Anatomical and functional connectomes underlying hierarchical visual processing in mouse visual system

被引:0
作者
Răzvan Gămănuţ
Daisuke Shimaoka
机构
[1] Monash University,Department of Physiology
来源
Brain Structure and Function | 2022年 / 227卷
关键词
Visual system; Hierarchy; Structural connectivity; Functional connectivity; Mouse; Lateral posterior nucleus; Lateral geniculate nucleus; Superior colliculus;
D O I
暂无
中图分类号
学科分类号
摘要
Over the last 10 years, there has been a surge in interest in the rodent visual system resulting from the discovery of visual processing functions shared with primates V1, and of a complex anatomical structure in the extrastriate visual cortex. This surprisingly intricate visual system was elucidated by recent investigations using rapidly growing genetic tools primarily available in the mouse. Here, we examine the structural and functional connections of visual areas that have been identified in mice mostly during the past decade, and the impact of these findings on our understanding of brain functions associated with vision. Special attention is paid to structure–function relationships arising from the hierarchical organization, which is a prominent feature of the primate visual system. Recent evidence supports the existence of a hierarchical organization in rodents that contains levels that are poorly resolved relative to those observed in primates. This shallowness of the hierarchy indicates that the mouse visual system incorporates abundant non-hierarchical processing. Thus, the mouse visual system provides a unique opportunity to study non-hierarchical processing and its relation to hierarchical processing.
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页码:1297 / 1315
页数:18
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共 556 条
[21]  
Fries P(2020)A large-scale standardized physiological survey reveals functional organization of the mouse visual cortex Nat Neurosci 23 138-110
[22]  
Friston KJ(2012)How does the brain solve visual object recognition? Neuron 73 415-197
[23]  
Bastos AM(2013)Comparative anatomy of the prosubiculum, subiculum, presubiculum, postsubiculum, and parasubiculum in human, monkey, and rodent J Comp Neurol 521 4145-69.e6
[24]  
Vezoli J(1975)Receptive fields of single cells and topography in mouse visual cortex J Comp Neurol 160 269-47
[25]  
Bosman CA(1998)Morphological variation of layer III pyramidal neurones in the occipitotemporal pathway of the macaque monkey visual cortex Cereb Cortex 8 278-414
[26]  
Schoffelen JM(2006)Specialization of pyramidal cell structure in the visual areas V1, V2 and V3 of the South American rodent, Dasyprocta primnolopha Brain Res 1106 99-1689
[27]  
Oostenveld R(2013)A predictive network model of cerebral cortical connectivity based on a distance rule Neuron 80 184-715.e10
[28]  
Beltramo R(2020)A differential circuit via Retino-Colliculo-Pulvinar pathway enhances feature selectivity in visual cortex through surround suppression Neuron 105 355-12600
[29]  
Scanziani M(2016)Population response propagation to extrastriate areas evoked by intracortical electrical stimulation in V1 Front Neural Circuits 10 6-226
[30]  
Bennett C(1991)Distributed hierarchical processing in the primate cerebral cortex Cereb Cortex 1 1-273