Allen Institute for Brain Science, Seattle, WA, USA.
Department of Applied Mathematics, University of Washington, Seattle, WA, USA.
Nature. 2021 Apr;592(7852):86-92. doi: 10.1038/s41586-020-03171-x. Epub 2021 Jan 20.
The anatomy of the mammalian visual system, from the retina to the neocortex, is organized hierarchically. However, direct observation of cellular-level functional interactions across this hierarchy is lacking due to the challenge of simultaneously recording activity across numerous regions. Here we describe a large, open dataset-part of the Allen Brain Observatory-that surveys spiking from tens of thousands of units in six cortical and two thalamic regions in the brains of mice responding to a battery of visual stimuli. Using cross-correlation analysis, we reveal that the organization of inter-area functional connectivity during visual stimulation mirrors the anatomical hierarchy from the Allen Mouse Brain Connectivity Atlas. We find that four classical hierarchical measures-response latency, receptive-field size, phase-locking to drifting gratings and response decay timescale-are all correlated with the hierarchy. Moreover, recordings obtained during a visual task reveal that the correlation between neural activity and behavioural choice also increases along the hierarchy. Our study provides a foundation for understanding coding and signal propagation across hierarchically organized cortical and thalamic visual areas.
哺乳动物视觉系统的解剖结构,从视网膜到新皮层,是按层次组织的。然而,由于同时记录多个区域活动的挑战,在整个层次上直接观察细胞水平的功能相互作用仍然缺乏。在这里,我们描述了一个大型的开放数据集,是艾伦脑观测站的一部分,它调查了对一系列视觉刺激做出反应的老鼠大脑中六个皮质区和两个丘脑区的数万个单位的尖峰活动。使用互相关分析,我们揭示了在视觉刺激期间的跨区域功能连接的组织,反映了来自艾伦老鼠脑连接图谱的解剖层次结构。我们发现,四个经典的层次度量 - 反应潜伏期、感受野大小、对漂移光栅的锁相和响应衰减时间尺度 - 都与层次结构相关。此外,在视觉任务期间获得的记录显示,神经活动与行为选择之间的相关性也沿着层次结构增加。我们的研究为理解皮质和丘脑视觉区域中分层组织的编码和信号传播提供了基础。