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Manipulating the revision of reward value during the intertrial interval increases sign tracking and dopamine release

机译:在间隔期间操纵奖励值的修正会增加体征追踪和多巴胺释放

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摘要

Recent computational models of sign tracking (ST) and goal tracking (GT) have accounted for observations that dopamine (DA) is not necessary for all forms of learning and have provided a set of predictions to further their validity. Among these, a central prediction is that manipulating the intertrial interval (ITI) during autoshaping should change the relative ST-GT proportion as well as DA phasic responses. Here, we tested these predictions and found that lengthening the ITI increased ST, i.e., behavioral engagement with conditioned stimuli (CS) and cue-induced phasic DA release. Importantly, DA release was also present at the time of reward delivery, even after learning, and DA release was correlated with time spent in the food cup during the ITI. During conditioning with shorter ITIs, GT was prominent (i.e., engagement with food cup), and DA release responded to the CS while being absent at the time of reward delivery after learning. Hence, shorter ITIs restored the classical DA reward prediction error (RPE) pattern. These results validate the computational hypotheses, opening new perspectives on the understanding of individual differences in Pavlovian conditioning and DA signaling.
机译:符号跟踪(ST)和目标跟踪(GT)的最新计算模型已经说明了多巴胺(DA)并不是所有形式的学习都必需的观察结果,并提供了一组预测以进一步提高其有效性。其中,一个主要的预测是,在自动整形过程中操纵间隔时间(ITI)应该会改变相对ST-GT比例以及DA相位响应。在这里,我们测试了这些预测结果,发现延长ITI会增加ST,即与条件性刺激(CS)的行为参与和提示诱导的阶段性DA释放。重要的是,即使在学习后,DA的释放也出现在奖励发放时,并且DA的释放与ITI期间在食物杯中花费的时间相关。在使用较短的ITI进行调节的过程中,GT表现突出(即与食物杯接触),并且在学习后奖励发放时,DA释放对CS有所反应,而CS却不存在。因此,较短的ITI恢复了经典的DA奖励预测误差(RPE)模式。这些结果验证了计算假设,为理解巴甫洛夫条件和DA信号的个体差异开辟了新的视角。

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