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Parameter Sensitivity in Tumor Models: Dataset from PhysiCell Simulations

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NIAID Data Ecosystem2026-05-02 收录
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https://zenodo.org/record/14590311
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This dataset contains simulation outputs generated by applying multiplicative perturbations to parameters in two PhysiCell models. The perturbations, applied at levels of ±1%, ±5%, ±10%, and ±20% around reference parameter values, were repeated across 50 replicates for each condition. The resulting simulations provide comprehensive data on population dynamics, spatial distributions, and biological processes over a 5-day period. Model 1: Hypoxia Progression in a Metastatic Tumor (Table_ex1) Raw Population Data: Records the population of each cell type over time. Summary of Population Data: Includes the area under the curve (AUC) for cell populations over the simulation period. Raw Spatial Data: Captures the distance of cells from the computational center, offering insights into spatial distribution and invasion patterns. Summary of Spatial Data: Pooled cell distances from the center and calculated Wasserstein distances between tumor and motile tumor cell populations. Model 3: Tumor-Immune Dynamics (Table_ex3) Raw Population Data: Tracks the population dynamics of tumor cells, macrophages, and CD8 T cells over time. Summary of Population Data: Includes the AUC for each cell population over the simulation period. Raw Spatial Data: Records the distances of cells from the computational center to analyze invasion and spatial distribution patterns. Summary of Spatial Data: Pooled cell distances from the center and calculated Wasserstein distances between tumor cells and CD8 T cells, and tumor cells and macrophages. More details and access instructions are available at: PhysiCell-Models GitHub Repository.
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2025-01-02
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