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Task-phase-specific dynamics of basal forebrain neuronal ensembles

机译:特定任务阶段的基础前脑神经元动态。

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摘要

Cortically projecting basal forebrain neurons play a critical role in learning and attention, and their degeneration accompanies age-related impairments in cognition. Despite the impressive anatomical and cell-type complexity of this system, currently available data suggest that basal forebrain neurons lack complexity in their response fields, with activity primarily reflecting only macro-level brain states such as sleep and wake, onset of relevant stimuli and/or reward obtainment. The current study examined the spiking activity of basal forebrain neuron populations across multiple phases of a selective attention task, addressing, in particular, the issue of complexity in ensemble firing patterns across time. Clustering techniques applied to the full population revealed a large number of distinct categories of task-phase-specific activity patterns. Unique population firing-rate vectors defined each task phase and most categories of task-phase-specific firing had counterparts with opposing firing patterns. An analogous set of task-phase-specific firing patterns was also observed in a population of posterior parietal cortex neurons. Thus, consistent with the known anatomical complexity, basal forebrain population dynamics are capable of differentially modulating their cortical targets according to the unique sets of environmental stimuli, motor requirements, and cognitive processes associated with different task phases.
机译:皮层投射的基底前脑神经元在学习和注意力中起关键作用,并且它们的变性伴随着年龄相关的认知障碍。尽管该系统在解剖学和细胞类型上令人印象深刻,但目前可获得的数据表明,基底前脑神经元在其反应域中缺乏复杂性,其活动主要仅反映宏观水平的大脑状态,例如睡眠和醒来,相关刺激的发作和/或奖励获得。当前的研究检查了选择性注意任务的多个阶段中基底前脑神经元种群的突触活动,特别是解决了整个时间跨组射击模式的复杂性问题。应用于全部人群的聚类技术揭示了任务阶段特定活动模式的大量不同类别。唯一的人口点火率向量定义了每个任务阶段,大多数特定于任务阶段的点火类别具有相反的点火模式。在一组后顶叶皮层神经元中也观察到一组类似的任务阶段特定的放电模式。因此,与已知的解剖学复杂性相一致,基础前脑种群动态能够根据独特的环境刺激,运动要求和与不同任务阶段相关的认知过程来差异地调节其皮质目标。

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