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本文引用的文献

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Orosensory and Homeostatic Functions of the Insular Taste Cortex.岛叶味觉皮质的口面部感觉和体内平衡功能。
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Spontaneous fluctuations in neural responses to heartbeats predict visual detection.神经对心跳自发波动的反应可预测视觉检测。
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Major depressive disorder is associated with abnormal interoceptive activity and functional connectivity in the insula.重度抑郁症与脑岛的异常内感受活动及功能连接有关。
Biol Psychiatry. 2014 Aug 1;76(3):258-66. doi: 10.1016/j.biopsych.2013.11.027. Epub 2013 Dec 8.
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Category-specific integration of homeostatic signals in caudal but not rostral human insula.尾状核而非额状回人类脑岛中稳态信号的特定类别整合。
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Modular architectonic organization of the insula in the macaque monkey.猴脑岛叶的模块化构筑组织。
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Metabolic regulation of brain response to food cues.代谢调节大脑对食物线索的反应。
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Localization of the primary taste cortex by contrasting passive and attentive conditions.通过对比被动和注意条件来定位初级味觉皮层。
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Keeping the body in mind: insula functional organization and functional connectivity integrate interoceptive, exteroceptive, and emotional awareness. 身心合一:脑岛的功能组织和功能连接整合了内感受、外感受和情绪意识。
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Fat intake modulates cerebral blood flow in homeostatic and gustatory brain areas in humans.脂肪摄入可调节人类大脑在稳态和味觉区域的脑血流。
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人类脑岛中部的一种常见味觉和内感受表征。

A common gustatory and interoceptive representation in the human mid-insula.

作者信息

Avery Jason A, Kerr Kara L, Ingeholm John E, Burrows Kaiping, Bodurka Jerzy, Simmons W Kyle

机构信息

Laureate Institute for Brain Research, Tulsa, Oklahoma, 74136.

Department of Biological Sciences, The University of Tulsa, Tulsa, Oklahoma, 74104.

出版信息

Hum Brain Mapp. 2015 Aug;36(8):2996-3006. doi: 10.1002/hbm.22823. Epub 2015 May 6.

DOI:10.1002/hbm.22823
PMID:25950427
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4795826/
Abstract

The insula serves as the primary gustatory and viscerosensory region in the mammalian cortex. It receives visceral and gustatory afferent projections through dedicated brainstem and thalamic nuclei, which suggests a potential role as a site for homeostatic integration. For example, while human neuroimaging studies of gustation have implicated the dorsal mid-insular cortex as one of the primary gustatory regions in the insula, other recent studies have implicated this same region of the insula in interoception. This apparent convergence of gustatory and interoceptive information could reflect a common neural representation in the insula shared by both interoception and gustation. This idea finds support in translational studies in rodents, and may constitute a medium for integrating homeostatic information with feeding behavior. To assess this possibility, healthy volunteers were asked to undergo fMRI while performing tasks involving interoceptive attention to visceral sensations as well as a gustatory mapping task. Analysis of the unsmoothed, high-resolution fMRI data confirmed shared representations of gustatory and visceral interoception within the dorsal mid-insula. Group conjunction analysis revealed overlapping patterns of activation for both tasks in the dorsal mid-insula, and region-of-interest analyses confirmed that the dorsal mid-insula regions responsive for visceral interoception also exhibit strong responses to tastants.

摘要

脑岛是哺乳动物皮质中的主要味觉和内脏感觉区域。它通过专门的脑干和丘脑核接收内脏和味觉传入投射,这表明其作为内稳态整合位点的潜在作用。例如,虽然人类味觉的神经影像学研究表明脑岛背侧中部皮质是脑岛内主要的味觉区域之一,但最近的其他研究表明脑岛的同一区域也参与了内感受。味觉和内感受信息的这种明显汇聚可能反映了内感受和味觉在脑岛中共享的共同神经表征。这一观点在啮齿动物的转化研究中得到了支持,并且可能构成将内稳态信息与进食行为整合的媒介。为了评估这种可能性,健康志愿者在执行涉及对内脏感觉进行内感受性注意的任务以及味觉映射任务时接受了功能磁共振成像(fMRI)检查。对未平滑的高分辨率fMRI数据的分析证实了脑岛背侧中部存在味觉和内脏内感受的共享表征。组联合分析揭示了脑岛背侧中部在两项任务中激活的重叠模式,感兴趣区域分析证实,对内脏内感受有反应的脑岛背侧中部区域对味觉刺激也表现出强烈反应。