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通过间脑zona incerta 中的 parvalbumin 神经元进行跨模态防御性逃避增强。

A cross-modality enhancement of defensive flight via parvalbumin neurons in zona incerta.

机构信息

Zilkha Neurogenetic Institute, Keck School of Medicine, University of Southern California, Los Angeles, United States.

Graduate Program in Neuroscience, University of Southern California, Los Angeles, United States.

出版信息

Elife. 2019 Apr 15;8:e42728. doi: 10.7554/eLife.42728.

Abstract

The ability to adjust defensive behavior is critical for animal survival in dynamic environments. However, neural circuits underlying the modulation of innate defensive behavior remain not well-understood. In particular, environmental threats are commonly associated with cues of multiple sensory modalities. It remains to be investigated how these modalities interact to shape defensive behavior. In this study, we report that auditory-induced defensive flight behavior can be facilitated by somatosensory input in mice. This cross-modality modulation of defensive behavior is mediated by the projection from the primary somatosensory cortex (SSp) to the ventral sector of zona incerta (ZIv). Parvalbumin (PV)-positive neurons in ZIv, receiving direct input from SSp, mediate the enhancement of the flight behavior via their projections to the medial posterior complex of thalamus (POm). Thus, defensive flight can be enhanced in a somatosensory context-dependent manner via recruiting PV neurons in ZIv, which may be important for increasing survival of prey animals.

摘要

动物在动态环境中生存的关键是调整防御行为的能力。然而,调节先天防御行为的神经回路仍未被很好地理解。特别是,环境威胁通常与多种感觉模态的线索相关联。目前仍在研究这些模态如何相互作用来塑造防御行为。在这项研究中,我们报告了听觉诱导的防御性飞行行为可以通过小鼠的躯体感觉输入得到促进。这种防御行为的跨模态调制是由初级躯体感觉皮层(SSp)到间脑腹侧区(ZIv)的腹侧部分的投射介导的。ZIv 中的 PV 阳性神经元接收来自 SSp 的直接输入,通过其投射到丘脑后内侧复合体(POm)来介导飞行行为的增强。因此,通过募集 ZIv 中的 PV 神经元,可以以躯体感觉依赖的方式增强防御性飞行,这对于增加猎物动物的生存能力可能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf15/6486150/bb8dca115cc6/elife-42728-fig1.jpg

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