热光学相机系统在乳腺放射治疗中基于表面引导的定位和表面跟踪的准确性。

IF 2 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Hiroki Katayama, Yosuke Takahashi, Motonori Kitaoka, Hiroki Kawasaki, Takashi Tanii, Yayoi Taniguchi, Masato Tsuzuki
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引用次数: 0

摘要

本研究旨在评估使用ExacTrac Dynamic (ETD)在乳房放射治疗中基于表面引导放疗(SGRT)的定位和表面跟踪的准确性。我们回顾性评估了16例接受乳腺癌治疗的患者。所有患者在自由呼吸条件下使用SGRT和ETD定位。然后利用线性加速器的千伏成像仪获取正交千伏图像,并配准到数字重建的x线照片上。为了进行表面跟踪,将ETD获得的乳房垂直表面运动波形与电子束传输过程中使用电子门静脉成像设备(EPID)捕获的波形进行比较。ETD和EPID在乳房垂直表面位移方面的一致性使用相互关联系数进行评估。对于患者体位,x线移位值(mm)的平均值±标准差(SD)为- 2.8±2.6(垂直),- 2.2±4.5(纵向)和0.3±2.1(侧向)。x射线位移的百分比
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accuracy of surface-guided radiotherapy-based positioning and surface tracking in breast radiotherapy using a thermo-optical camera system.

This study aimed to evaluate the accuracy of surface-guided radiotherapy (SGRT)-based positioning and surface tracking in breast radiotherapy using the ExacTrac Dynamic (ETD). We retrospectively evaluated 16 patients who underwent breast cancer treatment. All patients were positioned using SGRT with ETD under free-breathing conditions. Orthogonal kilovoltage (kV) image acquisition was then acquired using the linear accelerators' kV imagers and registered to digitally reconstructed radiographs. For surface tracking, vertical breast surface motion waveforms obtained with ETD were compared with those captured using an electronic portal imaging device (EPID) during beam delivery. The agreement between ETD and EPID in terms of vertical breast surface displacement was evaluated using the cross-correlation coefficient. For patient positioning, the mean ± standard deviation (SD) of X-ray shift values (mm) were - 2.8 ± 2.6 (vertical), - 2.2 ± 4.5 (longitudinal), and 0.3 ± 2.1(lateral). The percentage of X-ray shift < 5 mm was 82% (vertical), 66% (longitudinal), and 92% (lateral). The setup margins (mm) were 5.4 (vertical), 9.0 (longitudinal), and 3.8 (lateral). For surface tracking, the mean ± SD of the cross-correlation coefficient was 0.93 ± 0.02, indicating a high correlation between the ETD and EPID waveforms. The mean amplitude difference between waveforms obtained by ETD and EPID was 0.46 mm. SGRT-based positioning with ETD may result in errors exceeding 5 mm relative to the treatment planning position in the longitudinal direction; combining it with image-guided radiotherapy is therefore recommended. Surface tracking with ETD demonstrated high tracking accuracy in tracking human body surface temperature distribution.

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来源期刊
CiteScore
8.40
自引率
4.50%
发文量
110
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