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Mapping cortical mesoscopic networks of single spiking cortical or sub-cortical neurons

机译:绘制单个峰值皮质或皮质下神经元的皮质介观网络

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摘要

Understanding the basis of brain function requires knowledge of cortical operations over wide-spatial scales, but also within the context of single neurons. In vivo, wide-field GCaMP imaging and sub-cortical/cortical cellular electrophysiology were used in mice to investigate relationships between spontaneous single neuron spiking and mesoscopic cortical activity. We make use of a rich set of cortical activity motifs that are present in spontaneous activity in anesthetized and awake animals. A mesoscale spike-triggered averaging procedure allowed the identification of motifs that are preferentially linked to individual spiking neurons by employing genetically targeted indicators of neuronal activity. Thalamic neurons predicted and reported specific cycles of wide-scale cortical inhibition/excitation. In contrast, spike-triggered maps derived from single cortical neurons yielded spatio-temporal maps expected for regional cortical consensus function. This approach can define network relationships between any point source of neuronal spiking and mesoscale cortical maps.>DOI:
机译:要了解脑功能的基础,就需要了解广泛范围内的皮层操作知识,而且还需要了解单个神经元的情况。在体内,大范围GCaMP成像和皮层/皮层下细胞电生理被用于小鼠中,以研究自发性单神经元突增与介观皮层活动之间的关系。我们利用在麻醉和清醒动物中自发活动中存在的丰富的皮质活动基序集。中尺度尖峰触发的平均过程允许通过使用神经元活动的遗传靶向指标来鉴定优先与单个尖峰神经元相连的基序。丘脑神经元预测并报告了大规模皮层抑制/激发的特定周期。相反,从单个皮层神经元获得的尖峰触发图产生了预期的区域皮层共有功能的时空图。这种方法可以定义神经元突波的任何点源与中尺度皮层图之间的网络关系。> DOI:

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