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行为限制分析以及对捕食者气味三甲硫噻唑啉的恐惧神经解剖学:动物恐惧症模型

Analysis of behavioral constraints and the neuroanatomy of fear to the predator odor trimethylthiazoline: a model for animal phobias.

作者信息

Rosen Jeffrey B, Pagani Jerome H, Rolla Katherine L G, Davis Cameron

机构信息

Behavioral Neuroscience Program, Department of Psychology, University of Delaware, 108 Wolf Hall, Newark, DE 19716, United States.

出版信息

Neurosci Biobehav Rev. 2008 Sep;32(7):1267-76. doi: 10.1016/j.neubiorev.2008.05.006. Epub 2008 May 13.

Abstract

Specific phobias, including animal phobias, are the most common anxiety disorders, and have a strong innate and genetic component. Research on the neurobiology and environmental constraints of innate fear of predators in rodents may be useful in elucidating mechanisms of animal phobias in humans. The present article reviews research on innate fear in rats to trimethylthiazoline (TMT), an odor originally isolated from fox feces. TMT induces unconditioned freezing and other defensive responses that are regulated by the dose of TMT and the shape of the testing environment. Contextual conditioning induced by TMT occurs, but is constrained by the environment. Lesion studies indicate the amygdala circuitry subserving fear conditioning is not necessary for unconditioned fear to TMT. Additionally, a medial hypothalamic defensive circuit also appears not necessary for unconditioned freezing to TMT, whereas circuits that include the medial nucleus of the amygdala and the bed nucleus of the stria terminalis are essential. The importance of these findings of innate predator odor fear in rodents to animal phobias in humans is discussed.

摘要

特定恐惧症,包括动物恐惧症,是最常见的焦虑症,且具有很强的先天性和遗传成分。对啮齿动物先天对捕食者恐惧的神经生物学和环境限制因素的研究,可能有助于阐明人类动物恐惧症的机制。本文综述了大鼠对三甲基噻唑啉(TMT)先天恐惧的研究,TMT是一种最初从狐狸粪便中分离出的气味物质。TMT会诱发无条件僵住及其他防御反应,这些反应受TMT剂量和测试环境形状的调节。TMT诱发的情境性条件作用会发生,但受环境限制。损伤研究表明,杏仁核回路虽参与恐惧条件作用,但并非对TMT的无条件恐惧所必需。此外,内侧下丘脑防御回路似乎对TMT诱发的无条件僵住也非必需,而包含杏仁核内侧核和终纹床核的回路则至关重要。本文还讨论了这些关于啮齿动物先天对捕食者气味恐惧的研究结果对人类动物恐惧症的重要性。

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