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J Digit Imaging. 2006 Dec;19(4):362-70. doi: 10.1007/s10278-006-0634-4.
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本文引用的文献

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An experimental comparison of detector performance for computed radiography systems.计算机X线摄影系统探测器性能的实验比较
Med Phys. 2002 Apr;29(4):447-59. doi: 10.1118/1.1449873.
2
Imaging characteristics of an amorphous silicon flat-panel detector for digital chest radiography.用于数字胸部X线摄影的非晶硅平板探测器的成像特性
Radiology. 2001 Mar;218(3):683-8. doi: 10.1148/radiology.218.3.r01fe45683.
3
Performance of a 41X41-cm2 amorphous silicon flat panel x-ray detector for radiographic imaging applications.用于射线成像应用的41×41平方厘米非晶硅平板X射线探测器的性能
Med Phys. 2000 Jun;27(6):1324-31. doi: 10.1118/1.599010.
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A comprehensive physical image quality evaluation of a selenium based digital x-ray imaging system for thorax radiography.
Med Phys. 1998 Jun;25(6):986-97. doi: 10.1118/1.598276.
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A method for measuring the presampled MTF of digital radiographic systems using an edge test device.一种使用边缘测试设备测量数字射线照相系统预采样调制传递函数的方法。
Med Phys. 1998 Jan;25(1):102-13. doi: 10.1118/1.598165.
6
Digital radiology using active matrix readout of amorphous selenium: construction and evaluation of a prototype real-time detector.采用非晶态硒有源矩阵读出的数字放射学:一种原型实时探测器的构建与评估
Med Phys. 1997 Dec;24(12):1834-43. doi: 10.1118/1.598098.
7
Empirical and theoretical investigation of the noise performance of indirect detection, active matrix flat-panel imagers (AMFPIs) for diagnostic radiology.用于放射诊断的间接探测有源矩阵平板成像器(AMFPI)噪声性能的实证与理论研究。
Med Phys. 1997 Jan;24(1):71-89. doi: 10.1118/1.597919.
8
X-ray detectors for digital radiography.用于数字射线照相术的X射线探测器。
Phys Med Biol. 1997 Jan;42(1):1-39. doi: 10.1088/0031-9155/42/1/001.
9
Basic imaging properties of a computed radiographic system with photostimulable phosphors.具有光激励磷光体的计算机射线摄影系统的基本成像特性。
Med Phys. 1989 Jan-Feb;16(1):52-9. doi: 10.1118/1.596402.

平板探测器在直接和间接系统中的性能实验比较(初步经验与物理评估)

An experimental comparison of flat-panel detector performance for direct and indirect systems (initial experiences and physical evaluation).

作者信息

Gomi Tsutomu, Koshida Kichirou, Miyati Tosiaki, Miyagawa Jun, Hirano Hiroshi

机构信息

Department of Radiology, Shinshu University Hospital, 3-1-1 Matsumoto, Nagano, 390-8621, Japan.

出版信息

J Digit Imaging. 2006 Dec;19(4):362-70. doi: 10.1007/s10278-006-0634-4.

DOI:10.1007/s10278-006-0634-4
PMID:16763929
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3045156/
Abstract

The purpose of this work was to compare direct and indirect detectors in terms of their system linearity, presampled modulation transfer function (MTF), Wiener spectrum (WS), noise equivalent quanta (NEQ), and power spectrum. Measurements were made on two flat-panel detectors, GE Revolution XR/d (indirect) and Shimadzu Safire (direct) radiographic techniques. The system linearity of the systems was measured using a time-scale method. The MTF of the systems was measured using an edge method. The WS of the systems was determined for a variable range of exposure levels by two-dimensional Fourier analysis. The NEQ was assessed from the measured MTF, WS, and estimated ideal signal-to-noise ratios. Power spectrum analyzed the chest phantom within artificial lesions. System linearity was excellent for the direct systems. For the direct system, the MTF was found to be significantly higher than that for the indirect systems. For the direct system, the WS was relatively uniform across all frequencies. In comparison, the indirect system exhibited a drop in the WS at high frequencies. At lower frequencies, the NEQ for the indirect system was noticeably higher than for the direct system. Power spectrum for the direct system was relatively flat and similar to that for white noise. The indirect system exhibited significant reduction at high spatial frequencies. In general, the direct systems exhibit improved image quality over indirect systems at comparable exposure dose.

摘要

这项工作的目的是在系统线性、预采样调制传递函数(MTF)、维纳频谱(WS)、噪声等效量子(NEQ)和功率谱方面比较直接探测器和间接探测器。对两种平板探测器进行了测量,即GE Revolution XR/d(间接)和岛津Safire(直接)射线照相技术。使用时间尺度法测量系统的系统线性。使用边缘法测量系统的MTF。通过二维傅里叶分析确定系统在可变曝光水平范围内的WS。根据测量的MTF、WS和估计的理想信噪比评估NEQ。功率谱分析了人工病变内的胸部体模。直接系统的系统线性非常好。对于直接系统,发现MTF明显高于间接系统。对于直接系统,WS在所有频率上相对均匀。相比之下,间接系统在高频时WS出现下降。在较低频率下,间接系统的NEQ明显高于直接系统。直接系统的功率谱相对平坦,与白噪声的功率谱相似。间接系统在高空间频率处表现出显著降低。总体而言,在可比的曝光剂量下,直接系统比间接系统表现出更好的图像质量。