Literature DB >> 19820268

Variable dose rate single-arc IMAT delivered with a constant dose rate and variable angular spacing.

Grace Tang1, Matthew A Earl, Cedric X Yu.   

Abstract

Single-arc intensity-modulated arc therapy (IMAT) has gained worldwide interest in both research and clinical implementation due to its superior plan quality and delivery efficiency. Single-arc IMAT techniques such as the Varian RapidArc deliver conformal dose distributions to the target in one single gantry rotation, resulting in a delivery time in the order of 2 min. The segments in these techniques are evenly distributed within an arc and are allowed to have different monitor unit (MU) weightings. Therefore, a variable dose-rate (VDR) is required for delivery. Because the VDR requirement complicates the control hardware and software of the linear accelerators (linacs) and prevents most existing linacs from delivering IMAT, we propose an alternative planning approach for IMAT using constant dose-rate (CDR) delivery with variable angular spacing. We prove the equivalence by converting VDR-optimized RapidArc plans to CDR plans, where the evenly spaced beams in the VDR plan are redistributed to uneven spacing such that the segments with larger MU weighting occupy a greater angular interval. To minimize perturbation in the optimized dose distribution, the angular deviation of the segments was restricted to </=+/- 5 degrees . This restriction requires the treatment arc to be broken into multiple sectors such that the local MU fluctuation within each sector is reduced, thereby lowering the angular deviation of the segments during redistribution. The converted CDR plans were delivered with a single gantry sweep as in the VDR plans but each sector was delivered with a different value of CDR. For four patient cases, including two head-and-neck, one brain and one prostate, all CDR plans developed with the variable spacing scheme produced similar dose distributions to the original VDR plans. For plans with complex angular MU distributions, the number of sectors increased up to four in the CDR plans in order to maintain the original plan quality. Since each sector was delivered with a different dose rate, extra mode-up time (xMOT) was needed between the transitions of the successive sectors during delivery. On average, the delivery times of the CDR plans were approximately less than 1 min longer than the treatment times of the VDR plans, with an average of about 0.33 min of xMOT per sector transition. The results have shown that VDR may not be necessary for single-arc IMAT. Using variable angular spacing, VDR RapidArc plans can be implemented into the clinics that are not equipped with the new VDR-enabled machines without compromising the plan quality or treatment efficiency. With a prospective optimization approach using variable angular spacing, CDR delivery times can be further minimized while maintaining the high delivery efficiency of single-arc IMAT treatment.

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Year:  2009        PMID: 19820268     DOI: 10.1088/0031-9155/54/21/001

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  9 in total

1.  Advantage of 3D volumetric dosemeter in delivery quality assurance of dynamic arc therapy: comparison of pencil beam and Monte Carlo calculations.

Authors:  H-J Shin; J H Song; J-Y Jung; Y-K Kwak; C S Kay; Y-N Kang; B O Choi; H S Jang; S H Son
Journal:  Br J Radiol       Date:  2013-11-14       Impact factor: 3.039

2.  Is volumetric modulated arc therapy with constant dose rate a valid option in radiation therapy for head and neck cancer patients?

Authors:  Annamaria Didona; Valentina Lancellotta; Claudio Zucchetti; Bianca Moira Panizza; Alessandro Frattegiani; Martina Iacco; Anna Concetta Di Pilato; Simonetta Saldi; Cynthia Aristei
Journal:  Rep Pract Oncol Radiother       Date:  2018-03-19

3.  Two-step intensity modulated arc therapy (2-step IMAT) with segment weight and width optimization.

Authors:  Jidi Sun; Theam Yong Chew; Juergen Meyer
Journal:  Radiat Oncol       Date:  2011-06-02       Impact factor: 3.481

4.  Is RapidArc more susceptible to delivery uncertainties than dynamic IMRT?

Authors:  Gregory T Betzel; Byong Yong Yi; Ying Niu; Cedric X Yu
Journal:  Med Phys       Date:  2012-10       Impact factor: 4.506

5.  Feasibility of constant dose rate VMAT in the treatment of nasopharyngeal cancer patients.

Authors:  Wenliang Yu; Haijiao Shang; Congying Xie; Ce Han; Jinling Yi; Yongqiang Zhou; Xiance Jin
Journal:  Radiat Oncol       Date:  2014-11-04       Impact factor: 3.481

6.  Assessment of Volumetric-Modulated Arc Therapy for Constant and Variable Dose Rates.

Authors:  Mariluz De Ornelas-Couto; Ivaylo Mihaylov; Nesrin Dogan
Journal:  J Med Phys       Date:  2017 Oct-Dec

7.  Anatomy driven optimization strategy for total marrow irradiation with a volumetric modulated arc therapy technique.

Authors:  Pietro Mancosu; Pierina Navarria; Luca Castagna; Antonella Roggio; Chiara Pellegrini; Giacomo Reggiori; Antonella Fogliata; Francesca Lobefalo; Simona Castiglioni; Filippo Alongi; Luca Cozzi; Armando Santoro; Marta Scorsetti
Journal:  J Appl Clin Med Phys       Date:  2012-01-05       Impact factor: 2.102

8.  Implementation of Constant Dose Rate and Constant Angular Spacing Intensity-modulated Arc Therapy for Cervical Cancer by Using a Conventional Linear Accelerator.

Authors:  Ruo-Hui Zhang; Xiao-Mei Fan; Wen-Wen Bai; Yan-Kun Cao
Journal:  Chin Med J (Engl)       Date:  2016-02-05       Impact factor: 2.628

9.  Improving Delivery Accuracy of Stereotactic Body Radiotherapy to a Moving Tumor Using Simplified Volumetric Modulated Arc Therapy.

Authors:  Young Eun Ko; Byungchul Cho; Su Ssan Kim; Si Yeol Song; Eun Kyung Choi; Seung Do Ahn; Byongyong Yi
Journal:  PLoS One       Date:  2016-06-22       Impact factor: 3.240

  9 in total

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