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Input-specific control of reward and aversion in the ventral tegmental area

机译:针对腹侧被盖区的奖赏和厌恶的输入特定控制

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摘要

Ventral tegmental area (VTA) dopamine neurons have important roles in adaptive and pathological brain functions related to reward and motivation. However, it is unknown whether subpopulations of VTA dopamine neurons participate in distinct circuits that encode different motivational signatures, and whether inputs to the VTA differentially modulate such circuits. Here we show that, because of differences in synaptic connectivity, activation of inputs to the VTA from the laterodorsal tegmentum and the lateral habenula elicit reward and aversion in mice, respectively. Laterodorsal tegmentum neurons preferentially synapse on dopamine neurons projecting to the nucleus accumbens lateral shell, whereas lateral habenula neurons synapse primarily on dopamine neurons projecting to the medial prefrontal cortex as well as on GABAergic (γ-aminobutyric-acid-containing) neurons in the rostromedial tegmental nucleus. These results establish that distinct VTA circuits generate reward and aversion, and thereby provide a new framework for understanding the circuit basis of adaptive and pathological motivated behaviours.
机译:腹侧被盖区(VTA)多巴胺神经元在与奖励和动机有关的适应性和病理性脑功能中具有重要作用。但是,尚不清楚VTA多巴胺神经元的亚群是否参与编码不同动机签名的不同电路,以及VTA的输入是否对这些电路进行差异调制。在这里,我们显示,由于突触连接性的差异,从后背盖膜和外侧ha管向VTA输入的激活分别引起小鼠的奖励和厌恶。背外侧被膜神经元优先突触到伏隔核外侧壳的多巴胺神经元突触,而外侧ha脑神经元主要突触到前额叶内侧皮层的多巴胺神经元突触,以及在结节被膜中的GABA能(含γ-氨基丁酸)神经元突触。核。这些结果表明,不同的VTA电路会产生奖励和厌恶,从而为理解自适应和病理性行为的电路基础提供了新的框架。

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