A whole-brain monosynaptic input connectome to neuron classes in mouse visual cortex

Identification of structural connections between neurons is a prerequisite to understanding brain function. Here we developed a pipeline to systematically map brain-wide monosynaptic input connections to genetically defined neuronal populations using an optimized rabies tracing system. We used mouse...

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Veröffentlicht in:Nature neuroscience 2023-02, Vol.26 (2), p.350-364
Hauptverfasser: Yao, Shenqin, Wang, Quanxin, Hirokawa, Karla E., Ouellette, Benjamin, Ahmed, Ruweida, Bomben, Jasmin, Brouner, Krissy, Casal, Linzy, Caldejon, Shiella, Cho, Andy, Dotson, Nadezhda I., Daigle, Tanya L., Egdorf, Tom, Enstrom, Rachel, Gary, Amanda, Gelfand, Emily, Gorham, Melissa, Griffin, Fiona, Gu, Hong, Hancock, Nicole, Howard, Robert, Kuan, Leonard, Lambert, Sophie, Lee, Eric Kenji, Luviano, Jennifer, Mace, Kyla, Maxwell, Michelle, Mortrud, Marty T., Naeemi, Maitham, Nayan, Chelsea, Ngo, Nhan-Kiet, Nguyen, Thuyanh, North, Kat, Ransford, Shea, Ruiz, Augustin, Seid, Sam, Swapp, Jackie, Taormina, Michael J., Wakeman, Wayne, Zhou, Thomas, Nicovich, Philip R., Williford, Ali, Potekhina, Lydia, McGraw, Medea, Ng, Lydia, Groblewski, Peter A., Tasic, Bosiljka, Mihalas, Stefan, Harris, Julie A., Cetin, Ali, Zeng, Hongkui
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Sprache:eng
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Zusammenfassung:Identification of structural connections between neurons is a prerequisite to understanding brain function. Here we developed a pipeline to systematically map brain-wide monosynaptic input connections to genetically defined neuronal populations using an optimized rabies tracing system. We used mouse visual cortex as the exemplar system and revealed quantitative target-specific, layer-specific and cell-class-specific differences in its presynaptic connectomes. The retrograde connectivity indicates the presence of ventral and dorsal visual streams and further reveals topographically organized and continuously varying subnetworks mediated by different higher visual areas. The visual cortex hierarchy can be derived from intracortical feedforward and feedback pathways mediated by upper-layer and lower-layer input neurons. We also identify a new role for layer 6 neurons in mediating reciprocal interhemispheric connections. This study expands our knowledge of the visual system connectomes and demonstrates that the pipeline can be scaled up to dissect connectivity of different cell populations across the mouse brain. The authors developed an optimized rabies tracing system for generating brain-wide monosynaptic input connectomes, and applied it in mouse visual cortex to reveal topographically organized subnetworks co-defined by visual areas, layers and cell classes.
ISSN:1097-6256
1546-1726
DOI:10.1038/s41593-022-01219-x