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在黑质多巴胺神经元的发射模式中,突发作为非线性确定性的来源。

Bursting as a source of non-linear determinism in the firing patterns of nigral dopamine neurons.

机构信息

Department of Psychiatry, Columbia College of Physicians and Surgeons, New York, NY, USA.

出版信息

Eur J Neurosci. 2012 Nov;36(9):3214-23. doi: 10.1111/j.1460-9568.2012.08238.x. Epub 2012 Jul 25.

Abstract

Nigral dopamine (DA) neurons in vivo exhibit complex firing patterns consisting of tonic single-spikes and phasic bursts that encode information for certain types of reward-related learning and behavior. Non-linear dynamical analysis has previously demonstrated the presence of a non-linear deterministic structure in complex firing patterns of DA neurons, yet the origin of this non-linear determinism remains unknown. In this study, we hypothesized that bursting activity is the primary source of non-linear determinism in the firing patterns of DA neurons. To test this hypothesis, we investigated the dimension complexity of inter-spike interval data recorded in vivo from bursting and non-bursting DA neurons in the chloral hydrate-anesthetized rat substantia nigra. We found that bursting DA neurons exhibited non-linear determinism in their firing patterns, whereas non-bursting DA neurons showed truly stochastic firing patterns. Determinism was also detected in the isolated burst and inter-burst interval data extracted from firing patterns of bursting neurons. Moreover, less bursting DA neurons in halothane-anesthetized rats exhibited higher dimensional spiking dynamics than do more bursting DA neurons in chloral hydrate-anesthetized rats. These results strongly indicate that bursting activity is the main source of low-dimensional, non-linear determinism in the firing patterns of DA neurons. This finding furthermore suggests that bursts are the likely carriers of meaningful information in the firing activities of DA neurons.

摘要

体内的黑质多巴胺 (DA) 神经元表现出复杂的放电模式,包括持续的单峰和相位爆发,这些模式编码了某些类型的与奖励相关的学习和行为信息。非线性动力学分析先前已经证明,DA 神经元复杂放电模式中存在非线性确定性结构,但这种非线性确定性的起源仍然未知。在这项研究中,我们假设爆发活动是 DA 神经元放电模式中非线性确定性的主要来源。为了验证这一假设,我们研究了在氯醛麻醉的大鼠黑质中记录的爆发和非爆发 DA 神经元的峰间间隔数据的维度复杂性。我们发现,爆发性 DA 神经元在其放电模式中表现出非线性确定性,而非爆发性 DA 神经元则表现出真正的随机放电模式。在从爆发性神经元的放电模式中提取的爆发和爆发间间隔数据中也检测到了确定性。此外,在氯醛麻醉的大鼠中,爆发性 DA 神经元较少,其脉冲动力学的维度更高,而在卤烷麻醉的大鼠中,爆发性 DA 神经元越多,其脉冲动力学的维度越低。这些结果强烈表明,爆发活动是 DA 神经元放电模式中低维非线性确定性的主要来源。这一发现进一步表明,爆发是 DA 神经元放电活动中可能携带有意义信息的载体。

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