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人类脑岛背侧中部的味觉与内脏感觉的汇聚处理

Convergent gustatory and viscerosensory processing in the human dorsal mid-insula.

作者信息

Avery Jason A, Gotts Stephen J, Kerr Kara L, Burrows Kaiping, Ingeholm John E, Bodurka Jerzy, Martin Alex, Kyle Simmons W

机构信息

Laureate Institute for Brain Research, Tulsa, Oklahoma.

Department of Biological Sciences, The University of Tulsa, Tulsa, Oklahoma.

出版信息

Hum Brain Mapp. 2017 Apr;38(4):2150-2164. doi: 10.1002/hbm.23510. Epub 2017 Jan 10.

Abstract

The homeostatic regulation of feeding behavior requires an organism to be able to integrate information from its internal environment, including peripheral visceral signals about the body's current energy needs, with information from its external environment, such as the palatability of energy-rich food stimuli. The insula, which serves as the brain's primary sensory cortex for representing both visceral signals from the body and taste signals from the mouth and tongue, is a likely candidate region in which this integration might occur. However, to date it has been unclear whether information from these two homeostatically critical faculties is merely co-represented in the human insula, or actually integrated there. Recent functional neuroimaging evidence of a common substrate for visceral interoception and taste perception within the human dorsal mid-insula suggests a model whereby a single population of neurons may integrate viscerosensory and gustatory signals. To test this model, we used fMRI-Adaptation to identify whether insula regions that exhibit repetition suppression following repeated interoception trials would then also exhibit adapted responses to subsequent gustatory stimuli. Multiple mid and anterior regions of the insula exhibited adaptation to interoceptive trials specifically, but only the dorsal mid-insula regions exhibited an adapted gustatory response following interoception. The discovery of this gustatory-interoceptive convergence within the neurons of the human insula supports the existence of a heretofore-undocumented neural pathway by which visceral signals from the periphery modulate the activity of brain regions involved in feeding behavior. Hum Brain Mapp 38:2150-2164, 2017. © 2017 Wiley Periodicals, Inc.

摘要

进食行为的稳态调节要求生物体能够将来自其内部环境的信息(包括有关身体当前能量需求的外周内脏信号)与来自外部环境的信息(如富含能量食物刺激的适口性)整合起来。脑岛作为大脑的主要感觉皮层,用于表征来自身体的内脏信号以及来自口腔和舌头的味觉信号,它可能是发生这种整合的区域。然而,迄今为止尚不清楚来自这两个对稳态至关重要的功能的信息是仅仅在人类脑岛中共存,还是实际上在那里进行整合。最近关于人类背侧脑岛中部内脏内感受和味觉感知存在共同底物的功能神经影像学证据提示了一种模型,即单一神经元群体可能整合内脏感觉和味觉信号。为了验证该模型,我们使用功能磁共振成像适应技术来确定在重复内感受试验后表现出重复抑制的脑岛区域是否也会对随后的味觉刺激表现出适应性反应。脑岛的多个中部和前部区域特别表现出对内感受试验的适应性,但只有背侧脑岛中部区域在内感受后表现出适应性味觉反应。在人类脑岛神经元内发现这种味觉 - 内感受汇聚支持了一条迄今未被记录的神经通路的存在,通过该通路来自外周的内脏信号可调节参与进食行为的脑区活动。《人类大脑图谱》38:2150 - 2164,2017年。© 2017威利期刊公司

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