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直接转换平板探测器系统在高剂量率 Ir 源成像和质量保证中的性能评估。

Performance evaluation of a direct-conversion flat-panel detector system in imaging and quality assurance for a high-dose-rate Ir source.

机构信息

Department of Radiology, Shimane University Hospital, 89-1 Enya, Izumo, Shimane, Japan.

出版信息

Phys Med Biol. 2018 Mar 8;63(5):055017. doi: 10.1088/1361-6560/aaae18.

Abstract

In high-dose-rate (HDR) brachytherapy, a direct-conversion flat-panel detector (d-FPD) clearly depicts a Ir source without image halation, even under the emission of high-energy gamma rays. However, it was unknown why iridium is visible when using a d-FPD. The purpose of this study was to clarify the reasons for visibility of the source core based on physical imaging characteristics, including the modulation transfer functions (MTF), noise power spectral (NPS), contrast transfer functions, and linearity of d-FPD to high-energy gamma rays. The acquired data included: x-rays, [X]; gamma rays, [γ]; dual rays (X  +  γ), [D], and subtracted data for depicting the source ([D]  -  [γ]). In the quality assurance (QA) test for the positional accuracy of a source core, the coordinates of each dwelling point were compared between the planned and actual source core positions using a CT/MR-compatible ovoid applicator and a Fletcher-Williamson applicator. The profile curves of [X] and ([D]  -  [γ]) matched well on MTF and NPS. The contrast resolutions of [D] and [X] were equivalent. A strongly positive linear correlation was found between the output data of [γ] and source strength (r   >  0.99). With regard to the accuracy of the source core position, the largest coordinate difference (3D distance) was noted at the maximum curvature of the CT/MR-compatible ovoid and Fletcher-Williamson applicators, showing 1.74  ±  0.02 mm and 1.01  ±  0.01 mm, respectively. A d-FPD system provides high-quality images of a source, even when high-energy gamma rays are emitted to the detector, and positional accuracy tests with clinical applicators are useful in identifying source positions (source movements) within the applicator for QA.

摘要

在高剂量率(HDR)近距离放射治疗中,直接转换平板探测器(d-FPD)即使在发射高能伽马射线的情况下,也能清晰地描绘出 Ir 源,且没有图像晕影。然而,使用 d-FPD 时为什么 Ir 是可见的,这一点尚不清楚。本研究的目的是基于物理成像特性,包括调制传递函数(MTF)、噪声功率谱(NPS)、对比度传递函数以及 d-FPD 对高能伽马射线的线性度,阐明源芯可见的原因。获得的数据包括:X 射线,[X];伽马射线,[γ];双射线(X + γ),[D],以及用于描绘源的减去数据([D] - [γ])。在源芯位置的质量保证(QA)测试中,使用 CT/MR 兼容的卵形施源器和 Fletcher-Williamson 施源器,比较了每个驻留点的计划和实际源芯位置的坐标。MTF 和 NPS 上的 [X] 和 ([D] - [γ]) 曲线吻合良好。[D]和[X]的对比度分辨率相当。[γ]的输出数据与源强度之间存在很强的正线性相关性(r>0.99)。关于源芯位置的准确性,在 CT/MR 兼容的卵形和 Fletcher-Williamson 施源器的最大曲率处,观察到最大的坐标差异(3D 距离),分别为 1.74±0.02mm 和 1.01±0.01mm。d-FPD 系统即使向探测器发射高能伽马射线,也能提供高质量的源图像,并且使用临床施源器进行的位置准确性测试有助于识别施源器内的源位置(源运动),以进行 QA。

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