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用于医学成像的锥度光学电荷耦合器件(CCD);FReLoN相机的成像性能评估。

Evaluation of imaging performance of a taper optics CCD; FReLoN' camera designed for medical imaging.

作者信息

Coan Paola, Peterzol Angela, Fiedler Stefan, Ponchut Cyril, Labiche Jean Claude, Bravin Alberto

机构信息

European Synchrotron Radiation Facility, BP 220, 6 rue Horowitz, 38043 Grenoble CEDEX 9, France.

出版信息

J Synchrotron Radiat. 2006 May;13(Pt 3):260-70. doi: 10.1107/S0909049506008983. Epub 2006 Apr 13.

Abstract

The purpose of this work was to assess the imaging performance of an indirect conversion detector (taper optics CCD; FReLoN' camera) in terms of the modulation transfer function (MTF), normalized noise power spectrum (NNPS) and detective quantum efficiency (DQE). Measurements were made with a synchrotron radiation laminar beam at various monochromatic energies in the 20-51.5 keV range for a gadolinium-based fluorescent screen varying in thickness; data acquisition and analysis were made by adapting to this beam geometry protocols used for conventional cone beams. The pre-sampled MTFs of the systems were measured using an edge method. The NNPS of the systems were determined for a range of exposure levels by two-dimensional Fourier analysis of uniformly exposed radiographs. The DQEs were assessed from the measured MTF, NNPS, exposure and incoming number of photons. The MTF, for a given screen, was found to be almost energy independent and, for a given energy, higher for the thinnest screen. At 33 keV and for the 40 (100) microm screen, at 10% the MTF is 9.2 (8.6) line-pairs mm(-1). The NNPS was found to be different in the two analyzed directions in relation to frequency. Highest DQE values were found for the combination 100 microm and 25 keV (0.5); it was still equal to 0.4 at 51.5 keV (above the gadolinium K-edge). The DQE is limited by the phosphor screen conversion yield and by the CCD efficiency. At the end of the manuscript the results of the FReLoN characterization and those from a selected number of detectors presented in the literature are compared.

摘要

本研究旨在从调制传递函数(MTF)、归一化噪声功率谱(NNPS)和探测量子效率(DQE)方面评估间接转换探测器(锥形光学电荷耦合器件;FReLoN相机)的成像性能。使用同步辐射层流束在20 - 51.5 keV范围内的各种单色能量下,对不同厚度的钆基荧光屏进行测量;通过采用适用于传统锥形束的光束几何结构协议进行数据采集和分析。使用边缘法测量系统的预采样MTF。通过对均匀曝光的射线照片进行二维傅里叶分析,确定系统在一系列曝光水平下的NNPS。根据测量的MTF、NNPS、曝光量和入射光子数评估DQE。对于给定的荧光屏,MTF几乎与能量无关,对于给定的能量,最薄的荧光屏MTF更高。在33 keV时,对于40(100)μm的荧光屏,在10%时MTF为9.2(8.6)线对·mm⁻¹。发现NNPS在两个分析方向上与频率有关。对于100μm和25 keV(0.5)的组合,发现DQE值最高;在51.5 keV(高于钆的K边)时仍等于0.4。DQE受磷光屏转换效率和CCD效率的限制。在论文结尾,比较了FReLoN的表征结果和文献中选定的一些探测器的结果。

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