Title of article
Lateral Penumbra Modelling Based Leaf End Shape Optimization for Multileaf Collimator in Radiotherapy
Author/Authors
Zhou, Dong Department of Mechanical Engineering - Tsinghua University - Beijing, China , Zhang, Hui Department of Mechanical Engineering - Tsinghua University - Beijing, China , Ye, Peiqing Department of Mechanical Engineering - Tsinghua University - Beijing, China
Pages
13
From page
1
To page
13
Abstract
Lateral penumbra of multileaf collimator plays an important role in radiotherapy treatment planning. Growing evidence has
revealed that, for a single-focused multileaf collimator, lateral penumbra width is leaf position dependent and largely attributed
to the leaf end shape. In our study, an analytical method for leaf end induced lateral penumbra modelling is formulated using
Tangent Secant Theory. Compared with Monte Carlo simulation and ray tracing algorithm, our model serves well the purpose
of cost-efficient penumbra evaluation. Leaf ends represented in parametric forms of circular arc, elliptical arc, Bezier curve, and ´
B-spline are implemented. With biobjective function of penumbra mean and variance introduced, genetic algorithm is carried out
for approximating the Pareto frontier. Results show that for circular arc leaf end objective function is convex and convergence to
optimal solution is guaranteed using gradient based iterative method. It is found that optimal leaf end in the shape of Bezier curve ´
achieves minimal standard deviation, while using B-spline minimum of penumbra mean is obtained. For treatment modalities in
clinical application, optimized leaf ends are in close agreement with actual shapes. Taken together, the method that we propose can
provide insight into leaf end shape design of multileaf collimator.
Keywords
Penumbra , Multileaf , Radiotherapy
Journal title
Computational and Mathematical Methods in Medicine
Serial Year
2016
Full Text URL
Record number
2607435
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