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#COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol

We seek to completely revise current models of airborne transmission of respiratory viruses by providing never-before-seen atomic-level views of the SARS-CoV-2 virus within a respiratory aerosol. Our work dramatically extends the capabilities of multiscale computational microscopy to address the sig...

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Autores principales: Dommer, Abigail, Casalino, Lorenzo, Kearns, Fiona, Rosenfeld, Mia, Wauer, Nicholas, Ahn, Surl-Hee, Russo, John, Oliveira, Sofia, Morris, Clare, Bogetti, Anthony, Trifan, Anda, Brace, Alexander, Sztain, Terra, Clyde, Austin, Ma, Heng, Chennubhotla, Chakra, Lee, Hyungro, Turilli, Matteo, Khalid, Syma, Tamayo-Mendoza, Teresa, Welborn, Matthew, Christensen, Anders, Smith, Daniel G. A., Qiao, Zhuoran, Sirumalla, Sai Krishna, O’Connor, Michael, Manby, Frederick, Anandkumar, Anima, Hardy, David, Phillips, James, Stern, Abraham, Romero, Josh, Clark, David, Dorrell, Mitchell, Maiden, Tom, Huang, Lei, McCalpin, John, Woods, Christopher, Gray, Alan, Williams, Matt, Barker, Bryan, Rajapaksha, Harinda, Pitts, Richard, Gibbs, Tom, Stone, John, Zuckerman, Daniel, Mulholland, Adrian, Miller, Thomas, Jha, Shantenu, Ramanathan, Arvind, Chong, Lillian, Amaro, Rommie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8609898/
https://www.ncbi.nlm.nih.gov/pubmed/34816263
http://dx.doi.org/10.1101/2021.11.12.468428
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author Dommer, Abigail
Casalino, Lorenzo
Kearns, Fiona
Rosenfeld, Mia
Wauer, Nicholas
Ahn, Surl-Hee
Russo, John
Oliveira, Sofia
Morris, Clare
Bogetti, Anthony
Trifan, Anda
Brace, Alexander
Sztain, Terra
Clyde, Austin
Ma, Heng
Chennubhotla, Chakra
Lee, Hyungro
Turilli, Matteo
Khalid, Syma
Tamayo-Mendoza, Teresa
Welborn, Matthew
Christensen, Anders
Smith, Daniel G. A.
Qiao, Zhuoran
Sirumalla, Sai Krishna
O’Connor, Michael
Manby, Frederick
Anandkumar, Anima
Hardy, David
Phillips, James
Stern, Abraham
Romero, Josh
Clark, David
Dorrell, Mitchell
Maiden, Tom
Huang, Lei
McCalpin, John
Woods, Christopher
Gray, Alan
Williams, Matt
Barker, Bryan
Rajapaksha, Harinda
Pitts, Richard
Gibbs, Tom
Stone, John
Zuckerman, Daniel
Mulholland, Adrian
Miller, Thomas
Jha, Shantenu
Ramanathan, Arvind
Chong, Lillian
Amaro, Rommie
author_facet Dommer, Abigail
Casalino, Lorenzo
Kearns, Fiona
Rosenfeld, Mia
Wauer, Nicholas
Ahn, Surl-Hee
Russo, John
Oliveira, Sofia
Morris, Clare
Bogetti, Anthony
Trifan, Anda
Brace, Alexander
Sztain, Terra
Clyde, Austin
Ma, Heng
Chennubhotla, Chakra
Lee, Hyungro
Turilli, Matteo
Khalid, Syma
Tamayo-Mendoza, Teresa
Welborn, Matthew
Christensen, Anders
Smith, Daniel G. A.
Qiao, Zhuoran
Sirumalla, Sai Krishna
O’Connor, Michael
Manby, Frederick
Anandkumar, Anima
Hardy, David
Phillips, James
Stern, Abraham
Romero, Josh
Clark, David
Dorrell, Mitchell
Maiden, Tom
Huang, Lei
McCalpin, John
Woods, Christopher
Gray, Alan
Williams, Matt
Barker, Bryan
Rajapaksha, Harinda
Pitts, Richard
Gibbs, Tom
Stone, John
Zuckerman, Daniel
Mulholland, Adrian
Miller, Thomas
Jha, Shantenu
Ramanathan, Arvind
Chong, Lillian
Amaro, Rommie
author_sort Dommer, Abigail
collection PubMed
description We seek to completely revise current models of airborne transmission of respiratory viruses by providing never-before-seen atomic-level views of the SARS-CoV-2 virus within a respiratory aerosol. Our work dramatically extends the capabilities of multiscale computational microscopy to address the significant gaps that exist in current experimental methods, which are limited in their ability to interrogate aerosols at the atomic/molecular level and thus obscure our understanding of airborne transmission. We demonstrate how our integrated data-driven platform provides a new way of exploring the composition, structure, and dynamics of aerosols and aerosolized viruses, while driving simulation method development along several important axes. We present a series of initial scientific discoveries for the SARS-CoV-2 Delta variant, noting that the full scientific impact of this work has yet to be realized.
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spelling pubmed-86098982021-11-24 #COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol Dommer, Abigail Casalino, Lorenzo Kearns, Fiona Rosenfeld, Mia Wauer, Nicholas Ahn, Surl-Hee Russo, John Oliveira, Sofia Morris, Clare Bogetti, Anthony Trifan, Anda Brace, Alexander Sztain, Terra Clyde, Austin Ma, Heng Chennubhotla, Chakra Lee, Hyungro Turilli, Matteo Khalid, Syma Tamayo-Mendoza, Teresa Welborn, Matthew Christensen, Anders Smith, Daniel G. A. Qiao, Zhuoran Sirumalla, Sai Krishna O’Connor, Michael Manby, Frederick Anandkumar, Anima Hardy, David Phillips, James Stern, Abraham Romero, Josh Clark, David Dorrell, Mitchell Maiden, Tom Huang, Lei McCalpin, John Woods, Christopher Gray, Alan Williams, Matt Barker, Bryan Rajapaksha, Harinda Pitts, Richard Gibbs, Tom Stone, John Zuckerman, Daniel Mulholland, Adrian Miller, Thomas Jha, Shantenu Ramanathan, Arvind Chong, Lillian Amaro, Rommie bioRxiv Article We seek to completely revise current models of airborne transmission of respiratory viruses by providing never-before-seen atomic-level views of the SARS-CoV-2 virus within a respiratory aerosol. Our work dramatically extends the capabilities of multiscale computational microscopy to address the significant gaps that exist in current experimental methods, which are limited in their ability to interrogate aerosols at the atomic/molecular level and thus obscure our understanding of airborne transmission. We demonstrate how our integrated data-driven platform provides a new way of exploring the composition, structure, and dynamics of aerosols and aerosolized viruses, while driving simulation method development along several important axes. We present a series of initial scientific discoveries for the SARS-CoV-2 Delta variant, noting that the full scientific impact of this work has yet to be realized. Cold Spring Harbor Laboratory 2021-11-15 /pmc/articles/PMC8609898/ /pubmed/34816263 http://dx.doi.org/10.1101/2021.11.12.468428 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Dommer, Abigail
Casalino, Lorenzo
Kearns, Fiona
Rosenfeld, Mia
Wauer, Nicholas
Ahn, Surl-Hee
Russo, John
Oliveira, Sofia
Morris, Clare
Bogetti, Anthony
Trifan, Anda
Brace, Alexander
Sztain, Terra
Clyde, Austin
Ma, Heng
Chennubhotla, Chakra
Lee, Hyungro
Turilli, Matteo
Khalid, Syma
Tamayo-Mendoza, Teresa
Welborn, Matthew
Christensen, Anders
Smith, Daniel G. A.
Qiao, Zhuoran
Sirumalla, Sai Krishna
O’Connor, Michael
Manby, Frederick
Anandkumar, Anima
Hardy, David
Phillips, James
Stern, Abraham
Romero, Josh
Clark, David
Dorrell, Mitchell
Maiden, Tom
Huang, Lei
McCalpin, John
Woods, Christopher
Gray, Alan
Williams, Matt
Barker, Bryan
Rajapaksha, Harinda
Pitts, Richard
Gibbs, Tom
Stone, John
Zuckerman, Daniel
Mulholland, Adrian
Miller, Thomas
Jha, Shantenu
Ramanathan, Arvind
Chong, Lillian
Amaro, Rommie
#COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol
title #COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol
title_full #COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol
title_fullStr #COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol
title_full_unstemmed #COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol
title_short #COVIDisAirborne: AI-Enabled Multiscale Computational Microscopy of Delta SARS-CoV-2 in a Respiratory Aerosol
title_sort #covidisairborne: ai-enabled multiscale computational microscopy of delta sars-cov-2 in a respiratory aerosol
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8609898/
https://www.ncbi.nlm.nih.gov/pubmed/34816263
http://dx.doi.org/10.1101/2021.11.12.468428
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