Publication
Title
An assessment of the use of skin flashes in helical tomotherapy using phantom and in-vivo dosimetry
Author
Abstract
Background and purpose: In helical tomotherapy the nature of the optimizing and planning systems allows the delivery of dose on the skin using a build-up compensating technique (skin flash). However, positioning errors or changes in the patient's contour can influence the correct dosage in these regions. This work studies the behavior of skin-flash regions using phantom and in-vivo dosimetry. Materials and methods: The dosimetric accuracy of the tomotherapy planning system in skin-flash regions is checked using film and TLD on phantom. Positioning errors are induced and the effect on the skin dose is investigated. Further a volume decrease is simulated using bolus material and the results are compared. Results: Results show that the tomotherapy planning system calculates dose on skin regions within 2 SD using TO measurements. Film measurements show drops of dose of 2.8% and 26% for, respectively, a 5 mm and 10 mm mispositioning of the phantom towards air and a dose increase of 9% for a 5 mm shift towards tissue. These measurements are confirmed by TLD measurements. A simulated volume reduction shows a similar behavior with a 2.6% and 19.4% drop in dose, measured with TLDs. Conclusion: The tomotherapy system allows adequate planning and delivery of dose using skin flashes. However, exact positioning is crucial to deliver the dose at the exact location. (c) 2007 Elsevier Ireland Ltd. All rights reserved.
Language
English
Source (journal)
Radiotherapy and oncology. - Amsterdam
Publication
Amsterdam : 2007
ISSN
0167-8140
DOI
10.1016/J.RADONC.2007.06.003
Volume/pages
84 :1 (2007) , p. 34-39
ISI
000248462600007
Full text (Publisher's DOI)
UAntwerpen
Publication type
Subject
External links
Web of Science
Record
Identifier
Creation 04.12.2019
Last edited 20.08.2024
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