A survey of neurophysiological differentiation across mouse visual brain areas and timescales

被引:1
|
作者
Gandhi, Saurabh R. [1 ]
Mayner, William G. P. [2 ]
Marshall, William [3 ]
Billeh, Yazan N. [1 ]
Bennett, Corbett [1 ]
Gale, Samuel D. [1 ]
Mochizuki, Chris [1 ]
Siegle, Joshua H. [1 ]
Olsen, Shawn [1 ]
Tononi, Giulio [2 ]
Koch, Christof [1 ]
Arkhipov, Anton [1 ]
机构
[1] Allen Inst, MindScope Program, Seattle, WA 98109 USA
[2] Univ Wisconsin, Dept Psychiat, Madison, WI USA
[3] Brock Univ, Dept Math & Stat, St Catharines, ON, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
visual cortex; neurophysiological differentiation; mouse; Allen Institute for Brain Science; Neuropixels; conscious perception; CONSCIOUSNESS; DYNAMICS; COMA;
D O I
10.3389/fncom.2023.1040629
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Neurophysiological differentiation (ND), a measure of the number of distinct activity states that a neural population visits over a time interval, has been used as a correlate of meaningfulness or subjective perception of visual stimuli. ND has largely been studied in non-invasive human whole-brain recordings where spatial resolution is limited. However, it is likely that perception is supported by discrete neuronal populations rather than the whole brain. Therefore, here we use Neuropixels recordings from the mouse brain to characterize the ND metric across a wide range of temporal scales, within neural populations recorded at single-cell resolution in localized regions. Using the spiking activity of thousands of simultaneously recorded neurons spanning 6 visual cortical areas and the visual thalamus, we show that the ND of stimulus-evoked activity of the entire visual cortex is higher for naturalistic stimuli relative to artificial ones. This finding holds in most individual areas throughout the visual hierarchy. Moreover, for animals performing an image change detection task, ND of the entire visual cortex (though not individual areas) is higher for successful detection compared to failed trials, consistent with the assumed perception of the stimulus. Together, these results suggest that ND computed on cellular-level neural recordings is a useful tool highlighting cell populations that may be involved in subjective perception.
引用
收藏
页数:14
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