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T J Sego

Showing results (21-30 of 27) with videos related to

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Biology Open|August 20, 2024
Modeling the roles of cohesotaxis, cell-intercalation, and tissue geometry in collective cell migration of Xenopus mesendodermTien Comlekoglu, Bette J Dzamba, Gustavo G Pacheco, et al.
NPJ Digital Medicine|May 20, 2022
Building digital twins of the human immune system: toward a roadmapR Laubenbacher, A Niarakis, T Helikar, et al.
Plos Computational Biology|December 21, 2020
A modular framework for multiscale, multicellular, spatiotemporal modeling of acute primary viral infection and immune response in epithelial tissues and its application to drug therapy timing and effectivenessT J Sego, Josua O Aponte-Serrano, Juliano Ferrari Gianlupi, et al.
Biorxiv : the Preprint Server for Biology|June 9, 2020
A modular framework for multiscale, multicellular, spatiotemporal modeling of acute primary viral infection and immune response in epithelial tissues and its application to drug therapy timing and effectiveness: A multiscale model of viral infection in epithelial tissuesT J Sego, Josua O Aponte-Serrano, Juliano Ferrari Gianlupi, et al.
NPJ Systems Biology and Applications|November 30, 2024
Immune digital twins for complex human pathologies: applications, limitations, and challengesAnna Niarakis, Reinhard Laubenbacher, Gary An, et al.
Arxiv|March 4, 2025
From FAIR to CURE: Guidelines for Computational Models of Biological SystemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
NPJ Systems Biology and Applications|March 27, 2026
From FAIR to CURE: guidelines for computational models of biological systemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
Pageof 3

Showing results (21-30 of 27) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 27 results.
Biology Open|August 20, 2024
Modeling the roles of cohesotaxis, cell-intercalation, and tissue geometry in collective cell migration of Xenopus mesendodermTien Comlekoglu, Bette J Dzamba, Gustavo G Pacheco, et al.
NPJ Digital Medicine|May 20, 2022
Building digital twins of the human immune system: toward a roadmapR Laubenbacher, A Niarakis, T Helikar, et al.
Plos Computational Biology|December 21, 2020
A modular framework for multiscale, multicellular, spatiotemporal modeling of acute primary viral infection and immune response in epithelial tissues and its application to drug therapy timing and effectivenessT J Sego, Josua O Aponte-Serrano, Juliano Ferrari Gianlupi, et al.
Biorxiv : the Preprint Server for Biology|June 9, 2020
A modular framework for multiscale, multicellular, spatiotemporal modeling of acute primary viral infection and immune response in epithelial tissues and its application to drug therapy timing and effectiveness: A multiscale model of viral infection in epithelial tissuesT J Sego, Josua O Aponte-Serrano, Juliano Ferrari Gianlupi, et al.
NPJ Systems Biology and Applications|November 30, 2024
Immune digital twins for complex human pathologies: applications, limitations, and challengesAnna Niarakis, Reinhard Laubenbacher, Gary An, et al.
Arxiv|March 4, 2025
From FAIR to CURE: Guidelines for Computational Models of Biological SystemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
NPJ Systems Biology and Applications|March 27, 2026
From FAIR to CURE: guidelines for computational models of biological systemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
Pageof 3