The dataset comprises the output of several simulations of a model of tumor growth with different parameter values. The model is a multi-scale agent-based model of a tumor spheroid that is treated with periodic pulses of the cytokine tumor necrosis factor (TNF). The multi-scale model simulates processes including i) the diffusion, uptake, and secretion of molecular entities such as oxygen, or TNF; ii) the mechanical interaction between cells; and iii) cellular processes including cell life cycle, cell death models, signal transduction. The multi-scale model was implemented and simulated using the PhysiBoSS framework (Letort et al. 2019). The dataset corresponds to different simulations trajectories obtained for alternative parameter values...
To understand the behavior of biological systems we need to consider that they are made of populatio...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
This deliverable describes the requirements and scenario definitions of the Life Sciences use case. ...
This deliverable describes the agent-based model currently used in the Life Science use case of INFO...
Data and results for `ESTIMATED HEMODYNAMICS` simulations. Simulations of cancerous cells in colony...
Data and results for `ESTIMATED HEMODYNAMICS` simulations. Simulations of cancerous cells in colony...
The recent discovery of cancer stem cells (CSCs), or tumor initiating cells (TICs), in a variety of ...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
The temporal and spatial resolution in the microscopy of tissues has increased significa...
The temporal and spatial resolution in the microscopy of tissues has increased significa...
The temporal and spatial resolution in the microscopy of tissues has increased significa...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
Many multicellular systems problems can only be understood by studying how cells move, grow, divide,...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
To understand the behavior of biological systems we need to consider that they are made of populatio...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
This deliverable describes the requirements and scenario definitions of the Life Sciences use case. ...
This deliverable describes the agent-based model currently used in the Life Science use case of INFO...
Data and results for `ESTIMATED HEMODYNAMICS` simulations. Simulations of cancerous cells in colony...
Data and results for `ESTIMATED HEMODYNAMICS` simulations. Simulations of cancerous cells in colony...
The recent discovery of cancer stem cells (CSCs), or tumor initiating cells (TICs), in a variety of ...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
The temporal and spatial resolution in the microscopy of tissues has increased significa...
The temporal and spatial resolution in the microscopy of tissues has increased significa...
The temporal and spatial resolution in the microscopy of tissues has increased significa...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
Many multicellular systems problems can only be understood by studying how cells move, grow, divide,...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
To understand the behavior of biological systems we need to consider that they are made of populatio...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...
In this paper, we present two mathematical models related to different aspects and scales of cancer ...