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Methods in Molecular Biology (Clifton, N.J.)|May 28, 2021
Agent-Based Modeling of Systemic Inflammation: A Pathway Toward Controlling SepsisGary An, R Chase CockrellComputational and Mathematical Organization Theory|August 31, 2013
A proposal for augmenting biological model construction with a semi-intelligent computational modeling assistantScott Christley, Gary AnCritical Reviews in Biomedical Engineering|November 13, 2012
Addressing the translational dilemma: dynamic knowledge representation of inflammation using agent-based modelingGary An, Scott ChristleyBiorxiv : the Preprint Server for Biology|February 23, 2022
Preparing for the next COVID: Deep Reinforcement Learning trained Artificial Intelligence discovery of multi-modal immunomodulatory control of systemic inflammation in the absence of effective anti-microbialsDale Larie, Gary An, Chase CockrellFrontiers in Immunology|December 8, 2022
Preparing for the next pandemic: Simulation-based deep reinforcement learning to discover and test multimodal control of systemic inflammation using repurposed immunomodulatory agentsChase Cockrell, Dale Larie, Gary AnFrontiers in Physiology|November 1, 2021
The Use of Artificial Neural Networks to Forecast the Behavior of Agent-Based Models of Pathophysiology: An Example Utilizing an Agent-Based Model of SepsisDale Larie, Gary An, R Chase CockrellSurgical Infections|October 12, 2023
Characterizing the Crosstalk Between Programmed Cell Death Pathways in Cytokine Storm With an Agent-Based ModelSolomon Feuerwerker, R Chase Cockrell, Gary AnPlos Computational Biology|January 23, 2024
Examining B-cell dynamics and responsiveness in different inflammatory milieus using an agent-based modelBryan Shin, Gary An, R Chase CockrellSimulation|November 8, 2021
Nested active learning for efficient model contextualization and parameterization: pathway to generating simulated populations using multi-scale computational modelsChase Cockrell, Jonathan Ozik, Nick Collier, et al.Biorxiv : the Preprint Server for Biology|June 19, 2024
The Wound Environment Agent-based Model (WEABM): a digital twin platform for characterization and complex therapeutic discovery for volumetric muscle lossChase Cockrell, Yoram Vodovotz, Ruben Zamora, et al.Pageof 17