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介导平台介导回避的表达和消退的神经结构。

Neural structures mediating expression and extinction of platform-mediated avoidance.

机构信息

Departments of Psychiatry and Anatomy & Neurobiology, University of Puerto Rico School of Medicine, San Juan, Puerto Rico 00936-5067.

Departments of Psychiatry and Anatomy & Neurobiology, University of Puerto Rico School of Medicine, San Juan, Puerto Rico 00936-5067

出版信息

J Neurosci. 2014 Jul 16;34(29):9736-42. doi: 10.1523/JNEUROSCI.0191-14.2014.

Abstract

Individuals use both passive and active defensive responses to environmental threats. Much is known about the neural circuits of passive defensive responses (e.g., freezing), but less is known about the substrates of active defensive responses (e.g., avoidance). We developed an active avoidance task in which rats learn to avoid a tone-signaled footshock by stepping onto a nearby platform. An advantage of this task is that freezing, which can interfere with avoidance, is reduced, thereby facilitating comparison of the effects of manipulations on avoidance versus freezing. After 10 d of avoidance training, rats were infused with muscimol to pharmacologically inactivate the prelimbic cortex (PL), infralimbic cortex (IL), ventral striatum (VS), or basolateral amygdala (BLA). Inactivating PL, VS, or BLA all impaired avoidance expression, but these areas differed with respect to freezing. Inactivating BLA decreased freezing consistent with loss of the tone-shock association, whereas inactivation of VS increased freezing consistent with loss of avoidance memory. Inactivation of PL had no effect on freezing. Inactivation of IL did not impair avoidance expression but did impair avoidance extinction. Our findings suggest that active avoidance is mediated by prefrontal-striatal circuits, which may be overactive in individuals suffering from trauma-related disorders.

摘要

个体使用被动和主动防御反应来应对环境威胁。人们对被动防御反应(例如,冻结)的神经回路了解很多,但对主动防御反应(例如,回避)的基础了解较少。我们开发了一种主动回避任务,在该任务中,大鼠通过踏上附近的平台来学习避免由声音信号提示的足部电击。这个任务的一个优点是,冻结(它可能会干扰回避)减少了,从而便于比较操纵对回避和冻结的影响。在 10 天的回避训练后,大鼠接受了 muscimol 输注,以药理学方式使额前皮质(PL)、下边缘皮质(IL)、腹侧纹状体(VS)或基底外侧杏仁核(BLA)失活。失活 PL、VS 或 BLA 均损害了回避表达,但这些区域在冻结方面存在差异。失活 BLA 降低了冻结,这与声音-电击关联的丧失一致,而失活 VS 增加了冻结,这与回避记忆的丧失一致。PL 的失活对冻结没有影响。IL 的失活不损害回避表达,但损害回避消退。我们的发现表明,主动回避是由前额叶-纹状体回路介导的,而在患有创伤相关障碍的个体中,这些回路可能过度活跃。

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