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Conference paper

MCmatlab: An open-source, user-friendly, MATLAB-integrated 3D Monte Carlo light transport solver with heat diffusion and tissue damage

From

Department of Photonics Engineering, Technical University of Denmark1

Diode Lasers and LED Systems, Department of Photonics Engineering, Technical University of Denmark2

Technical University of Denmark3

While there exist many Monte Carlo (MC) programs for solving the radiative transfer equation (RTE) in biological tissues, we have identified a need for an open-source MC program that is sufficiently user-friendly for use in an education environment, in which detailed knowledge of compiling or UNIX command-line cannot be assumed.

Therefore, we introduce MCmatlab, an open-source codebase thus far consisting of (a) a fast 3D Monte Carlo RTE solver and (b) a finite-element heat diffusion and Arrhenius-based thermal tissue damage simulator, both run in MATLAB. The kernel for both of these solvers are written in parallelized C and implemented as MATLAB MEX functions, combining the speed of C with the familiarity and versatility of MATLAB.

We present example results generated by the RTE solver and the thermal model. MCmatlab is easy to install and use and can be used by students and experienced researchers alike for simulating tissue light propagation and, optionally, thermal damage.

Language: English
Publisher: SPIE - International Society for Optical Engineering
Year: 2019
Pages: 108760T-108760T-12
Proceedings: SPIE Photonics West 2019
Series: Progress in Biomedical Optics and Imaging - Proceedings of Spie
ISBN: 1510623949 , 1510623957 , 9781510623941 and 9781510623958
ISSN: 24109045 and 16057422
Types: Conference paper
DOI: 10.1117/12.2507754
ORCIDs: Marti, Dominik , Andersen, Peter E. and Hansen, Anders Kragh

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