A new registration algorithm of electronic portal imaging devices images based on the automatic detection of bone edges during radiotherapy

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作者
Cheng Chen
Chaoyan Wu
Yahua Zhong
Conghua Xie
Yunfeng Zhou
Hui Liu
Jun Zhang
Jiuling Sheng
Dazheng Jiang
Hongli Zhao
Haijun Yu
机构
[1] Zhongnan Hospital of Wuhan University,Department of Radiation and Medical Oncology, Hubei Province Cancer Clinical Study Center, Hubei Key Laboratory of Tumor Biological Behaviors
[2] Zhongnan Hospital of Wuhan University,Department of Traditional Chinese Medicine
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Scientific Reports | / 10卷
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摘要
The precision and efficiency of the registration of megavolt-level electronic portal imaging devices (EPID) images with the naked eye in the orthogonal window are reduced. This study aims to develop a new registration algorithm with enhanced accuracy and efficiency. Ten setup errors with different translation and rotation were simulated with the phantom. For each error, one set of simulated computer tomography images and EPID images were acquired and registered with the traditional and the new method. The traditional method was performed by two senior physicists with the Varian Offline Review software. The new method is basing on the comparison of the precise contours of the same bone structure in the digital reconstruction radiography images and the EPID images, and the contours were fitted with an automatic edge detection algorithm based on gradient images. The average error of the new method was decreased by 44.44%, 28.33%, 49.09% in the translation of X, Y, and Z axes (The traditional vs. the new: X axes, 0.45 mm vs. 0.25 mm; Y axes, 0.75 mm vs. 0.35 mm; Z axes, 0.55 mm vs. 0.28 mm), 42.86% and 40.48% in the rotation of X and Z axes (The traditional vs. the new: X axes, 0.49° vs. 0.28°; Z axes, 0.42° vs. 0.25°), respectively. The average elapsed time in the new method was reduced by 11.14% (The traditional vs. the new: 44 s vs. 39.1 s). The new registration method has significant advantages of accuracy and efficiency compared with the traditional method.
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  • [1] Olaciregui-Ruiz I(2020)The effect of the choice of patient model on the performance of in vivo 3D EPID dosimetry to detect variations in patient position and anatomy Med. Phys. 47 171-180
  • [2] Rozendaal R(2017)Technical note: Combination of multiple EPID imager layers improves image quality and tracking performance of low contrast-to-noise objects Med. Phys. 44 4847-4853
  • [3] van Kranen S(2017)Clinical implementation of a model-based in vivo dose verification system for stereotactic body radiation therapy-volumetric modulated arc therapy treatments using the electronic portal imaging device Int. J. Radiat. Oncol. Biol. Phys. 97 1077-1084
  • [4] Mijnheer B(2017)A novel method for quantification of beam's-eye-view tumor tracking performance Med. Phys. 44 5650-5659
  • [5] Mans A(2014)Initial clinical experience performing patient treatment verification with an electronic portal imaging device transit dosimeter Int. J. Radiat. Oncol. Biol. Phys. 88 204-209
  • [6] Yip SSF(2019)The effect of respiratory motion on electronic portal imaging device dosimetry J. Appl. Clin. Med. Phys. 20 45-55
  • [7] McCowan PM(2019)EPID-based in vivo dosimetry using dosimetry check: Overview and clinical experience in a 5-year study including breast, lung, prostate, and head and neck cancer patients J. Appl. Clin. Med. Phys. 20 6-16
  • [8] Hu YH(2019)Measurement of dose exposure of image guidance in external beam accelerated partial breast irradiation: Evaluation of different techniques and linear accelerators Phys. Med. 63 70-78
  • [9] Berry SL(2013)Radiation exposure to patients from image guidance procedures and techniques to reduce the imaging dose Radiother. Oncol. 108 91-98
  • [10] Fielding AL(2020)Organ dose measurements using an adult anthropomorphic phantom and risk estimation of cancer incidence from CBCT exposures Radiat. Phys. Chem. 171 108715-592