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PREFERENTIAL ACTIVATION OF MIDBRAIN DOPAMINE NEURONS BY APPETITIVE RATHER THAN AVERSIVE STIMULI

机译:厌恶刺激对大鼠大脑中多巴胺神经元的优先激活

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MIDBRAIN dopamine systems are crucially involved in motivational processes underlying the learning and execution of goal-directed behaviour(1-5). Dopamine neurons in monkeys are uniformly activated by unpredicted appetitive stimuli such as food and liquid rewards and conditioned, reward-predicting stimuli. By contrast, fully predicted stimuli are ineffective(6-8), and the omission of predicted reward depresses their activity(9). These characteristics follow associative-learning rules(10,11), suggesting that dopamine responses report an error in reward prediction(12). Accordingly, neural network models are efficiently trained using a dopamine-like reinforcement signal(13,14). However, it is unknown whether the responses to environmental stimuli concern specific motivational attributes or reflect more general stimulus salience(4,15). To resolve this, we have compared dopamine impulse responses to motivationally opposing appetitive and aversive stimuli. In contrast to appetitive events, primary and conditioned non-noxious aversive stimuli either failed to activate dopamine neurons or, in cases of close resemblance with appetitive stimuli, induced weaker responses than appetitive stimuli. Thus, dopamine neurons preferentially report environmental stimuli with appetitive rather than aversive motivational value. [References: 30]
机译:MIDBRAIN多巴胺系统至关重要地参与了学习和执行目标导向行为的动机过程(1-5)。猴子中的多巴胺神经元被不可预测的食欲刺激(例如食物和液体奖励以及有条件的,奖励预测的刺激)统一激活。相比之下,完全预测的刺激是无效的(6-8),忽略预测的奖励会抑制其活动(9)。这些特征遵循关联学习规则(10,11),表明多巴胺反应报告了奖励预测中的错误(12)。因此,使用多巴胺样增强信号有效地训练了神经网络模型(13,14)。然而,对环境刺激的反应是否涉及特定的动机属性还是反映更普遍的刺激显着性尚不清楚(4,15)。为了解决这个问题,我们将多巴胺的冲动反应与动机上相反的食欲和厌恶刺激进行了比较。与竞争性事件相反,初级和条件性非伤害性厌恶刺激要么无法激活多巴胺神经元,要么在与竞争性刺激非常相似的情况下,其诱导的反应较竞争性刺激弱。因此,多巴胺神经元优先报告具有刺激性而非厌恶动机价值的环境刺激。 [参考:30]

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