Title of article :
An Approach in Radiation Therapy Treatment Planning: A Fast, GPU-Based Monte Carlo Method
Author/Authors :
Karbalaee ، Mojtaba Department of Medical Physics - School of Medicine - Isfahan University of Medical Sciences , Shahbazi-Gahrouei ، Daryoush Department of Medical Physics - School of Medicine - Isfahan University of Medical Sciences , Tavakoli ، Mohammad B. Department of Medical Physics - School of Medicine - Isfahan University of Medical Sciences
From page :
108
To page :
113
Abstract :
An accurate and fast radiation dose calculation is essential for successful radiation radiotherapy. The aim of this study was to implement a new graphic processing unit (GPU) based radiation therapy treatment planning for accurate and fast dose calculation in radiotherapy centers. A program was written for parallel running based on GPU. The code validation was performed by EGSnrc/ DOSXYZnrc. Moreover, a semi-automatic, rotary, asymmetric phantom was designed and produced using a bone, the lung, and the soft tissue equivalent materials. All measurements were performed using a Mapcheck dosimeter. The accuracy of the code was validated using the experimental data, which was obtained from the anthropomorphic phantom as the gold standard. The findings showed that, compared with those of DOSXYZnrc in the virtual phantom and for most of the voxels ( 95%), 3% dose-difference or 3mm distance-to-agreement (DTA) was found. Moreover, considering the anthropomorphic phantom, compared to the Mapcheck dose measurements, 5% dosedifference or 5mm DTA was observed. Fast calculation speed and high accuracy of GPU-based Monte Carlo method in dose calculation may be useful in routine radiation therapy centers as the core and main component of a treatment planning verification system.
Keywords :
Dosimetry , fast monte carlo , GPU , phantom , radiotherapy treatment planning
Journal title :
Journal of Medical Signals and Sensors (JMSS)
Journal title :
Journal of Medical Signals and Sensors (JMSS)
Record number :
2516192
Link To Document :
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