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GPU acceleration and data fitting: Agent-based models of viral infections can now be parameterized in hours


ABSTRACT: Abstract from paper: "For many years, infectious disease modelers have used agent-based models to study the spread of viruses, but the models were too computationally intensive to fully replicate even in vitro experiments. Now, with technological advancements and accessible software, agent-based models can be used to their full potential. In this work, we created an agent-based model that expresses viral transmission and diffusion, can manipulate and track individual cells, and can be fit to real experimental data in a timely manner due to acceleration of computation with graphics processing units (GPUs). The use of GPUs allows simulations to run on desktop computers in a few minutes or hours, while still simulating an accurate number of cells to replicate infection experiments. This model can now be used to study in-host infections quickly, so that in the event of an outbreak or epidemic a treatment plan and course of action can be developed in less time."

SUBMITTER: Baylor Fain  

PROVIDER: MODEL2301010001 | BioModels | 2023-01-04

REPOSITORIES: BioModels

Dataset's files

Source:
Action DRS
MODEL2301010001?filename=Functions.h Other
MODEL2301010001?filename=Includes.h Other
MODEL2301010001?filename=Variables.h Other
MODEL2301010001?filename=Viral_Transmission.cu Other
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