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

Author:

Chen Cheng,Wu Chaoyan,Zhong Yahua,Xie Conghua,Zhou Yunfeng,Liu Hui,Zhang Jun,Sheng Jiuling,Jiang Dazheng,Zhao Hongli,Yu Haijun

Abstract

AbstractThe 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.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hubei Province

Zhongnan Hospital of Wuhan University, Science, Technology and Innovation Seed Fund

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A grayscale compression method to segment bone structures for 2D-3D registration of setup images in non-coplanar radiotherapy;Biomedical Physics & Engineering Express;2024-03-19

2. Impact of Cold Weather on Setup Errors in Radiotherapy;Journal of Healthcare Engineering;2021-11-11

3. Registration between MVCT reconstructed from EPID and kVCT;2021 6th International Conference on Multimedia and Image Processing;2021-01-08

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