Suppr超能文献

用于监测深吸气屏气放射治疗(DIBH-RT)的飞行时间(ToF)成像系统的特性描述。

Characterisation of Time-of-Flight (ToF) imaging system for application in monitoring deep inspiration breath-hold radiotherapy (DIBH-RT).

机构信息

Advanced Medical & Dental Institute, Universiti Sains Malaysia, Bertam, 13200, Kepala Batas, Penang, Malaysia.

Department of Medical Radiography, University of Maiduguri, Maiduguri, Nigeria.

出版信息

Biomed Phys Eng Express. 2020 Nov 9;6(6). doi: 10.1088/2057-1976/abc635.

Abstract

The purpose of this study is to develop a method for characterisation of time-of-flight (ToF) imaging system for application in deep inspiration breath-hold radiotherapy (DIBH-RT). The performance of an Argos 3D P330 ToF camera (Bluetechnix, Austria) was studied for patient surface monitoring during DIBH-RT using a phantom to simulate the intra-patient and inter-patient stability of the camera. Patient setup error was also simulated by positioning the phantom at predefined shift positions (2, 5 and 10 mm) from the isocentre. The localisation accuracy of the phantom was measured using ToF imaging system and repeated using CBCT imaging alone (CBCT) and simultaneously using ToF imaging during CBCT imaging (ToF-CBCT). The mean and SD of the setup errors obtained from each of the imaging methods were calculated. Student t-test was used to compare the mean setup errors. Correlation and Bland-Altman analysis were also performed. The intra-and inter-patient stability of the camera were within 0.31 mm and 0.74 mm, respectively. The localisation accuracy in terms of the mean ±SD of the measured setup errors were 0.34 ± 0.98 mm, 0.12 ± 0.34 mm, and -0.24 ± 1.42 mm for ToF, CBCT and ToF-CBCT imaging, respectively. A strong correlation was seen between the phantom position and the measured position using ToF (r = 0.96), CBCT (r = 0.99) as well as ToF-CBCT (r = 0.92) imaging. The limits of agreement from Bland Altman analysis between the phantom position and ToF, CBCT and ToF-CBCT measured positions were -1.52, 2.31 mm, -0.55, 0.78 mm; and -3.03, 2.55 mm, respectively. The sensor shows good stability and high accuracy comparable to similar sensors in the market. The method developed is useful for characterisation of an optical surface imaging system for application in monitoring DIBH-RT.

摘要

本研究旨在开发一种适用于深吸气屏气放疗(DIBH-RT)的飞行时间(ToF)成像系统的特性描述方法。使用模拟患者内在和患者间稳定性的体模,研究了 Argos 3D P330 ToF 相机(Bluetechnix,奥地利)在 DIBH-RT 中用于患者表面监测的性能。还通过将体模定位在距等中心预设的偏移位置(2、5 和 10 mm)来模拟患者设置误差。使用 ToF 成像系统测量体模的定位精度,并单独使用锥形束 CT 成像(CBCT)(CBCT)和同时在 CBCT 成像期间使用 ToF 成像(ToF-CBCT)重复测量。计算了每种成像方法获得的设置误差的平均值和标准差。使用学生 t 检验比较平均设置误差。还进行了相关性和 Bland-Altman 分析。相机的内在和外在患者稳定性分别在 0.31 毫米和 0.74 毫米以内。以测量的设置误差的平均值 ±标准差表示,ToF、CBCT 和 ToF-CBCT 成像的定位精度分别为 0.34 ± 0.98 毫米、0.12 ± 0.34 毫米和-0.24 ± 1.42 毫米。ToF(r = 0.96)、CBCT(r = 0.99)和 ToF-CBCT(r = 0.92)成像中,体模位置与测量位置之间存在很强的相关性。Bland-Altman 分析中体模位置与 ToF、CBCT 和 ToF-CBCT 测量位置之间的一致性界限分别为-1.52、2.31 毫米、-0.55、0.78 毫米;和-3.03、2.55 毫米。传感器表现出良好的稳定性和与市场上类似传感器相当的高精度。所开发的方法对于用于监测 DIBH-RT 的光学表面成像系统的特性描述是有用的。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验