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Human neocortical expansion involves glutamatergic neuron diversification

The neocortex is disproportionately expanded in human compared with mouse(1,2), both in its total volume relative to subcortical structures and in the proportion occupied by supragranular layers composed of neurons that selectively make connections within the neocortex and with other telencephalic s...

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Autores principales: Berg, Jim, Sorensen, Staci A., Ting, Jonathan T., Miller, Jeremy A., Chartrand, Thomas, Buchin, Anatoly, Bakken, Trygve E., Budzillo, Agata, Dee, Nick, Ding, Song-Lin, Gouwens, Nathan W., Hodge, Rebecca D., Kalmbach, Brian, Lee, Changkyu, Lee, Brian R., Alfiler, Lauren, Baker, Katherine, Barkan, Eliza, Beller, Allison, Berry, Kyla, Bertagnolli, Darren, Bickley, Kris, Bomben, Jasmine, Braun, Thomas, Brouner, Krissy, Casper, Tamara, Chong, Peter, Crichton, Kirsten, Dalley, Rachel, de Frates, Rebecca, Desta, Tsega, Lee, Samuel Dingman, D’Orazi, Florence, Dotson, Nadezhda, Egdorf, Tom, Enstrom, Rachel, Farrell, Colin, Feng, David, Fong, Olivia, Furdan, Szabina, Galakhova, Anna A., Gamlin, Clare, Gary, Amanda, Glandon, Alexandra, Goldy, Jeff, Gorham, Melissa, Goriounova, Natalia A., Gratiy, Sergey, Graybuck, Lucas, Gu, Hong, Hadley, Kristen, Hansen, Nathan, Heistek, Tim S., Henry, Alex M., Heyer, Djai B., Hill, DiJon, Hill, Chris, Hupp, Madie, Jarsky, Tim, Kebede, Sara, Keene, Lisa, Kim, Lisa, Kim, Mean-Hwan, Kroll, Matthew, Latimer, Caitlin, Levi, Boaz P., Link, Katherine E., Mallory, Matthew, Mann, Rusty, Marshall, Desiree, Maxwell, Michelle, McGraw, Medea, McMillen, Delissa, Melief, Erica, Mertens, Eline J., Mezei, Leona, Mihut, Norbert, Mok, Stephanie, Molnar, Gabor, Mukora, Alice, Ng, Lindsay, Ngo, Kiet, Nicovich, Philip R., Nyhus, Julie, Olah, Gaspar, Oldre, Aaron, Omstead, Victoria, Ozsvar, Attila, Park, Daniel, Peng, Hanchuan, Pham, Trangthanh, Pom, Christina A., Potekhina, Lydia, Rajanbabu, Ramkumar, Ransford, Shea, Reid, David, Rimorin, Christine, Ruiz, Augustin, Sandman, David, Sulc, Josef, Sunkin, Susan M., Szafer, Aaron, Szemenyei, Viktor, Thomsen, Elliot R., Tieu, Michael, Torkelson, Amy, Trinh, Jessica, Tung, Herman, Wakeman, Wayne, Waleboer, Femke, Ward, Katelyn, Wilbers, René, Williams, Grace, Yao, Zizhen, Yoon, Jae-Geun, Anastassiou, Costas, Arkhipov, Anton, Barzo, Pal, Bernard, Amy, Cobbs, Charles, de Witt Hamer, Philip C., Ellenbogen, Richard G., Esposito, Luke, Ferreira, Manuel, Gwinn, Ryder P., Hawrylycz, Michael J., Hof, Patrick R., Idema, Sander, Jones, Allan R., Keene, C. Dirk, Ko, Andrew L., Murphy, Gabe J., Ng, Lydia, Ojemann, Jeffrey G., Patel, Anoop P., Phillips, John W., Silbergeld, Daniel L., Smith, Kimberly, Tasic, Bosiljka, Yuste, Rafael, Segev, Idan, de Kock, Christiaan P. J., Mansvelder, Huibert D., Tamas, Gabor, Zeng, Hongkui, Koch, Christof, Lein, Ed S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8494638/
https://www.ncbi.nlm.nih.gov/pubmed/34616067
http://dx.doi.org/10.1038/s41586-021-03813-8
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author Berg, Jim
Sorensen, Staci A.
Ting, Jonathan T.
Miller, Jeremy A.
Chartrand, Thomas
Buchin, Anatoly
Bakken, Trygve E.
Budzillo, Agata
Dee, Nick
Ding, Song-Lin
Gouwens, Nathan W.
Hodge, Rebecca D.
Kalmbach, Brian
Lee, Changkyu
Lee, Brian R.
Alfiler, Lauren
Baker, Katherine
Barkan, Eliza
Beller, Allison
Berry, Kyla
Bertagnolli, Darren
Bickley, Kris
Bomben, Jasmine
Braun, Thomas
Brouner, Krissy
Casper, Tamara
Chong, Peter
Crichton, Kirsten
Dalley, Rachel
de Frates, Rebecca
Desta, Tsega
Lee, Samuel Dingman
D’Orazi, Florence
Dotson, Nadezhda
Egdorf, Tom
Enstrom, Rachel
Farrell, Colin
Feng, David
Fong, Olivia
Furdan, Szabina
Galakhova, Anna A.
Gamlin, Clare
Gary, Amanda
Glandon, Alexandra
Goldy, Jeff
Gorham, Melissa
Goriounova, Natalia A.
Gratiy, Sergey
Graybuck, Lucas
Gu, Hong
Hadley, Kristen
Hansen, Nathan
Heistek, Tim S.
Henry, Alex M.
Heyer, Djai B.
Hill, DiJon
Hill, Chris
Hupp, Madie
Jarsky, Tim
Kebede, Sara
Keene, Lisa
Kim, Lisa
Kim, Mean-Hwan
Kroll, Matthew
Latimer, Caitlin
Levi, Boaz P.
Link, Katherine E.
Mallory, Matthew
Mann, Rusty
Marshall, Desiree
Maxwell, Michelle
McGraw, Medea
McMillen, Delissa
Melief, Erica
Mertens, Eline J.
Mezei, Leona
Mihut, Norbert
Mok, Stephanie
Molnar, Gabor
Mukora, Alice
Ng, Lindsay
Ngo, Kiet
Nicovich, Philip R.
Nyhus, Julie
Olah, Gaspar
Oldre, Aaron
Omstead, Victoria
Ozsvar, Attila
Park, Daniel
Peng, Hanchuan
Pham, Trangthanh
Pom, Christina A.
Potekhina, Lydia
Rajanbabu, Ramkumar
Ransford, Shea
Reid, David
Rimorin, Christine
Ruiz, Augustin
Sandman, David
Sulc, Josef
Sunkin, Susan M.
Szafer, Aaron
Szemenyei, Viktor
Thomsen, Elliot R.
Tieu, Michael
Torkelson, Amy
Trinh, Jessica
Tung, Herman
Wakeman, Wayne
Waleboer, Femke
Ward, Katelyn
Wilbers, René
Williams, Grace
Yao, Zizhen
Yoon, Jae-Geun
Anastassiou, Costas
Arkhipov, Anton
Barzo, Pal
Bernard, Amy
Cobbs, Charles
de Witt Hamer, Philip C.
Ellenbogen, Richard G.
Esposito, Luke
Ferreira, Manuel
Gwinn, Ryder P.
Hawrylycz, Michael J.
Hof, Patrick R.
Idema, Sander
Jones, Allan R.
Keene, C. Dirk
Ko, Andrew L.
Murphy, Gabe J.
Ng, Lydia
Ojemann, Jeffrey G.
Patel, Anoop P.
Phillips, John W.
Silbergeld, Daniel L.
Smith, Kimberly
Tasic, Bosiljka
Yuste, Rafael
Segev, Idan
de Kock, Christiaan P. J.
Mansvelder, Huibert D.
Tamas, Gabor
Zeng, Hongkui
Koch, Christof
Lein, Ed S.
author_facet Berg, Jim
Sorensen, Staci A.
Ting, Jonathan T.
Miller, Jeremy A.
Chartrand, Thomas
Buchin, Anatoly
Bakken, Trygve E.
Budzillo, Agata
Dee, Nick
Ding, Song-Lin
Gouwens, Nathan W.
Hodge, Rebecca D.
Kalmbach, Brian
Lee, Changkyu
Lee, Brian R.
Alfiler, Lauren
Baker, Katherine
Barkan, Eliza
Beller, Allison
Berry, Kyla
Bertagnolli, Darren
Bickley, Kris
Bomben, Jasmine
Braun, Thomas
Brouner, Krissy
Casper, Tamara
Chong, Peter
Crichton, Kirsten
Dalley, Rachel
de Frates, Rebecca
Desta, Tsega
Lee, Samuel Dingman
D’Orazi, Florence
Dotson, Nadezhda
Egdorf, Tom
Enstrom, Rachel
Farrell, Colin
Feng, David
Fong, Olivia
Furdan, Szabina
Galakhova, Anna A.
Gamlin, Clare
Gary, Amanda
Glandon, Alexandra
Goldy, Jeff
Gorham, Melissa
Goriounova, Natalia A.
Gratiy, Sergey
Graybuck, Lucas
Gu, Hong
Hadley, Kristen
Hansen, Nathan
Heistek, Tim S.
Henry, Alex M.
Heyer, Djai B.
Hill, DiJon
Hill, Chris
Hupp, Madie
Jarsky, Tim
Kebede, Sara
Keene, Lisa
Kim, Lisa
Kim, Mean-Hwan
Kroll, Matthew
Latimer, Caitlin
Levi, Boaz P.
Link, Katherine E.
Mallory, Matthew
Mann, Rusty
Marshall, Desiree
Maxwell, Michelle
McGraw, Medea
McMillen, Delissa
Melief, Erica
Mertens, Eline J.
Mezei, Leona
Mihut, Norbert
Mok, Stephanie
Molnar, Gabor
Mukora, Alice
Ng, Lindsay
Ngo, Kiet
Nicovich, Philip R.
Nyhus, Julie
Olah, Gaspar
Oldre, Aaron
Omstead, Victoria
Ozsvar, Attila
Park, Daniel
Peng, Hanchuan
Pham, Trangthanh
Pom, Christina A.
Potekhina, Lydia
Rajanbabu, Ramkumar
Ransford, Shea
Reid, David
Rimorin, Christine
Ruiz, Augustin
Sandman, David
Sulc, Josef
Sunkin, Susan M.
Szafer, Aaron
Szemenyei, Viktor
Thomsen, Elliot R.
Tieu, Michael
Torkelson, Amy
Trinh, Jessica
Tung, Herman
Wakeman, Wayne
Waleboer, Femke
Ward, Katelyn
Wilbers, René
Williams, Grace
Yao, Zizhen
Yoon, Jae-Geun
Anastassiou, Costas
Arkhipov, Anton
Barzo, Pal
Bernard, Amy
Cobbs, Charles
de Witt Hamer, Philip C.
Ellenbogen, Richard G.
Esposito, Luke
Ferreira, Manuel
Gwinn, Ryder P.
Hawrylycz, Michael J.
Hof, Patrick R.
Idema, Sander
Jones, Allan R.
Keene, C. Dirk
Ko, Andrew L.
Murphy, Gabe J.
Ng, Lydia
Ojemann, Jeffrey G.
Patel, Anoop P.
Phillips, John W.
Silbergeld, Daniel L.
Smith, Kimberly
Tasic, Bosiljka
Yuste, Rafael
Segev, Idan
de Kock, Christiaan P. J.
Mansvelder, Huibert D.
Tamas, Gabor
Zeng, Hongkui
Koch, Christof
Lein, Ed S.
author_sort Berg, Jim
collection PubMed
description The neocortex is disproportionately expanded in human compared with mouse(1,2), both in its total volume relative to subcortical structures and in the proportion occupied by supragranular layers composed of neurons that selectively make connections within the neocortex and with other telencephalic structures. Single-cell transcriptomic analyses of human and mouse neocortex show an increased diversity of glutamatergic neuron types in supragranular layers in human neocortex and pronounced gradients as a function of cortical depth(3). Here, to probe the functional and anatomical correlates of this transcriptomic diversity, we developed a robust platform combining patch clamp recording, biocytin staining and single-cell RNA-sequencing (Patch-seq) to examine neurosurgically resected human tissues. We demonstrate a strong correspondence between morphological, physiological and transcriptomic phenotypes of five human glutamatergic supragranular neuron types. These were enriched in but not restricted to layers, with one type varying continuously in all phenotypes across layers 2 and 3. The deep portion of layer 3 contained highly distinctive cell types, two of which express a neurofilament protein that labels long-range projection neurons in primates that are selectively depleted in Alzheimer’s disease(4,5). Together, these results demonstrate the explanatory power of transcriptomic cell-type classification, provide a structural underpinning for increased complexity of cortical function in humans, and implicate discrete transcriptomic neuron types as selectively vulnerable in disease.
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spelling pubmed-84946382021-10-19 Human neocortical expansion involves glutamatergic neuron diversification Berg, Jim Sorensen, Staci A. Ting, Jonathan T. Miller, Jeremy A. Chartrand, Thomas Buchin, Anatoly Bakken, Trygve E. Budzillo, Agata Dee, Nick Ding, Song-Lin Gouwens, Nathan W. Hodge, Rebecca D. Kalmbach, Brian Lee, Changkyu Lee, Brian R. Alfiler, Lauren Baker, Katherine Barkan, Eliza Beller, Allison Berry, Kyla Bertagnolli, Darren Bickley, Kris Bomben, Jasmine Braun, Thomas Brouner, Krissy Casper, Tamara Chong, Peter Crichton, Kirsten Dalley, Rachel de Frates, Rebecca Desta, Tsega Lee, Samuel Dingman D’Orazi, Florence Dotson, Nadezhda Egdorf, Tom Enstrom, Rachel Farrell, Colin Feng, David Fong, Olivia Furdan, Szabina Galakhova, Anna A. Gamlin, Clare Gary, Amanda Glandon, Alexandra Goldy, Jeff Gorham, Melissa Goriounova, Natalia A. Gratiy, Sergey Graybuck, Lucas Gu, Hong Hadley, Kristen Hansen, Nathan Heistek, Tim S. Henry, Alex M. Heyer, Djai B. Hill, DiJon Hill, Chris Hupp, Madie Jarsky, Tim Kebede, Sara Keene, Lisa Kim, Lisa Kim, Mean-Hwan Kroll, Matthew Latimer, Caitlin Levi, Boaz P. Link, Katherine E. Mallory, Matthew Mann, Rusty Marshall, Desiree Maxwell, Michelle McGraw, Medea McMillen, Delissa Melief, Erica Mertens, Eline J. Mezei, Leona Mihut, Norbert Mok, Stephanie Molnar, Gabor Mukora, Alice Ng, Lindsay Ngo, Kiet Nicovich, Philip R. Nyhus, Julie Olah, Gaspar Oldre, Aaron Omstead, Victoria Ozsvar, Attila Park, Daniel Peng, Hanchuan Pham, Trangthanh Pom, Christina A. Potekhina, Lydia Rajanbabu, Ramkumar Ransford, Shea Reid, David Rimorin, Christine Ruiz, Augustin Sandman, David Sulc, Josef Sunkin, Susan M. Szafer, Aaron Szemenyei, Viktor Thomsen, Elliot R. Tieu, Michael Torkelson, Amy Trinh, Jessica Tung, Herman Wakeman, Wayne Waleboer, Femke Ward, Katelyn Wilbers, René Williams, Grace Yao, Zizhen Yoon, Jae-Geun Anastassiou, Costas Arkhipov, Anton Barzo, Pal Bernard, Amy Cobbs, Charles de Witt Hamer, Philip C. Ellenbogen, Richard G. Esposito, Luke Ferreira, Manuel Gwinn, Ryder P. Hawrylycz, Michael J. Hof, Patrick R. Idema, Sander Jones, Allan R. Keene, C. Dirk Ko, Andrew L. Murphy, Gabe J. Ng, Lydia Ojemann, Jeffrey G. Patel, Anoop P. Phillips, John W. Silbergeld, Daniel L. Smith, Kimberly Tasic, Bosiljka Yuste, Rafael Segev, Idan de Kock, Christiaan P. J. Mansvelder, Huibert D. Tamas, Gabor Zeng, Hongkui Koch, Christof Lein, Ed S. Nature Article The neocortex is disproportionately expanded in human compared with mouse(1,2), both in its total volume relative to subcortical structures and in the proportion occupied by supragranular layers composed of neurons that selectively make connections within the neocortex and with other telencephalic structures. Single-cell transcriptomic analyses of human and mouse neocortex show an increased diversity of glutamatergic neuron types in supragranular layers in human neocortex and pronounced gradients as a function of cortical depth(3). Here, to probe the functional and anatomical correlates of this transcriptomic diversity, we developed a robust platform combining patch clamp recording, biocytin staining and single-cell RNA-sequencing (Patch-seq) to examine neurosurgically resected human tissues. We demonstrate a strong correspondence between morphological, physiological and transcriptomic phenotypes of five human glutamatergic supragranular neuron types. These were enriched in but not restricted to layers, with one type varying continuously in all phenotypes across layers 2 and 3. The deep portion of layer 3 contained highly distinctive cell types, two of which express a neurofilament protein that labels long-range projection neurons in primates that are selectively depleted in Alzheimer’s disease(4,5). Together, these results demonstrate the explanatory power of transcriptomic cell-type classification, provide a structural underpinning for increased complexity of cortical function in humans, and implicate discrete transcriptomic neuron types as selectively vulnerable in disease. Nature Publishing Group UK 2021-10-06 2021 /pmc/articles/PMC8494638/ /pubmed/34616067 http://dx.doi.org/10.1038/s41586-021-03813-8 Text en © The Author(s) 2021, corrected publication 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Berg, Jim
Sorensen, Staci A.
Ting, Jonathan T.
Miller, Jeremy A.
Chartrand, Thomas
Buchin, Anatoly
Bakken, Trygve E.
Budzillo, Agata
Dee, Nick
Ding, Song-Lin
Gouwens, Nathan W.
Hodge, Rebecca D.
Kalmbach, Brian
Lee, Changkyu
Lee, Brian R.
Alfiler, Lauren
Baker, Katherine
Barkan, Eliza
Beller, Allison
Berry, Kyla
Bertagnolli, Darren
Bickley, Kris
Bomben, Jasmine
Braun, Thomas
Brouner, Krissy
Casper, Tamara
Chong, Peter
Crichton, Kirsten
Dalley, Rachel
de Frates, Rebecca
Desta, Tsega
Lee, Samuel Dingman
D’Orazi, Florence
Dotson, Nadezhda
Egdorf, Tom
Enstrom, Rachel
Farrell, Colin
Feng, David
Fong, Olivia
Furdan, Szabina
Galakhova, Anna A.
Gamlin, Clare
Gary, Amanda
Glandon, Alexandra
Goldy, Jeff
Gorham, Melissa
Goriounova, Natalia A.
Gratiy, Sergey
Graybuck, Lucas
Gu, Hong
Hadley, Kristen
Hansen, Nathan
Heistek, Tim S.
Henry, Alex M.
Heyer, Djai B.
Hill, DiJon
Hill, Chris
Hupp, Madie
Jarsky, Tim
Kebede, Sara
Keene, Lisa
Kim, Lisa
Kim, Mean-Hwan
Kroll, Matthew
Latimer, Caitlin
Levi, Boaz P.
Link, Katherine E.
Mallory, Matthew
Mann, Rusty
Marshall, Desiree
Maxwell, Michelle
McGraw, Medea
McMillen, Delissa
Melief, Erica
Mertens, Eline J.
Mezei, Leona
Mihut, Norbert
Mok, Stephanie
Molnar, Gabor
Mukora, Alice
Ng, Lindsay
Ngo, Kiet
Nicovich, Philip R.
Nyhus, Julie
Olah, Gaspar
Oldre, Aaron
Omstead, Victoria
Ozsvar, Attila
Park, Daniel
Peng, Hanchuan
Pham, Trangthanh
Pom, Christina A.
Potekhina, Lydia
Rajanbabu, Ramkumar
Ransford, Shea
Reid, David
Rimorin, Christine
Ruiz, Augustin
Sandman, David
Sulc, Josef
Sunkin, Susan M.
Szafer, Aaron
Szemenyei, Viktor
Thomsen, Elliot R.
Tieu, Michael
Torkelson, Amy
Trinh, Jessica
Tung, Herman
Wakeman, Wayne
Waleboer, Femke
Ward, Katelyn
Wilbers, René
Williams, Grace
Yao, Zizhen
Yoon, Jae-Geun
Anastassiou, Costas
Arkhipov, Anton
Barzo, Pal
Bernard, Amy
Cobbs, Charles
de Witt Hamer, Philip C.
Ellenbogen, Richard G.
Esposito, Luke
Ferreira, Manuel
Gwinn, Ryder P.
Hawrylycz, Michael J.
Hof, Patrick R.
Idema, Sander
Jones, Allan R.
Keene, C. Dirk
Ko, Andrew L.
Murphy, Gabe J.
Ng, Lydia
Ojemann, Jeffrey G.
Patel, Anoop P.
Phillips, John W.
Silbergeld, Daniel L.
Smith, Kimberly
Tasic, Bosiljka
Yuste, Rafael
Segev, Idan
de Kock, Christiaan P. J.
Mansvelder, Huibert D.
Tamas, Gabor
Zeng, Hongkui
Koch, Christof
Lein, Ed S.
Human neocortical expansion involves glutamatergic neuron diversification
title Human neocortical expansion involves glutamatergic neuron diversification
title_full Human neocortical expansion involves glutamatergic neuron diversification
title_fullStr Human neocortical expansion involves glutamatergic neuron diversification
title_full_unstemmed Human neocortical expansion involves glutamatergic neuron diversification
title_short Human neocortical expansion involves glutamatergic neuron diversification
title_sort human neocortical expansion involves glutamatergic neuron diversification
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8494638/
https://www.ncbi.nlm.nih.gov/pubmed/34616067
http://dx.doi.org/10.1038/s41586-021-03813-8
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AT marshalldesiree humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT maxwellmichelle humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mcgrawmedea humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mcmillendelissa humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT melieferica humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mertenselinej humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mezeileona humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mihutnorbert humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mokstephanie humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT molnargabor humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mukoraalice humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT nglindsay humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ngokiet humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT nicovichphilipr humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT nyhusjulie humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT olahgaspar humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT oldreaaron humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT omsteadvictoria humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ozsvarattila humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT parkdaniel humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT penghanchuan humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT phamtrangthanh humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT pomchristinaa humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT potekhinalydia humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT rajanbaburamkumar humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ransfordshea humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT reiddavid humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT rimorinchristine humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ruizaugustin humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT sandmandavid humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT sulcjosef humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT sunkinsusanm humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT szaferaaron humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT szemenyeiviktor humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT thomsenelliotr humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT tieumichael humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT torkelsonamy humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT trinhjessica humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT tungherman humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT wakemanwayne humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT waleboerfemke humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT wardkatelyn humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT wilbersrene humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT williamsgrace humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT yaozizhen humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT yoonjaegeun humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT anastassioucostas humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT arkhipovanton humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT barzopal humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT bernardamy humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT cobbscharles humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT dewitthamerphilipc humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ellenbogenrichardg humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT espositoluke humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ferreiramanuel humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT gwinnryderp humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT hawrylyczmichaelj humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT hofpatrickr humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT idemasander humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT jonesallanr humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT keenecdirk humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT koandrewl humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT murphygabej humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT nglydia humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT ojemannjeffreyg humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT patelanoopp humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT phillipsjohnw humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT silbergelddaniell humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT smithkimberly humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT tasicbosiljka humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT yusterafael humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT segevidan humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT dekockchristiaanpj humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT mansvelderhuibertd humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT tamasgabor humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT zenghongkui humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT kochchristof humanneocorticalexpansioninvolvesglutamatergicneurondiversification
AT leineds humanneocorticalexpansioninvolvesglutamatergicneurondiversification