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首页> 外文期刊>Human brain mapping >Differential functional brain network connectivity during visceral interoception as revealed by independent component analysis of fMRI time-series
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Differential functional brain network connectivity during visceral interoception as revealed by independent component analysis of fMRI time-series

机译:通过功能磁共振成像时间序列的独立成分分析揭示内脏受精过程中的功能性脑网络差异

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摘要

Influential theories of brain-viscera interactions propose a central role for interoception in basic motivational and affective feeling states. Recent neuroimaging studies have underlined the insula, anterior cingulate, and ventral prefrontal cortices as the neural correlates of interoception. However, the relationships between these distributed brain regions remain unclear. In this study, we used spatial independent component analysis (ICA) and functional network connectivity (FNC) approaches to investigate time course correlations across the brain regions during visceral interoception. Functional magnetic resonance imaging (fMRI) was performed in thirteen healthy females who underwent viscerosensory stimulation of bladder as a representative internal organ at different prefill levels, i.e., no prefill, low prefill (100 ml saline), and high prefill (individually adapted to the sensations of persistent strong desire to void), and with different infusion temperatures, i.e., body warm (approximate to 37 degrees C) or ice cold (4-8 degrees C) saline solution. During Increased distention pressure on the viscera, the insula, striatum, anterior cingulate, ventromedial prefrontal cortex, amygdalo-hippocampus, thalamus, brainstem, and cerebellar components showed increased activation. A second group of components encompassing the insula and anterior cingulate, dorsolateral prefrontal and posterior parietal cortices and temporal-parietal junction showed increased activity with innocuous temperature stimulation of bladder mucosa. Significant differences in the FNC were found between the insula and amygdalo-hippocampus, the insula and ventromedial prefrontal cortex, and the ventromedial prefrontal cortex and temporal-parietal junction as the distention pressure on the viscera increased. These results provide new insight into the supraspinal processing of visceral interoception originating from an internal organ. Hum Brain Mapp 36:4438-4468, 2015. (c) 2015 Wiley Periodicals, Inc.
机译:脑-内脏相互作用的影响理论提出了在基本的动机和情感感觉状态下互感的核心作用。最近的神经影像学研究强调了岛突,前扣带回和腹侧前额叶皮层与间感觉的神经相关。但是,这些分布的大脑区域之间的关系仍然不清楚。在这项研究中,我们使用了空间独立成分分析(ICA)和功能网络连接(FNC)方法来研究内脏受精过程中整个大脑区域的时程相关性。功能性磁共振成像(fMRI)在13位健康女性中进行,这些女性在不同的预填充水平(即,无预填充,低预填充(100 ml生理盐水)和高预填充(分别适应于不同的预适应水平))下以膀胱内脏刺激作为代表内部器官。持续强烈渴望排泄的感觉,并具有不同的输注温度,即体温(大约37摄氏度)或冰冷(4-8摄氏度)盐溶液。在对内脏的扩张压力增加期间,岛状,纹状体,前扣带回,腹膜前额叶皮层,杏仁核-海马,丘脑,脑干和小脑成分显示增加的激活。第二组组件包括岛突和前扣带回,背外侧前额叶和后顶叶皮质以及颞顶叶交界处,在无害温度刺激膀胱粘膜的情况下活动增加。随着内脏扩张压力的增加,在岛状和杏仁核-海马,岛状和腹膜前额叶皮层以及腹膜前额叶皮层和颞顶叶交界处的FNC有显着差异。这些结果提供了对源自内部器官的内脏间感觉的棘上处理的新见解。嗡嗡声大脑Mapp 36:4438-4468,2015.(c)2015 Wiley Periodicals,Inc.

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