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The mouse cortico-tectal projectome

Benavidez, N. L.; Bienkowski, M. S.; Khanjani, N.; Bowman, I.; Fayzullina, M.; Garcia, L.; Gao, L.; Korobkova, L.; Gou, L.; Cotter, K.; Becerra, M.; Aquino, S.; Cao, C.; Foster, N. N.; Song, M. Y.; Zhang, B.; Yamashita, S.; Zhu, M.; Lo, D.; Boesen, T.; Zingg, B.; Santarelli, A.; Wickersham, I. R.; Ascoli, G. A.; Hintiryan, H.; Dong, H.-W.

2020-03-25 neuroscience
10.1101/2020.03.24.006775 bioRxiv
Show abstract

The superior colliculus (SC) is a midbrain structure that receives diverse and robust cortical inputs to drive a range of cognitive and sensorimotor behaviors. However, it remains unclear how descending cortical inputs arising from higher-order associative areas coordinate with SC sensorimotor networks to influence its outputs. In this study, we constructed a comprehensive map of all cortico-tectal projections and identified four collicular zones with differential cortical inputs: medial (SC.m), centromedial (SC.cm), centrolateral (SC.cl) and lateral (SC.l). Computational analyses revealed that cortico-tectal projections are organized as multiple subnetworks that are consistent with previously identified cortico-cortical and cortico-striatal subnetworks. Furthermore, we delineated the brain-wide input/output organization of each collicular zone and described a subset of their constituent neuronal cell types based on distinct connectional and morphological features. Altogether, this work provides a novel structural foundation for the integrative role of the SC in controlling cognition, orientation, and other sensorimotor behaviors.

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