首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Modeling noise properties of a high resolution CMOS detector for X-ray digital mammography
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Modeling noise properties of a high resolution CMOS detector for X-ray digital mammography

机译:用于X射线数字乳腺摄影的高分辨率CMOS检测器的噪声特性建模

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A theoretical model based on Linear Cascaded Systems (LCS) theory was developed in order to study the noise properties of a commercially available high resolution CMOS sensor (RadEye CMOS). The parameters studied were the Normalized Noise Power Spectrum (NNPS) and the Noise Transfer Function (NTF). The modeling was applied to digital mammography conditions. It considered the physical properties of the scintillator incorporated into RadEye CMOS as well as the probability of X-ray absorption directly in the photoreceptor. Furthermore it took into account the pixel pitch and the thickness of the photoreceptor. The model was compared with experimental results obtained from literature. The NTF curves were I good agreement with the experimentally determined. NNPS curves deviations were attributed to the effect of the digitization procedure as well as the non-linear behavior of CMOS detector.
机译:为了研究市售高分辨率CMOS传感器(RadEye CMOS)的噪声特性,建立了基于线性级联系统(LCS)理论的理论模型。研究的参数是归一化噪声功率谱(NNPS)和噪声传递函数(NTF)。该模型被应用于数字乳腺摄影条件。它考虑了结合到RadEye CMOS中的闪烁体的物理特性,以及直接在感光体中吸收X射线的可能性。此外,它考虑了像素间距和感光体的厚度。该模型与从文献中获得的实验结果进行了比较。 NTF曲线与实验确定的曲线非常吻合。 NNPS曲线的偏差归因于数字化程序的影响以及CMOS检测器的非线性行为。

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