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Mechanisms for multiple activity modes of VTA dopamine neurons

机译:VTA多巴胺神经元的多种活动模式的机制

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摘要

Midbrain ventral segmental area (VTA) dopaminergic neurons send numerous projections to cortical and sub-cortical areas, and diffusely release dopamine (DA) to their targets. DA neurons display a range of activity modes that vary in frequency and degree of burst firing. Importantly, DA neuronal bursting is associated with a significantly greater degree of DA release than an equivalent tonic activity pattern. Here, we introduce a single compartmental, conductance-based computational model for DA cell activity that captures the behavior of DA neuronal dynamics and examine the multiple factors that underlie DA firing modes: the strength of the SK conductance, the amount of drive, and GABA inhibition. Our results suggest that neurons with low SK conductance fire in a fast firing mode, are correlated with burst firing, and require higher levels of applied current before undergoing depolarization block. We go on to consider the role of GABAergic inhibition on an ensemble of dynamical classes of DA neurons and find that strong GABA inhibition suppresses burst firing. Our studies suggest differences in the distribution of the SK conductance and GABA inhibition levels may indicate subclasses of DA neurons within the VTA. We further identify, that by considering alternate potassium dynamics, the dynamics display burst patterns that terminate via depolarization block, akin to those observed in vivo in VTA DA neurons and in substantia nigra pars compacta (SNc) DA cell preparations under apamin application. In addition, we consider the generation of transient burst firing events that are NMDA-initiated or elicited by a sudden decrease of GABA inhibition, that is, disinhibition.
机译:中脑腹节段区(VTA)多巴胺能神经元向皮质和皮质下区域发送大量投影,并向其靶标扩散释放多巴胺(DA)。 DA神经元显示一系列活动模式,这些活动模式的爆发频率和爆发程度不同。重要的是,与等效的强直活动模式相比,DA神经元爆发与更大程度的DA释放相关。在这里,我们为DA细胞的活动引入了一个基于电导的单个区室计算模型,该模型捕获了DA神经元动力学的行为,并研究了DA发射模式的多种因素:SK电导的强度,驱动量和GABA抑制。我们的结果表明,具有低SK电导的神经元以快速激发模式激发,与爆发激发相关,并且在经历去极化阻断之前需要更高水平的施加电流。我们继续考虑了GABA抑制作用对动态类DA神经元集合的作用,并发现强烈的GABA抑制作用可以抑制爆发放电。我们的研究表明,SK电导和GABA抑制水平分布的差异可能表明VTA中DA神经元的亚类。我们进一步确定,通过考虑交替的钾动力学,该动力学显示出通过去极化阻滞终止的猝发模式,类似于在VTA DA神经元中和在阿帕明应用下的黑质致密部(SNc)DA细胞制备物中观察到的那些。此外,我们考虑了由NMDA引发或由GABA抑制作用(即抑制作用)突然降低引起的瞬态爆发激发事件的产生。

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