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内感受性岛叶皮质参与胃肠道不适及相关行为的感觉处理。

Interoceptive insular cortex participates in sensory processing of gastrointestinal malaise and associated behaviors.

作者信息

Aguilar-Rivera Marcelo, Kim Sanggyun, Coleman Todd P, Maldonado Pedro E, Torrealba Fernando

机构信息

Department of Bioengineering, University of California, La Jolla, San Diego, CA, 92093, USA.

LVIS Korea, Seoul, Korea.

出版信息

Sci Rep. 2020 Dec 10;10(1):21642. doi: 10.1038/s41598-020-78200-w.

Abstract

The insular cortex plays a central role in the perception and regulation of bodily needs and emotions. Its modular arrangement, corresponding with different sensory modalities, denotes a complex organization, and reveals it to be a hub that is able to coordinate autonomic and behavioral responses to many types of stimuli. Yet, little is known about the dynamics of its electrical activity at the neuronal level. We recorded single neurons in behaving rats from the posterior insula cortex (pIC), a subdivision considered as a primary interoceptive cortex, during gastrointestinal (GI) malaise, a state akin to the emotion of disgust in humans. We found that a large proportion of pIC neurons were modulated during the rodent compensatory behaviors of lying on belly (LOB) and Pica. Furthermore, we demonstrated that LOB was correlated with low-frequency oscillations in the field potentials and spikes at the theta (8 Hz) band, and that low-frequency electrical microstimulation of pIC elicited LOB and Pica. These findings demonstrate that pIC neurons play a critical role in GI malaise perception, and that the pIC influences the expression of behaviors that alleviate GI malaise. Our model provides an accessible approach at the single cell level to study innate emotional behaviors, currently elusive in humans.

摘要

岛叶皮质在身体需求和情绪的感知与调节中起着核心作用。其模块化排列与不同的感觉模态相对应,表明其组织复杂,且显示出它是一个能够协调对多种类型刺激的自主和行为反应的枢纽。然而,在神经元水平上,对其电活动动态的了解却很少。我们在行为大鼠的后岛叶皮质(pIC)记录单个神经元,pIC是一个被视为主要内感受性皮质的分区,记录过程中大鼠处于胃肠道不适状态,这类似于人类的厌恶情绪。我们发现,在大鼠趴在腹部(LOB)和异食癖等代偿行为期间,很大一部分pIC神经元受到调制。此外,我们证明LOB与场电位和θ(8赫兹)频段的尖峰中的低频振荡相关,并且对pIC进行低频电微刺激会引发LOB和异食癖。这些发现表明,pIC神经元在胃肠道不适感知中起关键作用,并且pIC会影响缓解胃肠道不适的行为表达。我们的模型在单细胞水平上提供了一种可用于研究先天情绪行为的方法,而目前在人类中这种行为难以捉摸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57a9/7730439/d309f18678b9/41598_2020_78200_Fig1_HTML.jpg

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