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PMID: 15501506 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Validation Study

Simulating growth dynamics and radiation response of avascular tumour spheroids-model validation in the case of an EMT6/Ro multicellular spheroid.

Computer methods and programs in biomedicine ·Vol. 76 ·No. 3 ·2004-12-00 ·Pages 193-206

Zacharaki EI, Stamatakos GS, Nikita KS, Uzunoglu NK

Abstract

The goal of this paper is to provide both the basic scientist and the clinician with an advanced computational tool for performing in silico experiments aiming at supporting the process of biological optimisation of radiation therapy. Improved understanding and description of malignant tumour dynamics is an additional intermediate objective. To this end an advanced three-dimensional (3D) Monte-Carlo simulation model of both the avascular development of multicellular tumour spheroids and their response to radiation therapy is presented. The model is based upon a number of fundamental biological principles such as the transition between the cell cycle phases, the diffusion of oxygen and nutrients and the cell survival probabilities following irradiation. Efficient algorithms describing tumour expansion and shrinkage are proposed and applied. The output of the biosimulation model is introduced into the (3D) visualisation package AVS-Express, which performs the visualisation of both the external surface and the internal structure of the dynamically evolving tumour based on volume or surface rendering techniques. Both the numerical stability and the statistical behaviour of the simulation model have been studied and evaluated for the case of EMT6/Ro spheroids. Predicted histological structure and tumour growth rates have been shown to be in agreement with published experimental data. Furthermore, the underlying structure of the tumour spheroid as well as its response to irradiation satisfactorily agrees with laboratory experience.

MeSH Terms
Algorithms Cell Proliferation/radiation effects Computer Simulation Disease Progression Humans Models, Biological Monte Carlo Method Neoplasms/pathology,radiotherapy Sensitivity and Specificity Spheroids, Cellular/cytology,radiation effects Tumor Cells, Cultured/radiation effects
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Zacharaki Evangelia I
School of Electrical and Computer Engineering, Division of Information Transmission Systems and Materials Technology, National Technical University of Athens, 9 Iroon Polytechniou, GR-15780 Zografos, Greece. [email protected]
Stamatakos Georgios S
Nikita Konstantina S
Uzunoglu Nikolaos K
Article Info
Journal
Computer methods and programs in biomedicine
Abbr.
Comput Methods Programs Biomed
ISSN
0169-2607
Published
2004-12-00
Pages
193-206
Language
English
Region
Ireland
NLM ID
8506513
Subset
IM
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