Neural substrates of olfactory discrimination learning with auditory secondary reinforcement. I. Contributions of the basolateral amygdaloid complex and orbitofrontal cortex.

Graham A Cousens, Tim Otto
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引用次数: 24

Abstract

The basolateral amygdaloid complex (BLA) and orbitofrontal cortex (OFC) share extensive reciprocal connections, and interactions between these regions likely contribute to both mnemonic and affective processes. The present study examined the potential differential contributions of the BLA and OFC to performance of an olfactory discrimination task that incorporates auditory conditioned reinforcement and to expression of immediate post-shock freezing behavior. Damage to the BLA had little effect on performance of the conditioned reinforcement task but abolished immediate post-shock freezing behavior. In contrast, damage to OFC resulted in both a mild but significant performance decrement in the conditioned reinforcement task and a significant attenuation of immediate post-shock freezing behavior. These findings suggest that immediate post-shock freezing behavior is likely critically dependent upon interactions between the BLA and OFC. However, although mnemonic processes underlying accurate performance of the conditioned reinforcement task might be supported by OFC in part, such processes are independent of either the BLA or interactions between these two regions.

听觉二次强化嗅觉辨别学习的神经基础。基底外侧杏仁核复合体和眶额皮质的作用。
基底外侧杏仁核复合体(BLA)和眶额皮质(OFC)共享广泛的相互连接,这些区域之间的相互作用可能有助于记忆和情感过程。本研究考察了BLA和OFC对嗅觉辨别任务表现的潜在差异贡献,该任务包括听觉条件强化和休克后立即冻结行为的表达。BLA的损伤对条件强化任务的表现影响不大,但会消除立即的冲击后冻结行为。相比之下,OFC损伤会导致条件强化任务中轻微但显著的性能下降,以及冲击后立即冻结行为的显著衰减。这些发现表明,休克后立即冻结行为可能严重依赖于BLA和OFC之间的相互作用。然而,尽管OFC在一定程度上支持条件强化任务准确表现的助记过程,但这些过程既不依赖于BLA,也不依赖于这两个区域之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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