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Differential Involvement of the Basolateral Amygdala Orbitofrontal Cortex and Nucleus Accumbens Core in the Acquisition and Use of Reward Expectancies

机译:基底外侧杏仁核眶额皮层和伏隔核核心在获得和使用奖励期望中的差异性参与

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摘要

In this study, the authors tested the hypothesis that the basolateral amygdala (BLA), orbitofrontal cortex (OFC), nucleus accumbens core (NA-core), and the extended hippocampus mediate different aspects of the development–maintenance of unique reward expectancies produced by the differential outcomes procedure (DOP). Rats were trained with either DOP or a nondifferential outcomes procedure (NOP) on a simple discrimination task. Fornix lesions did not affect either version of the task, demonstrating that the extended hippocampal system has no role in stimulus–outcome (S-O) associations. In contrast, in the DOP condition, BLA lesions impaired performance throughout training, OFC lesions impaired choice accuracy only in the later maintenance phase, and NA-core lesions resulted in enhanced learning. These results suggest that BLA and OFC are important for establishment (BLA) and behavioral maintenance (OFC) of S-O associations, whereas the NA-core is not needed and can in fact impede using multiple S-O associations. No impairments were observed in the NOP condition, demonstrating that these structures are not critical to stimulus–response learning.
机译:在这项研究中,作者检验了以下假设:基底外侧杏仁核(BLA),眶额皮质(OFC),伏隔核核心(NA-core)和延伸的海马介导了发育的不同方面-维持了由产生的独特奖励期望差异结果程序(DOP)。用DOP或非微分结果程序(NOP)对大鼠进行简单的辨别任务训练。 Fornix病变没有影响这两种任务的任何形式,表明扩展的海马系统在刺激-结果(S-O)关联中没有作用。相比之下,在DOP条件下,BLA病变会损害整个训练过程的性​​能,OFC病变只会在后期维护阶段损害选择准确性,而NA核心病变会增强学习。这些结果表明,BLA和OFC对于S-O关联的建立(BLA)和行为维持(OFC)很重要,而NA核心不是必需的,实际上可以阻止使用多个S-O关联。在NOP条件下未观察到任何损伤,表明这些结构对于刺激反应学习并不重要。

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