DocumentCode
1134733
Title
Image Guided Personalization of Reaction-Diffusion Type Tumor Growth Models Using Modified Anisotropic Eikonal Equations
Author
Konukoglu, Ender ; Clatz, Olivier ; Menze, Bjoern H. ; Stieltjes, Bram ; Weber, Marc-André ; Mandonnet, Emmanuel ; Delingette, Hervé ; Ayache, Nicholas
Author_Institution
INRIA, Asclepios Res. Project, Sophia Antipolis, France
Volume
29
Issue
1
fYear
2010
Firstpage
77
Lastpage
95
Abstract
Reaction-diffusion based tumor growth models have been widely used in the literature for modeling the growth of brain gliomas. Lately, recent models have started integrating medical images in their formulation. Including different tissue types, geometry of the brain and the directions of white matter fiber tracts improved the spatial accuracy of reaction-diffusion models. The adaptation of the general model to the specific patient cases on the other hand has not been studied thoroughly yet. In this paper, we address this adaptation. We propose a parameter estimation method for reaction-diffusion tumor growth models using time series of medical images. This method estimates the patient specific parameters of the model using the images of the patient taken at successive time instances. The proposed method formulates the evolution of the tumor delineation visible in the images based on the reaction-diffusion dynamics; therefore, it remains consistent with the information available. We perform thorough analysis of the method using synthetic tumors and show important couplings between parameters of the reaction-diffusion model. We show that several parameters can be uniquely identified in the case of fixing one parameter, namely the proliferation rate of tumor cells. Moreover, regardless of the value the proliferation rate is fixed to, the speed of growth of the tumor can be estimated in terms of the model parameters with accuracy. We also show that using the model-based speed, we can simulate the evolution of the tumor for the specific patient case. Finally, we apply our method to two real cases and show promising preliminary results.
Keywords
biomedical MRI; brain; medical image processing; parameter estimation; reaction-diffusion systems; tumours; brain gliomas; image guided personalization; modified anisotropic eikonal equations; reaction-diffusion type tumor growth model; time series images; tumor delineation; white matter fiber tracts; Anisotropic magnetoresistance; Biomedical imaging; Brain modeling; Equations; Geometry; Neoplasms; Parameter estimation; Performance analysis; Solid modeling; Tumors; Algorithms; Anisotropy; Astrocytoma; Cell Growth Processes; Computer Simulation; Humans; Image Processing, Computer-Assisted; Magnetic Resonance Imaging; Models, Biological; Neoplasms;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/TMI.2009.2026413
Filename
5165028
Link To Document