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Pre-Training Reversible Inactivation of the Basal Amygdala (BA) Disrupts Contextual but Not Auditory Fear Conditioning in Rats

机译:训练前基础杏仁核(BA)的可逆失活扰乱了大鼠的背景但听觉恐惧条件却没有

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摘要

The basolateral amygdala complex (BLA), including the lateral (LA), basal (BA) and accessory basal (AB) nuclei, is involved in acquisition of contextual and auditory fear conditioning. The BA is one of the main targets for hippocampal information, a brain structure critical for contextual learning, which integrates several discrete stimuli into a single configural representation. Congruent with the hodology, selective neurotoxic damage to the BA results in impairments in contextual, but not auditory, fear conditioning, similarly to the behavioral impairments found after hippocampal damage. This study evaluated the effects of muscimol-induced reversible inactivation of the BA during a simultaneous contextual and auditory fear conditioning training on later fear responses to both the context and the tone, tested separately, without muscimol administration. As compared to control rats micro-infused with vehicle, subjects micro-infused with muscimol before training exhibited, during testing without muscimol, significant reduction of freezing responses to the conditioned context, but not to the conditioned tone. Therefore, reversible inactivation of the BA during training impaired contextual, but not auditory fear conditioning, thus confirming and extending similar behavioral observations following selective neurotoxic damage to the BA and, in addition, revealing that this effect is not related to the lack of a functional BA during testing.
机译:基底外侧杏仁核复合物(BLA),包括外侧核(LA),基底核(BA)和副基底核(AB),参与语境和听觉恐惧条件的获取。 BA是海马信息的主要目标之一,海马信息是对情境学习至关重要的大脑结构,它将几个离散的刺激整合到单个配置表示中。与流变学相一致,对BA的选择性神经毒性损害会导致情境(而非听觉,恐惧条件)受损,与海马受损后的行为受损相似。这项研究评估了在同时进行情境和听觉恐惧条件训练时,由麝香酚引起的BA的可逆失活对以后对情景和语气的恐惧反应的影响。与微注射赋形剂的对照大鼠相比,在训练前微注射麝香酚的受试者在没有麝香酚的测试过程中表现出对条件环境而不是对条件音的冷冻反应的显着降低。因此,在训练过程中BA的可逆失活会损害情境,但听觉恐惧条件不会受损,从而证实并扩展了对BA的选择性神经毒性损伤后类似的行为观察,此外,该作用与缺乏功能无关测试期间的BA。

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