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Updated: Jan 7, 2026

Long-range Channelrhodopsin-assisted Circuit Mapping of Inferior Colliculus Neurons with Blue and Red-shifted Channelrhodopsins
Published on: February 7, 2020
Evolution of collicular cell types, circuits, and modulatory pathways
Gioia De Franceschi1, Karl Farrow2
1VIB-KU Leuven Center for Neuroscience, Leuven, Belgium; Epigenetics and Neurobiology Unit, EMBL Rome, European Molecular Biology Laboratory, Monterotondo, 00015, Italy.
Abstract:
A recent comparative transcriptomics study by Liu et al. highlights that conserved neuronal identity and synaptic gene expression in the superior colliculus of mice, tree shrews, and humans coexist with species-specific differences in primary cilia. These findings indicate that conserved circuit architecture is accompanied with specializations in signaling compartments that modulate circuit function.
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