首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Cue-evoked dopamine release in the nucleus accumbens shell tracks reinforcer magnitude during intracranial self-stimulation.
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Cue-evoked dopamine release in the nucleus accumbens shell tracks reinforcer magnitude during intracranial self-stimulation.

机译:在颅内自我刺激过程中,伏伏核壳中的提示诱发的多巴胺释放跟踪补强剂的大小。

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The mesolimbic dopamine system is critically involved in modulating reward-seeking behavior and is transiently activated upon presentation of reward-predictive cues. It has previously been shown, using fast-scan cyclic voltammetry in behaving rats, that cues predicting a variety of reinforcers including food/water, cocaine or intracranial self-stimulation (ICSS) elicit time-locked transient fluctuations in dopamine concentration in the nucleus accumbens (NAc) shell. These dopamine transients have been found to correlate with reward-related learning and are believed to promote reward-seeking behavior. Here, we investigated the effects of varying reinforcer magnitude (intracranial stimulation parameters) on cue-evoked dopamine release in the NAc shell in rats performing ICSS. We found that the amplitude of cue-evoked dopamine is adaptable, tracks reinforcer magnitude and is significantly correlated with ICSS seeking behavior. Specifically, the concentration of cue-associated dopamine transients increased significantly with increasing reinforcer magnitude, while, at the same time, the latency to lever press decreased with reinforcer magnitude. These data support the proposed role of NAc dopamine in the facilitation of reward-seeking and provide unique insight into factors influencing the plasticity of dopaminergic signaling during behavior.
机译:中脑边缘的多巴胺系统主要参与调节奖励寻求行为,并在提供奖励预测提示时被短暂激活。先前已经证明,在行为表现良好的大鼠中使用快速扫描循环伏安法可以提示预测包括食物/水,可卡因或颅内自我刺激(ICSS)在内的多种强化剂的原因是伏伏核中多巴胺浓度会出现时间锁定的瞬时波动。 (NAc)外壳。已发现这些多巴胺瞬态与奖励相关的学习相关,并被认为促进奖励寻求行为。在这里,我们研究了在执行ICSS的大鼠中,不同的增强剂幅度(颅内刺激参数)对NAc外壳中诱发的多巴胺释放的影响。我们发现,提示诱发的多巴胺的振幅是适应性的,跟踪增强剂的强度,并与ICSS寻求行为显着相关。具体而言,与线索相关的多巴胺瞬变的浓度随增强子幅度的增加而显着增加,而与此同时,杠杆按压的等待时间随增强子幅度的减小而降低。这些数据支持NAc多巴胺在促进奖励寻求中的拟议作用,并提供影响行为期间多巴胺能信号可塑性的因素的独特见解。

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