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眶额皮层调节蒙古沙鼠的听觉皮层敏感性和声音感知。

Orbitofrontal cortex modulates auditory cortical sensitivity and sound perception in Mongolian gerbils.

机构信息

Department of Biology, University of Maryland, College Park, MD 20742, USA.

Department of Biology, University of Maryland, College Park, MD 20742, USA.

出版信息

Curr Biol. 2024 Aug 5;34(15):3354-3366.e6. doi: 10.1016/j.cub.2024.06.036. Epub 2024 Jul 11.

Abstract

Sensory perception is dynamic, quickly adapting to sudden shifts in environmental or behavioral context. Although decades of work have established that these dynamics are mediated by rapid fluctuations in sensory cortical activity, we have a limited understanding of the brain regions and pathways that orchestrate these changes. Neurons in the orbitofrontal cortex (OFC) encode contextual information, and recent data suggest that some of these signals are transmitted to sensory cortices. Whether and how these signals shape sensory encoding and perceptual sensitivity remain uncertain. Here, we asked whether the OFC mediates context-dependent changes in auditory cortical sensitivity and sound perception by monitoring and manipulating OFC activity in freely moving Mongolian gerbils of both sexes under two behavioral contexts: passive sound exposure and engagement in an amplitude modulation (AM) detection task. We found that the majority of OFC neurons, including the specific subset that innervates the auditory cortex, were strongly modulated by task engagement. Pharmacological inactivation of the OFC prevented rapid context-dependent changes in auditory cortical firing and significantly impaired behavioral AM detection. Our findings suggest that contextual information from the OFC mediates rapid plasticity in the auditory cortex and facilitates the perception of behaviorally relevant sounds.

摘要

感觉知觉是动态的,能迅速适应环境或行为背景的突然变化。尽管几十年来的研究已经证实,这些动态是由感觉皮质活动的快速波动介导的,但我们对协调这些变化的大脑区域和途径的了解有限。眶额皮质(OFC)中的神经元对上下文信息进行编码,最近的数据表明,其中一些信号被传递到感觉皮质。这些信号是否以及如何塑造感觉编码和感知敏感性仍不确定。在这里,我们通过在两种行为情境下监测和操纵雄性和雌性蒙古沙鼠的 OFC 活动,来询问 OFC 是否通过调节听觉皮质敏感性和声音感知来介导情境相关的变化:被动声音暴露和参与幅度调制(AM)检测任务。我们发现,大多数 OFC 神经元,包括支配听觉皮质的特定亚群,都被任务参与强烈调节。OFC 的药理学失活阻止了听觉皮质放电的快速情境依赖性变化,并显著损害了行为 AM 检测。我们的研究结果表明,来自 OFC 的上下文信息介导了听觉皮质的快速可塑性,并促进了对行为相关声音的感知。

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