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恐惧与焦虑的神经回路:神经行为学视角的见解

Neural Circuits of Fear and Anxiety: Insights from a Neuroethological Perspective.

作者信息

Melleu Fernando Falkenburger, Canteras Newton Sabino

机构信息

Department of Anatomy, Institute of Biomedical SciencesUniversity of São Paulo, São Paulo, Brazil.

出版信息

Physiology (Bethesda). 2025 May 1;40(3):0. doi: 10.1152/physiol.00042.2024. Epub 2024 Dec 11.

Abstract

The predatory imminence continuum (PIC) of antipredator defensive behavior has been a helpful strategy for modeling anxiety and fear-related disorders in nonclinical research. The PIC is divided into three different sequential stages that reflect defensive behavioral strategy in response to predatory imminence. However, the PIC was experimentally addressed with a series of shock-based fear conditioning experiments rather than predatory threats. In this article, we consider the PIC in a more naturalistic behavioral setting, focusing on analyzing the neural systems of animals responding to terrestrial and aerial predators. Of relevance, there is a sequential engagement of the distinct neural circuits along each phase of the PIC. In the preencounter phase, prefrontal cortical networks are particularly involved in planning and organizing behavioral responses to ambiguous threats. As the predatory cues or the real predator is detected, there is an engagement of amygdalar and hippocampal > hypothalamic pathways in conjunction with the periaqueductal gray, which organize fear responses. This dynamic particularly reveals how specific neural circuits are set into action to subserve distinct defensive responses. Moreover, we further explore the neural circuits governing other fearful situations outside the context of the PIC, including agonistic social encounters and interoceptive challenges. This analysis reveals an interesting overlap between the neural systems responding to these threats and those involved in response to predatory threats. The present review clarifies how defensive circuits respond to natural threats and provides a more realistic view of the neural systems underlying anxiety and fear responses.

摘要

在非临床研究中,反捕食者防御行为的捕食迫近连续体(PIC)一直是模拟焦虑和恐惧相关障碍的一种有用策略。PIC分为三个不同的连续阶段,反映了对捕食迫近的防御行为策略。然而,PIC是通过一系列基于电击的恐惧条件反射实验而非捕食威胁进行实验研究的。在本文中,我们在更自然主义的行为环境中考虑PIC,重点分析动物对陆地和空中捕食者做出反应的神经系统。相关的是,沿着PIC的每个阶段,不同的神经回路会依次参与。在遭遇前阶段,前额叶皮层网络特别参与对模糊威胁的行为反应的规划和组织。当检测到捕食线索或真正的捕食者时,杏仁核和海马体>下丘脑通路会与导水管周围灰质一起参与,组织恐惧反应。这种动态变化特别揭示了特定神经回路是如何被激活以服务于不同的防御反应的。此外,我们进一步探索在PIC背景之外控制其他恐惧情况的神经回路,包括竞争性社会遭遇和内感受挑战。这一分析揭示了对这些威胁做出反应的神经系统与对捕食威胁做出反应的神经系统之间有趣的重叠。本综述阐明了防御回路如何对自然威胁做出反应,并提供了对焦虑和恐惧反应背后的神经系统更现实的看法。

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