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Vol. 34, No. 8(3), S&M3042

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Vol. 32, No. 8(2), S&M2292

Print: ISSN 0914-4935
Online: ISSN 2435-0869
Sensors and Materials
is an international peer-reviewed open access journal to provide a forum for researchers working in multidisciplinary fields of sensing technology.
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Sensors and Materials, Volume 32, Number 4(2) (2020)
Copyright(C) MYU K.K.
pp. 1479-1487
S&M2195 Research Paper of Special Issue
https://doi.org/10.18494/SAM.2020.2698
Published: April 20, 2020

Two-dimensional Thermoluminescence Dosimetry Using Al2O3:Cr Ceramics for 4, 6, and 10 MV X-ray Beams [PDF]

Shin Yanagisawa, Daiki Maruyama, Ryoken Oh, Yusuke Koba, Takayuki Andoh, and Kiyomitsu Shinsho

(Received November 5, 2019; Accepted February 4, 2020)

Keywords: radiotherapy, quality assurance, ceramic, dose distribution, 2D, passive dosimetry

Despite their advantages, two-dimensional (2D) thermoluminescence dosimeters (TLDs) have not yet replaced film dosimeters owing to their nonuniformity and low repeatability. A2D TLD based on Al2O3:Cr ceramics is a promising new reusable passive dosimeter. 2D Al2O3:Cr TLDs can be used for geometry check tests and dose distribution verification in robotic radiosurgery using monoenergetic X-ray beams. In this work, the dependence of energy on the field size and water depth of 2D Al2O3:Cr TLDs for 4, 6, and 10 MV X-ray beams was investigated, because multienergy X-ray beams are used in radiotherapy. An intensity-modulated radiotherapy (IMRT) plan verifications were performed using the TLDs. The TLDs were found to have a large field size dependence for each energy, but their water depth dependence was small at a water depth above 4 cm for each energy. The relative dose distributions were verified with high accuracy using the TLDs.

Corresponding author: Shin Yanagisawa


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Cite this article
Shin Yanagisawa, Daiki Maruyama, Ryoken Oh, Yusuke Koba, Takayuki Andoh, and Kiyomitsu Shinsho, Two-dimensional Thermoluminescence Dosimetry Using Al2O3:Cr Ceramics for 4, 6, and 10 MV X-ray Beams, Sens. Mater., Vol. 32, No. 4, 2020, p. 1479-1487.



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