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The Basolateral Amygdala Is Critical to the Expression of Pavlovian and Instrumental Outcome-Specific Reinforcer Devaluation Effects

机译:基底外侧杏仁核对巴甫洛夫式和工具结果特定的钢筋贬值效应的表达至关重要

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摘要

Considerable evidence implicates the basolateral amygdala (BLA) in the formation of outcome representations that link cues to the incentive properties of reinforcers. Animals with BLA damage show impaired performance in reinforcer devaluation tasks, in which the value of the food reinforcer is reduced by satiation or food–toxin pairings after the completion of cue or response training. Although intact animals spontaneously reduce their conditioned responding after such reinforcer devaluation procedures, animals with BLA lesions made before training typically do not, as evidenced across a range of species, training contingencies, and devaluation procedures. In contrast, the role of the BLA in devaluation task performance once such outcome representations are established is unclear. Whereas found normal devaluation performance in rats when BLA lesions were made after pavlovian light–food pairings but before devaluation by food–toxin pairings, found impaired devaluation performance when BLA lesions were made after instrumental training with multiple instrumental responses and food reinforcers but before devaluation of one reinforcer by selective satiation. Those studies differed in their use of pavlovian or operant training contingencies, single or multiple reinforcers, and associative or motivational devaluation procedures. Here we found that, when multiple reinforcers were used, posttraining BLA lesions disrupted the expression of devaluation performance in rats, using either pavlovian or instrumental training procedures and either conditioned taste aversion or satiation devaluation procedures. Thus, BLA apparently plays a critical role in maintaining or using sensory associations of reinforcer value when multiple outcomes must be coded but not under single-outcome conditions.
机译:大量证据提示基底外侧杏仁核(BLA)形成了将提示与增强剂的激励特性联系起来的结果表示。具有BLA损伤的动物在增强子贬值任务中表现出受损,其中在完成提示或反应训练后,饱食或食物-毒素配对会降低食物增强子的价值。尽管完好无损的动物会在这种增强材料贬值程序后自发地降低其条件响应,但在训练之前制作的具有BLA病变的动物通常不会这样做,这在各种物种,训练的偶然性和贬值程序中都得到了证明。相反,一旦确定了这种结果表示形式,BLA在贬值任务执行中的作用尚不清楚。帕夫洛夫轻食配对后在BLA损伤后但食物毒素配对使BLA损伤时,大鼠的贬值性能正常;而在多种工具反应和食物增强剂的工具训练后但BLA贬值之前,BLA损伤的贬值性能受损。通过选择性饱足一个补强。这些研究在使用帕夫洛夫式或操作性训练偶然性,使用单个或多个补强器以及联想或动机贬值程序上有所不同。在这里,我们发现,当使用多个增强剂时,使用帕夫洛夫式或仪器式训练程序以及条件性厌恶或饱足感贬值程序,训练后的BLA损伤会破坏大鼠贬值性能的表达。因此,当必须编码多个结果而不是在单个结果条件下时,BLA显然在维持或使用增强剂值的感觉关联中起着至关重要的作用。

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