Literature DB >> 7833383

A mathematical model of glioma growth: the effect of chemotherapy on spatio-temporal growth.

P Tracqui1, G C Cruywagen, D E Woodward, G T Bartoo, J D Murray, E C Alvord.   

Abstract

During the past two decades computerized tomography (CT) and magnetic resonance imaging (MRI) have permitted the detection of tumours at much earlier stages in their development than was previously possible. In spite of this earlier diagnosis the effects of earlier and more extensive treatments have been difficult to document. This failure has led to an increasing awareness of the importance of infiltration of glioma cells into surrounding grossly normal brain tissue such that recurrence still occurs. In this paper a simple mathematical model for the proliferation and infiltration of such tumours is introduced, based in part on quantitative image analysis of histological sections of a human brain glioma and especially on cross-sectional area/volume measurements of serial CT images while the patient was undergoing chemotherapy. The model parameters were estimated using optimization techniques to give the best fit of the simulated tumour area to the CT scan data. Numerical solution of the model on a two-dimensional domain, which took into account the geometry of the brain and its natural barriers to diffusion, was used to determine the effect of chemotherapy on the spatio-temporal growth of the tumour.

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Year:  1995        PMID: 7833383     DOI: 10.1111/j.1365-2184.1995.tb00036.x

Source DB:  PubMed          Journal:  Cell Prolif        ISSN: 0960-7722            Impact factor:   6.831


  64 in total

1.  Improving the time-machine: estimating date of birth of grade II gliomas.

Authors:  C Gerin; J Pallud; B Grammaticos; E Mandonnet; C Deroulers; P Varlet; L Capelle; L Taillandier; L Bauchet; H Duffau; M Badoual
Journal:  Cell Prolif       Date:  2011-12-14       Impact factor: 6.831

2.  Realistic simulation of the 3-D growth of brain tumors in MR images coupling diffusion with biomechanical deformation.

Authors:  Olivier Clatz; Maxime Sermesant; Pierre-Yves Bondiau; Hervé Delingette; Simon K Warfield; Grégoire Malandain; Nicholas Ayache
Journal:  IEEE Trans Med Imaging       Date:  2005-10       Impact factor: 10.048

3.  Deformable registration of glioma images using EM algorithm and diffusion reaction modeling.

Authors:  Ali Gooya; George Biros; Christos Davatzikos
Journal:  IEEE Trans Med Imaging       Date:  2010-09-27       Impact factor: 10.048

4.  Vignettes from the field of mathematical biology: the application of mathematics to biology and medicine.

Authors:  J D Murray
Journal:  Interface Focus       Date:  2012-02-01       Impact factor: 3.906

Review 5.  Toward an Ising model of cancer and beyond.

Authors:  Salvatore Torquato
Journal:  Phys Biol       Date:  2011-02-07       Impact factor: 2.583

6.  Applying a patient-specific bio-mathematical model of glioma growth to develop virtual [18F]-FMISO-PET images.

Authors:  Stanley Gu; Gargi Chakraborty; Kyle Champley; Adam M Alessio; Jonathan Claridge; Russell Rockne; Mark Muzi; Kenneth A Krohn; Alexander M Spence; Ellsworth C Alvord; Alexander R A Anderson; Paul E Kinahan; Kristin R Swanson
Journal:  Math Med Biol       Date:  2011-05-11       Impact factor: 1.854

7.  A mathematical model for brain tumor response to radiation therapy.

Authors:  R Rockne; E C Alvord; J K Rockhill; K R Swanson
Journal:  J Math Biol       Date:  2008-09-25       Impact factor: 2.259

Review 8.  In silico cancer modeling: is it ready for prime time?

Authors:  Thomas S Deisboeck; Le Zhang; Jeongah Yoon; Jose Costa
Journal:  Nat Clin Pract Oncol       Date:  2008-10-14

9.  A general reaction-diffusion model of acidity in cancer invasion.

Authors:  Jessica B McGillen; Eamonn A Gaffney; Natasha K Martin; Philip K Maini
Journal:  J Math Biol       Date:  2013-03-28       Impact factor: 2.259

10.  Virtual brain tumours (gliomas) enhance the reality of medical imaging and highlight inadequacies of current therapy.

Authors:  K R Swanson; E C Alvord; J D Murray
Journal:  Br J Cancer       Date:  2002-01-07       Impact factor: 7.640

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