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先天防御行为的神经回路研究进展

Advances in neural circuits of innate fear defense behavior.

机构信息

Henan University of Chinese Medicine School of Medicine, Zhengzhou 450046, China.

出版信息

Zhejiang Da Xue Xue Bao Yi Xue Ban. 2023 Aug 1;52(5):653-661. doi: 10.3724/zdxbyxb-2023-0131.

Abstract

Fear, a negative emotion triggered by dangerous stimuli, can lead to psychiatric disorders such as phobias, anxiety disorders, and depression. Investigating the neural circuitry underlying congenital fear can offer insights into the pathophysiological mechanisms of related psychiatric conditions. Research on innate fear primarily centers on the response mechanisms to various sensory signals, including olfactory, visual and auditory stimuli. Different types of fear signal inputs are regulated by distinct neural circuits. The neural circuits of the main and accessory olfactory systems receive and process olfactory stimuli, mediating defensive responses like freezing. Escape behaviors elicited by visual stimuli are primarily regulated through the superior colliculus and hypothalamic projection circuits. Auditory stimuli-induced responses, including escape, are mainly mediated through auditory cortex projection circuits. In this article, we review the research progress on neural circuits of innate fear defensive behaviors in animals. We further discuss the different sensory systems, especially the projection circuits of olfactory, visual and auditory systems, to provide references for the mechanistic study of related mental disorders.

摘要

恐惧是一种由危险刺激引发的消极情绪,可导致恐惧症、焦虑症和抑郁症等精神疾病。研究先天性恐惧的神经回路可以深入了解相关精神疾病的病理生理机制。先天恐惧的研究主要集中在对各种感觉信号(包括嗅觉、视觉和听觉刺激)的反应机制上。不同类型的恐惧信号输入由不同的神经回路调节。主要和辅助嗅觉系统的神经回路接收和处理嗅觉刺激,介导如冻结等防御反应。视觉刺激引发的逃避行为主要通过上丘和下丘脑投射回路进行调节。听觉刺激引起的反应,包括逃避,主要通过听觉皮层投射回路介导。本文综述了动物先天恐惧防御行为的神经回路研究进展。我们进一步讨论了不同的感觉系统,特别是嗅觉、视觉和听觉系统的投射回路,为相关精神障碍的机制研究提供参考。

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