Author/Authors :
Gholamian Mohammad Reza نويسنده , Mahmoodian Vahid نويسنده Department of Industrial Engineering, Iran University of Science and Technology, Tehran, Iran , Makui Ahmad نويسنده Department of Industrial Engineering - Iran University of Science and Technology, Tehran
Abstract :
Cancer is one of the major causes of death all over the globe and radiotherapy is considered
as one of its most effective treatment methods. Designing a radiotherapy treatment plan
was done entirely manually in the past. Recently, Intensity Modulated Radiation Therapy
(IMRT) was introduced as a new technology with advanced medical equipment in the
recent years. IMRT provides the opportunity to deliver complex dose distributions to
cancer cells while sparing the vital tissues and cells from the harmful effects of radiations.
Designing an IMRT treatment plan is a very complex matter due to the numerous
calculations and parameters which must be decided for. Such treatment plan is designed in
three separate phases: 1) selecting the number and the angle of the beams, 2) extracting the
intensity matrix or the corresponding dose map of each beam, and 3) realizing each
intensity matrix. The third phase has been studied in this research and a nonlinear
mathematical model has been proposed for multileaf collimators. The proposed model has
been linearized through two methods and an algorithm has been developed on its basis in
order to solve the model with cardinality objective function. Obtained results are then
compared with similar studies in the literature which reveals the capability of proposed
method.