The Mind of a Mouse

Large scientific projects in genomics and astronomy are influential not because they answer any single question but because they enable investigation of continuously arising new questions from the same data-rich sources. Advances in automated mapping of the brain’s synaptic connections (connectomics...

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Veröffentlicht in:Cell 2020-09, Vol.182 (6), p.1372-1376
Hauptverfasser: Abbott, Larry F., Bock, Davi D., Callaway, Edward M., Denk, Winfried, Dulac, Catherine, Fairhall, Adrienne L., Fiete, Ila, Harris, Kristen M., Helmstaedter, Moritz, Jain, Viren, Kasthuri, Narayanan, LeCun, Yann, Lichtman, Jeff W., Littlewood, Peter B., Luo, Liqun, Maunsell, John H.R., Reid, R. Clay, Rosen, Bruce R., Rubin, Gerald M., Sejnowski, Terrence J., Seung, H. Sebastian, Svoboda, Karel, Tank, David W., Tsao, Doris, Van Essen, David C.
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Sprache:eng
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Zusammenfassung:Large scientific projects in genomics and astronomy are influential not because they answer any single question but because they enable investigation of continuously arising new questions from the same data-rich sources. Advances in automated mapping of the brain’s synaptic connections (connectomics) suggest that the complicated circuits underlying brain function are ripe for analysis. We discuss benefits of mapping a mouse brain at the level of synapses. Large scientific projects in genomics and astronomy are influential not because they answer any single question but because they enable investigation of continuously arising new questions from the same data-rich sources. Advances in automated mapping of the brain’s synaptic connections (connectomics) suggest that the complicated circuits underlying brain function are ripe for analysis. We discuss benefits of mapping a mouse brain at the level of synapses.
ISSN:0092-8674
1097-4172
DOI:10.1016/j.cell.2020.08.010