Literature DB >> 12023150

Clinical implementation of intensity-modulated arc therapy.

Cedric X Yu1, X Allen Li, Lijun Ma, Dongjun Chen, Shahid Naqvi, David Shepard, Mehrdad Sarfaraz, Timothy W Holmes, Mohan Suntharalingam, Carl M Mansfield.   

Abstract

PURPOSE: Intensity-modulated arc therapy (IMAT) is a method for delivering intensity-modulated radiation therapy (IMRT) using rotational beams. During delivery, the field shape, formed by a multileaf collimator (MLC), changes constantly. The objectives of this study were to (1) clinically implement the IMAT technique, and (2) evaluate the dosimetry in comparison with conventional three-dimensional (3D) conformal techniques. METHODS AND MATERIALS: Forward planning with a commercial system (RenderPlan 3D, Precision Therapy International, Inc., Norcross, GA) was used for IMAT planning. Arcs were approximated as multiple shaped fields spaced every 5-10 degrees around the patient. The number and ranges of the arcs were chosen manually. Multiple coplanar, superimposing arcs or noncoplanar arcs with or without a wedge were allowed. For comparison, conventional 3D conformal treatment plans were generated with the same commercial forward planning system as for IMAT. Intensity-modulated treatment plans were also created with a commercial inverse planning system (CORVUS, Nomos Corporation). A leaf-sequencing program was developed to generate the dynamic MLC prescriptions. IMAT treatment delivery was accomplished by programming the linear accelerator (linac) to deliver an arc and the MLC to step through a sequence of fields. Both gantry rotation and leaf motion were enslaved to the delivered MUs. Dosimetric accuracy of the entire process was verified with phantoms before IMAT was used clinically. For each IMAT treatment, a dry run was performed to assess the geometric and dosimetric accuracy. Both the central axis dose and dose distributions were measured and compared with predictions by the planning system.
RESULTS: By the end of May 2001, 50 patients had completed their treatments with the IMAT technique. Two to five arcs were needed to achieve highly conformal dose distributions. The IMAT plans provided better dose uniformity in the target and lower doses to normal structures than 3D conformal plans. The results varied when the comparison was made with fixed gantry IMRT. In general, IMAT plans provided more uniform dose distributions in the target, whereas the inverse-planned fixed gantry treatments had greater flexibility in controlling dose to the critical structures. Because the field sizes and shapes used in the IMAT were similar to those used in conventional treatments, the dosimetric uncertainty was very small. Of the first 32 patients treated, the average difference between the measured and predicted doses was -0.54 +/- 1.72% at isocenter. The 80%-95% isodose contours measured with film dosimetry matched those predicted by the planning system to within 2 mm. The planning time for IMAT was slightly longer than for generating conventional 3D conformal plans. However, because of the need to create phantom plans for the dry run, the overall planning time was doubled. The average time a patient spent on the table for IMAT treatment was similar to conventional treatments.
CONCLUSION: Initial results demonstrated the feasibility and accuracy of IMAT for achieving highly conformal dose distributions for different sites. If treatment plans can be optimized for IMAT cone beam delivery, we expect IMAT to achieve dose distributions that rival both slice-based and fixed-field IMRT techniques. The efficient delivery with existing linac and MLC makes IMAT a practical choice.

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Mesh:

Year:  2002        PMID: 12023150     DOI: 10.1016/s0360-3016(02)02777-3

Source DB:  PubMed          Journal:  Int J Radiat Oncol Biol Phys        ISSN: 0360-3016            Impact factor:   7.038


  33 in total

1.  Comparative analysis of SmartArc-based dual arc volumetric-modulated arc radiotherapy (VMAT) versus intensity-modulated radiotherapy (IMRT) for nasopharyngeal carcinoma.

Authors:  Tsair-Fwu Lee; Pei-Ju Chao; Hui-Min Ting; Su-Hua Lo; Yu-Wen Wang; Chiu-Ching Tuan; Fu-Min Fang; Te-Jen Su
Journal:  J Appl Clin Med Phys       Date:  2011-11-15       Impact factor: 2.102

Review 2.  Volumetric modulated arc therapy: a review of current literature and clinical use in practice.

Authors:  M Teoh; C H Clark; K Wood; S Whitaker; A Nisbet
Journal:  Br J Radiol       Date:  2011-11       Impact factor: 3.039

3.  Dose correction strategy for the optimization of volumetric modulated arc therapy.

Authors:  Pengpeng Zhang; Jie Yang; Margie Hunt; Gig Mageras
Journal:  Med Phys       Date:  2010-06       Impact factor: 4.071

4.  Clinical implementation of volumetric intensity-modulated arc therapy (VMAT) with ERGO++.

Authors:  Dirk Wolff; Florian Stieler; Brigitte Hermann; Katharina Heim; Sven Clausen; Jens Fleckenstein; Martin Polednik; Volker Steil; Frederik Wenz; Frank Lohr
Journal:  Strahlenther Onkol       Date:  2010-04-26       Impact factor: 3.621

5.  Treatment planning and dosimetric comparison study on two different volumetric modulated arc therapy delivery techniques.

Authors:  S A Syam Kumar; Raghavendra Holla; Prabakar Sukumar; Sriram Padmanaban; Nagarajan Vivekanandan
Journal:  Rep Pract Oncol Radiother       Date:  2012-08-09

6.  Analyzing the performance of ArcCHECK diode array detector for VMAT plan.

Authors:  Rajesh Thiyagarajan; Arunai Nambiraj; Sujit Nath Sinha; Girigesh Yadav; Ashok Kumar; Vikraman Subramani
Journal:  Rep Pract Oncol Radiother       Date:  2015-12-02

Review 7.  Proton therapy delivery: what is needed in the next ten years?

Authors:  Andries N Schreuder; Jacob Shamblin
Journal:  Br J Radiol       Date:  2019-11-14       Impact factor: 3.039

8.  Simultaneous integrated boost radiotherapy for bilateral breast: a treatment planning and dosimetric comparison for volumetric modulated arc and fixed field intensity modulated therapy.

Authors:  Giorgia Nicolini; Alessandro Clivio; Antonella Fogliata; Eugenio Vanetti; Luca Cozzi
Journal:  Radiat Oncol       Date:  2009-07-24       Impact factor: 3.481

9.  Target splitting in radiation therapy for lung cancer: further developments and exemplary treatment plans.

Authors:  Karl Wurstbauer; Heinz Deutschmann; Peter Kopp; Florian Merz; Helmut Schöller; Felix Sedlmayer
Journal:  Radiat Oncol       Date:  2009-08-14       Impact factor: 3.481

10.  A fast radiotherapy paradigm for anal cancer with volumetric modulated arc therapy (VMAT).

Authors:  Florian Stieler; Dirk Wolff; Frank Lohr; Volker Steil; Yasser Abo-Madyan; Friedlieb Lorenz; Frederik Wenz; Sabine Mai
Journal:  Radiat Oncol       Date:  2009-10-25       Impact factor: 3.481

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