The oxDNA coarse-grained model as a tool to simulate DNA origami

Fuente: arXiv
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Autores principales: Doye, Jonathan P. K., Fowler, Hannah, Prešern, Domen, Bohlin, Joakim, Rovigatti, Lorenzo, Romano, Flavio, Šulc, Petr, Wong, Chak Kui, Louis, Ard A., Schreck, John S., Engel, Megan C., Matthies, Michael, Benson, Erik, Poppleton, Erik, Snodin, Benedict E. K.
Formato: Preprint
Publicado: 2020
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author Doye, Jonathan P. K.
Fowler, Hannah
Prešern, Domen
Bohlin, Joakim
Rovigatti, Lorenzo
Romano, Flavio
Šulc, Petr
Wong, Chak Kui
Louis, Ard A.
Schreck, John S.
Engel, Megan C.
Matthies, Michael
Benson, Erik
Poppleton, Erik
Snodin, Benedict E. K.
author_facet Doye, Jonathan P. K.
Fowler, Hannah
Prešern, Domen
Bohlin, Joakim
Rovigatti, Lorenzo
Romano, Flavio
Šulc, Petr
Wong, Chak Kui
Louis, Ard A.
Schreck, John S.
Engel, Megan C.
Matthies, Michael
Benson, Erik
Poppleton, Erik
Snodin, Benedict E. K.
contents This chapter introduces how to run molecular dynamics simulations for DNA origami using the oxDNA coarse-grained model.
format Preprint
id arxiv_https___arxiv_org_abs_2004_05052
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle The oxDNA coarse-grained model as a tool to simulate DNA origami
Doye, Jonathan P. K.
Fowler, Hannah
Prešern, Domen
Bohlin, Joakim
Rovigatti, Lorenzo
Romano, Flavio
Šulc, Petr
Wong, Chak Kui
Louis, Ard A.
Schreck, John S.
Engel, Megan C.
Matthies, Michael
Benson, Erik
Poppleton, Erik
Snodin, Benedict E. K.
Soft Condensed Matter
Mesoscale and Nanoscale Physics
This chapter introduces how to run molecular dynamics simulations for DNA origami using the oxDNA coarse-grained model.
title The oxDNA coarse-grained model as a tool to simulate DNA origami
topic Soft Condensed Matter
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2004.05052