Improved leaf sequencing reduces segments or monitor units needed to deliver IMRT using multileaf collimators
- 11 December 2001
- journal article
- Published by Wiley in Medical Physics
- Vol. 28 (12) , 2450-2458
- https://doi.org/10.1118/1.1420392
Abstract
Leaf sequencing algorithms may use an unnecessary number of monitor units or segments to generate intensity maps for delivery of intensity modulated radiotherapy(IMRT) using multiple static fields. An integer algorithm was devised to generate a sequence with the fewest possible segments when the minimum number of monitor units are used. Special hardware related restrictions on leaf motion can be incorporated. The algorithm was tested using a benchmark map from the literature and clinical examples. Results were compared to sequences given by the routine of Bortfeld that minimizes monitor units by treating each row independently, and the areal or reducing routines that use fewer segments at the price of more monitor units. The Bortfeld algorithm used on average 58% more segments than provided by the integer algorithm with bidirectional motion and 32% more segments than did an integer algorithm admitting only unidirectional sequences. The areal algorithm used 48% more monitor units and the reducing algorithm used 23% more monitor units than did the bidirectional integer algorithm, while the areal and reducing algorithms used 23% more segments than did the integer algorithm. Improved leaf sequencing algorithms can allow more efficient delivery of static field IMRT. The integer algorithm demonstrates the efficiencies possible with an improved routine and opens a new avenue for development.Keywords
This publication has 14 references indexed in Scilit:
- Intensity‐modulation radiotherapy using independent collimators: An algorithm studyMedical Physics, 1999
- Intensity modulation with the “step and shoot” technique using a commercial mlc: a planning studyInternational Journal of Radiation Oncology*Biology*Physics, 1999
- Comparison of algorithms for multileaf collimator field segmentationMedical Physics, 1999
- Minimizing static intensity modulation delivery time using an intensity solid paradigmInternational Journal of Radiation Oncology*Biology*Physics, 1999
- Multileaf collimator leaf sequencing algorithm for intensity modulated beams with multiple static segmentsMedical Physics, 1998
- The optimum intensities for multiple static multileaf collimator field compensationMedical Physics, 1997
- Realization and verification of three-dimensional conformal radiotherapy with modulated fieldsInternational Journal of Radiation Oncology*Biology*Physics, 1994
- X-ray field compensation with multileaf collimatorsInternational Journal of Radiation Oncology*Biology*Physics, 1994
- Combining multileaf fields to modulate fluence distributionsInternational Journal of Radiation Oncology*Biology*Physics, 1993
- An Automatic Method of Solving Discrete Programming ProblemsEconometrica, 1960