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      mARC Treatment of Hypopharynx Carcinoma with Flat and Flattening-Filter-Free Beam Energies – A Planning Study

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          Abstract

          Background

          The recently implemented mARC-rotation-technique is capable to deliver high dose rate bursts. For the case of hypopharynx cancer plans we evaluate whether the mARC can achieve an advantage in treatment time in comparison to IMRT. These plans consider two arcs with flat and flattening filter free (FFF) beam energies.

          Materials and Methods

          For 8 hypopharynx-cancer patients step-and-shoot-IMRT and mARC plans were created retrospectively using flat and FFF beam energy. The comparison of the plan scenarios considered measures of quality for PTV coverage and sparing of organs at risk. All plans were irradiated on an anthromorphic phantom equipped with thermoluminescent dosimeters to measure scattered dose and treatment times.

          Results

          A visual comparison of the dose distribution did not show a marked preference for either technique or energy. The statistical evaluation yielded significant differences in favor of the mARC technique and the FFF energy. Scattered dose could be decreased markedly by the use of the mARC technique. Treatment times could be reduced up to 3 minutes with the use of mARC in comparison to IMRT. The high dose rate energy results in another time advantage of about 1 minute.

          Conclusions

          All four plan scenarios yielded equally good quality plans. A combination of the mARC technique with FFF 7 MV high dose rate resulted in a decrease of treatment times from about 9 minutes to 5–6 minutes in comparison to 6 MV IMRT.

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          Most cited references26

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          A conformation number to quantify the degree of conformality in brachytherapy and external beam irradiation: application to the prostate.

          This article presents a method of quantitative assessment of the degree of conformality and its designation by a single numerical value. A conformation number is introduced to evaluate objectively the degree of conformality. A comparison is made between the conformation number as found for external beam treatment plans and ultrasonically guided 125I seed implants for localized prostate cancer. The conformation number in case of a planning target volume irradiated with two opposed open beams, three open beams, and three beams with customized blocks amounted to 0.17, 0.39, and 0.65, respectively. The conformation number as found for ultrasonically guided permanent prostate implants using 125I seeds averaged 0.72. The conformation number is a convenient instrument for indicating the degree of conformality by a single numerical value. Treatments with a conformation number greater than 0.60 might be termed conformal radiotherapy.
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            Volumetric modulated arc therapy: a review of current literature and clinical use in practice.

            Volumetric modulated arc therapy (VMAT) is a novel radiation technique, which can achieve highly conformal dose distributions with improved target volume coverage and sparing of normal tissues compared with conventional radiotherapy techniques. VMAT also has the potential to offer additional advantages, such as reduced treatment delivery time compared with conventional static field intensity modulated radiotherapy (IMRT). The clinical worldwide use of VMAT is increasing significantly. Currently the majority of published data on VMAT are limited to planning and feasibility studies, although there is emerging clinical outcome data in several tumour sites. This article aims to discuss the current use of VMAT techniques in practice and review the available data from planning and clinical outcome studies in various tumour sites including prostate, pelvis (lower gastrointestinal, gynaecological), head and neck, thoracic, central nervous system, breast and other tumour sites.
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              Is a single arc sufficient in volumetric-modulated arc therapy (VMAT) for complex-shaped target volumes?

              To compare step-and-shoot intensity-modulated radiotherapy (ss-IMRT) with volumetric-modulated arc therapy (VMAT) for complex-shaped target volumes with a simultaneous integrated boost (SIB). This retrospective planning study was based on 20 patients composed of prostate cancer (n=5), postoperative (n=5) or primary (n=5) radiotherapy for pharyngeal cancer and for cancer of the paranasal sinuses (n=5); a SIB with two or three dose levels was planned in all patients. For each patient, one ss-IMRT plan with direct-machine-parameter optimization (DMPO) and VMAT plans with one to three arcs (SmartArc technique) were generated in the Pinnacle planning system. Single arc VMAT improved target coverage and dose homogeneity in radiotherapy for prostate cancer. Two and three VMAT arcs were required to achieve equivalent results compared to ss-IMRT in postoperative and primary radiotherapy for pharyngeal cancer, respectively. In radiotherapy for cancer of the paranasal sinuses, multiarc VMAT resulted in increased spread of low doses to the lenses and decreased target coverage in the region between the orbits. The complexity of the target volume determined whether single arc VMAT was equivalent to ss-IMRT. Multiple arc VMAT improved results compared to single arc VMAT at cost of increased delivery times, increased monitor unites and increased spread of low doses.
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                Author and article information

                Contributors
                Role: Editor
                Journal
                PLoS One
                PLoS ONE
                plos
                plosone
                PLoS ONE
                Public Library of Science (San Francisco, CA USA )
                1932-6203
                14 October 2016
                2016
                : 11
                : 10
                : e0164616
                Affiliations
                [001]Department of Radiotherapy and Radiation Oncology, Saarland University Medical Centre, Kirrberger Str. Geb. 6.5, D-66421, Homburg/Saar, Germany
                Fu Jen Catholic University, TAIWAN
                Author notes

                Competing Interests: Our department is Siemens reference center and customer user test site (CUT-Site). The present study was carried out outside the scope of the CUT-Site and after any contract about mARC installation was terminated. No Siemens member had any participation or insight in this study.

                • Conceptualization: YD FN.

                • Data curation: KB.

                • Formal analysis: YD KB.

                • Investigation: KB.

                • Methodology: YD.

                • Project administration: YD NL CR.

                • Resources: JF NL CR.

                • Supervision: YD NL CR.

                • Validation: KB JF FN NL CR YD.

                • Visualization: KB.

                • Writing – original draft: KB.

                • Writing – review & editing: JF YD FN.

                Article
                PONE-D-16-07740
                10.1371/journal.pone.0164616
                5065169
                27741272
                5d94fed9-85e3-4df6-bcff-b8779444aa38
                © 2016 Bell et al

                This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 23 February 2016
                : 22 September 2016
                Page count
                Figures: 3, Tables: 5, Pages: 13
                Funding
                The authors received no specific funding for this work.
                Categories
                Research Article
                Biology and Life Sciences
                Biophysics
                Dosimetry
                Physical Sciences
                Physics
                Biophysics
                Dosimetry
                Biology and Life Sciences
                Anatomy
                Nervous System
                Neuroanatomy
                Spinal Cord
                Medicine and Health Sciences
                Anatomy
                Nervous System
                Neuroanatomy
                Spinal Cord
                Biology and Life Sciences
                Neuroscience
                Neuroanatomy
                Spinal Cord
                Medicine and Health Sciences
                Oncology
                Cancer Treatment
                Physical Sciences
                Mathematics
                Optimization
                Medicine and Health Sciences
                Oncology
                Cancers and Neoplasms
                Genitourinary Tract Tumors
                Prostate Cancer
                Medicine and Health Sciences
                Urology
                Prostate Diseases
                Prostate Cancer
                Biology and Life Sciences
                Anatomy
                Head
                Medicine and Health Sciences
                Anatomy
                Head
                Biology and Life Sciences
                Anatomy
                Neck
                Medicine and Health Sciences
                Anatomy
                Neck
                Medicine and Health Sciences
                Oncology
                Cancers and Neoplasms
                Carcinomas
                Custom metadata
                All relevant data are within the paper and its Supporting Information files.

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