛叶细分部分的微妙功能特征,与最近的研究工作一致,即背侧前岛叶可以被认为是人类大脑中的一个关键功能枢纽。

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