Delivery of intensity‐modulated radiation therapy with a conventional multileaf collimator: Comparison of dynamic and segmental methods
- 11 December 2001
- journal article
- research article
- Published by Wiley in Medical Physics
- Vol. 28 (12) , 2441-2449
- https://doi.org/10.1118/1.1418018
Abstract
Intensity-modulated radiation therapy(IMRT) can be delivered with a conventional multileaf collimator(MLC), either in dynamic mode (DMLC) or in segmental mode (SMLC, also known as “step-and-shoot”). The advantage of DMLC is its ability to deliver the desired intensity profile produced by inverse planning with a high degree of fidelity. The SMLC method, on the other hand, resembles treatment with multiple static fields, and can be more easily verified. However, the use of SMLC requires that the desired profile be approximated by discrete levels of intensity, which may lead to degradation in the delivereddose distribution. Clearly, the results of SMLC delivery depend on the number of levels and the spatial resolution of the intensity distribution. In this work, we compare the DMLC method and the SMLC method employing different numbers of levels and different spatial resolutions. Three disease sites were studied: prostate, nasopharynx, and breast, with three cases for each. In general, a 5- to 10-level SMLC plan produced results comparable to that from a DMLC plan. The target coverage is improved by increasing the number of levels while critical organs are better protected with finer spatial resolutions. The beam-on-time (MUs) requirement for SMLC was approximately 20% less than DMLC, but the delivery time (in minutes) was about twice as long. Thus, the choice depends on many factors including machine capability, quality assurance, target coverage, critical organ protection, beam-on-time, delivery time, and other clinical considerations.Keywords
This publication has 20 references indexed in Scilit:
- The effects of beamlet size on IMRT optimizationPublished by Springer Nature ,2000
- Intensity modulation with the “step and shoot” technique using a commercial mlc: a planning studyInternational Journal of Radiation Oncology*Biology*Physics, 1999
- Minimizing static intensity modulation delivery time using an intensity solid paradigmInternational Journal of Radiation Oncology*Biology*Physics, 1999
- Physical and dosimetric aspects of a multileaf collimation system used in the dynamic mode for implementing intensity modulated radiotherapyMedical Physics, 1998
- An optimized leaf-setting algorithm for beam intensity modulation using dynamic multileaf collimatorsPhysics in Medicine & Biology, 1998
- Dynamic X-ray compensation for conformal radiotherapy by means of multi-leaf collimationRadiotherapy and Oncology, 1994
- X-ray field compensation with multileaf collimatorsInternational Journal of Radiation Oncology*Biology*Physics, 1994
- An analytical solution for the dynamic control of multileaf collimatorsPhysics in Medicine & Biology, 1994
- Combining multileaf fields to modulate fluence distributionsInternational Journal of Radiation Oncology*Biology*Physics, 1993
- The generation of intensity-modulated fields for conformal radiotherapy by dynamic collimationPhysics in Medicine & Biology, 1992