DocumentCode :
710894
Title :
Radiotherapy Standard/Conformal wedge IMRT-beamlet divergence angle limit exact method, mathematical formulation, and bioengineering applications
Author :
Casesnoves, F.
Author_Institution :
IIIS (Int. Inst. of Inf. & Systemics), Orlando, FL, USA
fYear :
2015
fDate :
17-19 April 2015
Firstpage :
1
Lastpage :
2
Abstract :
Conformal/Standard radiotherapy wedges [refs 3-7,Casesnoves 2005] present several bioengineering-industrial design difficulties to obtain an optimal beam/beamlets-IMRT upper-surface radiation distribution, avoiding that them could emerge undesirably from lateral walls instead the lower wedge plane. We calculated the improved exact beamlet limit-angle mathematical method for a standard/conformal wedge filter design. It was developed with basic mathematical algorithms, geometrical design, and Numerical Simulations linked to this mathematical formulation. All that was done using the AAA algorithm integral attenuation exponential factor [AEF], which modulates the convolution kernel of the integral dose delivery. Results comprise the geometrical design of the conformal wedge, showed in several sketches, and simulations with appropriate software. In addition, a series of geometrical formulas/tables for the beamlets limits, trigonometric AEF background, and mathematical formulation with the simulations of the AEF for a 2-steps conformal wedge are obtained.
Keywords :
convolution; numerical analysis; radiation therapy; AAA algorithm integral attenuation exponential factor; bioengineering-industrial design; convolution kernel modulation; improved exact beamlet limit-angle mathematical method; integral dose delivery; mathematical algorithms; numerical simulations; optimal beam-beamlet-IMRT upper-surface radiation distribution; radiotherapy standard-conformal wedge IMRT-beamlet divergence angle limit exact method; standard-conformal wedge filter design; trigonometric AEF background; Approximation algorithms; Biomedical engineering; Mathematical model; Optimization; Photonics; Planning; Standards; Attenuation Exponential Factor (AEF) Simulations; Dose; Nonlinear Optimization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Engineering Conference (NEBEC), 2015 41st Annual Northeast
Conference_Location :
Troy, NY
Print_ISBN :
978-1-4799-8358-2
Type :
conf
DOI :
10.1109/NEBEC.2015.7117152
Filename :
7117152
Link To Document :
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