{"entity":{"id":"paper-ghaffarizadeh-plos-comput-biol","kind":"paper","name":"PhysiCell: An open source physics-based cell simulator for 3-D multicellular systems","aka":[],"tldr":"Paper cited by one technology page, indexed on Europe PMC as PubMed record 29474446 and published in PLoS computational biology; the citing page links this DOI, which is how the record was matched.","summary":"Many multicellular systems problems can only be understood by studying how cells move, grow, divide, interact, and die. Tissue-scale dynamics emerge from systems of many interacting cells as they respond to and influence their microenvironment. The ideal \"virtual laboratory\" for such multicellular systems simulates both the biochemical microenvironment (the \"stage\") and many mechanically and biochemically interacting cells (the \"players\" upon the stage). PhysiCell-physics-based multicellular simulator-is an open source agent-based simulator that provides both the stage and the players for studying many interacting cells in dynamic tissue microenvironments. It builds upon a multi-substrate biotransport solver to link cell phenotype to multiple diffusing substrates and signaling factors. It includes biologically-driven sub-models for cell cycling, apoptosis, necrosis, solid and fluid volume changes, mechanics, and motility \"out of the box.\" The C++ code has minimal dependencies, making it simple to maintain and deploy across platforms. PhysiCell has been parallelized with OpenMP, and its performance scales linearly with the number of cells. Simulations up to 105-106 cells are feasible on quad-core desktop workstations; larger simulations are attainable on single HPC compute nodes. We demonstrate PhysiCell by simulating the impact of necrotic core biomechanics, 3-D geometry, and stochasticity on the dynamics of hanging drop tumor spheroids and ductal carcinoma in situ (DCIS) of the breast. We demonstrate stochastic motility, chemical and contact-based interaction of multiple cell types, and the extensibility of PhysiCell with examples in synthetic multicellular systems (a \"cellular cargo delivery\" system, with application to anti-cancer treatments), cancer heterogeneity, and cancer immunology. PhysiCell is a powerful multicellular systems simulator that will be continually improved with new capabilities and performance improvements. It also represents a significant independent code base for replicating results from other simulation platforms. The PhysiCell source code, examples, documentation, and support are available under the BSD license at http://PhysiCell.MathCancer.org and http://PhysiCell.sf.net.\n\nIndexed on Europe PMC as PubMed record 29474446 (DOI 10.1371/journal.pcbi.1005991). Matched by DOI alone: one technology page cites this DOI among its external links (the pages are listed under Related), and this page was written so that the citation resolves inside OnCo. No figure has been checked by an editor.","asOf":"2026-09-22","links":[{"label":"PLoS Comput Biol 2018","url":"https://doi.org/10.1371/journal.pcbi.1005991"},{"label":"PubMed","url":"https://pubmed.ncbi.nlm.nih.gov/29474446/"},{"label":"Europe PMC","url":"https://europepmc.org/article/MED/29474446"}],"tags":["europepmc-ingest"],"related":["agent-based-tumour-models"],"cancers":[],"sections":[],"technologies":[],"targets":[],"drugs":[],"companies":[],"institutions":[],"pathways":[],"terms":[],"trials":[],"people":[],"bottlenecks":[],"keyPapers":[],"journals":[],"dependsOn":[],"notes":[],"journal":"PLoS computational biology","year":2018,"doi":"10.1371/journal.pcbi.1005991","pmid":"29474446","authors":"Ghaffarizadeh A, Heiland R, Friedman SH, et al.","paperType":"observational","findings":[],"whatItMeans":"One technology page on OnCo cites this paper by its DOI; this record gives the citation a page of its own so a reader can follow it without leaving OnCo. Read the abstract above alongside the citing page listed under Related; the record was created automatically from the Europe PMC entry and its figures have not been checked by hand.","caveats":["Matched to the citing OnCo records by DOI alone; the summary reproduces the Europe PMC abstract and no figure has been verified against the full paper."]},"route":"/key-papers/paper-ghaffarizadeh-plos-comput-biol/","neighbours":{"technology":[{"id":"agent-based-tumour-models","kind":"technology","name":"Agent-based and multicellular simulations","route":"/technologies/agent-based-tumour-models/"}]}}