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Journal of Theoretical Biology
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April 16, 2021
Modelling uniaxial non-uniform yeast colony growth: Comparing an agent-based model and continuum approximations
Anthony J Gallo, Hayden Tronnolone, J Edward F Green, et al.
Nature Computational Science
|
January 18, 2024
Publisher Correction: A rigid body framework for multicellular modeling
Phillip J Brown, J Edward F Green, Benjamin J Binder, et al.
Nature Computational Science
|
January 13, 2024
A rigid body framework for multicellular modeling
Phillip J Brown, J Edward F Green, Benjamin J Binder, et al.
Mathematical Biosciences
|
December 28, 2024
Competing mechanisms for the buckling of an epithelial monolayer identified using multicellular simulation
Phillip J Brown, J Edward F Green, Benjamin J Binder, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
July 15, 2009
Modeling oxygen transport in surgical tissue transfer
Anastasios Matzavinos, Chiu-Yen Kao, J Edward F Green, et al.
Physical Review. E
|
February 23, 2022
Thin-film lubrication model for biofilm expansion under strong adhesion
Alexander K Y Tam, Brendan Harding, J Edward F Green, et al.
Proceedings. Mathematical, Physical, and Engineering Sciences
|
October 16, 2019
A thin-film extensional flow model for biofilm expansion by sliding motility
Alexander Tam, J Edward F Green, Sanjeeva Balasuriya, et al.
Journal of Theoretical Biology
|
April 10, 2018
Nutrient-limited growth with non-linear cell diffusion as a mechanism for floral pattern formation in yeast biofilms
Alexander Tam, J Edward F Green, Sanjeeva Balasuriya, et al.
Bulletin of Mathematical Biology
|
July 17, 2025
Accidental and Regulated Cell Death in Yeast Colony Biofilms
Daniel J Netherwood, Alexander K Y Tam, Campbell W Gourlay, et al.
Soft Matter
|
March 10, 2026
Quantifying the effects of cell death and agar density on yeast colony biofilms using an extensional-flow mathematical model
Alexander K Y Tam, Daniel J Netherwood, Jennifer M Gardner, et al.
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of 2
Search research articles
Search
Showing results (1-10 of 12) with videos related to
Sort By:
Page
of 2
Journal of Theoretical Biology
|
April 16, 2021
Modelling uniaxial non-uniform yeast colony growth: Comparing an agent-based model and continuum approximations
Anthony J Gallo, Hayden Tronnolone, J Edward F Green, et al.
Nature Computational Science
|
January 18, 2024
Publisher Correction: A rigid body framework for multicellular modeling
Phillip J Brown, J Edward F Green, Benjamin J Binder, et al.
Nature Computational Science
|
January 13, 2024
A rigid body framework for multicellular modeling
Phillip J Brown, J Edward F Green, Benjamin J Binder, et al.
Mathematical Biosciences
|
December 28, 2024
Competing mechanisms for the buckling of an epithelial monolayer identified using multicellular simulation
Phillip J Brown, J Edward F Green, Benjamin J Binder, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
July 15, 2009
Modeling oxygen transport in surgical tissue transfer
Anastasios Matzavinos, Chiu-Yen Kao, J Edward F Green, et al.
Physical Review. E
|
February 23, 2022
Thin-film lubrication model for biofilm expansion under strong adhesion
Alexander K Y Tam, Brendan Harding, J Edward F Green, et al.
Proceedings. Mathematical, Physical, and Engineering Sciences
|
October 16, 2019
A thin-film extensional flow model for biofilm expansion by sliding motility
Alexander Tam, J Edward F Green, Sanjeeva Balasuriya, et al.
Journal of Theoretical Biology
|
April 10, 2018
Nutrient-limited growth with non-linear cell diffusion as a mechanism for floral pattern formation in yeast biofilms
Alexander Tam, J Edward F Green, Sanjeeva Balasuriya, et al.
Bulletin of Mathematical Biology
|
July 17, 2025
Accidental and Regulated Cell Death in Yeast Colony Biofilms
Daniel J Netherwood, Alexander K Y Tam, Campbell W Gourlay, et al.
Soft Matter
|
March 10, 2026
Quantifying the effects of cell death and agar density on yeast colony biofilms using an extensional-flow mathematical model
Alexander K Y Tam, Daniel J Netherwood, Jennifer M Gardner, et al.
Page
of 2