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首页> 外文期刊>Biological psychiatry >Sidman instrumental avoidance initially depends on lateral and basal amygdala and is constrained by central amygdala-mediated Pavlovian processes.
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Sidman instrumental avoidance initially depends on lateral and basal amygdala and is constrained by central amygdala-mediated Pavlovian processes.

机译:Sidman的器械回避起初取决于外侧和基底的杏仁核,并受到中央杏仁核介导的巴甫洛夫过程的约束。

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BACKGROUND: The lateral (LA) and central (CE), but not basal (B), amygdala nuclei are necessary for reactive Pavlovian fear responses such as freezing. The amygdala also plays a key role in the acquisition and expression of active instrumental defensive behaviors, but little is known about the specific roles of amygdala nuclei. Using a Sidman active avoidance (AA) task, we examined the necessity of LA, B, and CE for learning and performance. Pavlovian freezing was simultaneously assessed to examine the contributions of amygdala nuclei to the transition from reactive to active defensive responding. METHODS: Rats received electrolytic lesions of LA, CE, or B before AA training, or following overtraining. Rats that expressed low levels of AA performance during training received bilateral electrolytic lesions to CE to eliminate competing freezing reactions and rescue AA. AA performance and freezing were assessed. RESULTS: Damage to LA and B, but not CE, impaired the acquisition of AA. Performance of AA became amygdala-independent following overtraining. CE lesions abolished Pavlovian freezing and rescued instrumental AA performance in rats that expressed low levels of avoidance responses and high levels of freezing during training. CONCLUSIONS: Although the acquisition of Pavlovian fear depends on LA and CE, but not B, acquisition of instrumental AA is dependent on LA and B, but not CE. CE-dependent Pavlovian processes that control freezing can constrain avoidance behavior. Performance of well-trained AA becomes independent of all three amygdala nuclei. Thus, it appears that different output pathways of LA mediate reactive and active conditioned defensive responding.
机译:背景:杏仁核对外侧(LA)和中央(CE)而言,而不是基底(B),对于反应性巴甫洛夫式恐惧反应(例如冰冻)是必需的。杏仁核在主动防御性行为的获得和表达中也起着关键作用,但是对于杏仁核的具体作用知之甚少。使用Sidman主动回避(AA)任务,我们研究了LA,B和CE对学习和表现的必要性。同时评估了巴甫洛夫冷冻,以检查杏仁核对从反应性防御反应向主动防御反应转变的贡献。方法:在AA训练之前或过度训练后,大鼠接受了LA,CE或B的电解损伤。在训练过程中表现出低水平AA性能的大鼠接受了CE的双侧电解损伤,以消除竞争性冰冻反应并拯救AA。评估了AA性能和冷冻。结果:对LA和B的损害(但对CE的损害)损害了AA的获得。过度训练后,AA的表现变得独立于杏仁核。 CE损伤消除了巴甫洛夫冷冻并恢复了大鼠在训练过程中表现出低水平的回避反应和高水平的冻结的仪器AA性能。结论:尽管获得巴甫洛夫式恐惧取决于LA和CE,但不取决于B,但获得器乐性AA取决于LA和B,而不取决于CE。控制冻结的CE依赖型Pavlovian过程可能会限制回避行为。训练有素的AA的表现变得独立于所有三个杏仁核。因此,看来LA的不同输出途径介导了反应性和主动性条件防御反应。

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