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用于数字乳腺摄影的高分辨率成像仪:原型传感器的物理特性

High-resolution imager for digital mammography: physical characterization of a prototype sensor.

作者信息

Suryanarayanan Sankararaman, Karellas Andrew, Vedantham Srinivasan, Onishi Steven K

机构信息

Emory University School of Medicine, Department of Radiology and Winship Cancer Institute, Atlanta, GA 30322, USA.

出版信息

Phys Med Biol. 2005 Sep 7;50(17):3957-69. doi: 10.1088/0031-9155/50/17/003. Epub 2005 Aug 11.

Abstract

The physical performance characteristics of a high-resolution sensor module for digital mammography were investigated. The signal response of the imager was measured at various detector entrance air kerma and was found to be linear. The spatial resolution was determined by measuring the presampling modulation transfer function, MTF(f), of the system. The noise power spectra, NPS(f), of the system were estimated using 26 kVp: Mo/Mo, 28 kVp: Mo/Rh and 30 kVp: Rh/Rh, with polymethyl methacrylate (PMMA) 'tissue equivalent material' of thickness 20, 45 and 57 mm for each of three x-ray spectra at detector entrance air kerma in the range between approximately 80.2 and 92.3 microGy. The noise equivalent quanta, NEQ(f), and detective quantum efficiencies, DQE(f), for the various spectral conditions were computed. In addition, dose dependence of NPS(f) and DQE(f) was studied at various detector entrance air kerma ranging from 9.4 to 169.7 microGy. A spatial resolution of about 10 cycles mm(-1) was obtained at the 10% MTF(f) level. A small increase in NEQ(f)was observed under higher energy spectral conditions while the DQE(f) decreased marginally. For a given spectrum, increasing PMMA filtration produced negligible change in DQE(f). The estimated DQE values at zero frequency were in the range between 0.45 and 0.55 under the conditions investigated in this study.

摘要

对用于数字乳腺摄影的高分辨率传感器模块的物理性能特征进行了研究。在不同的探测器入口空气比释动能下测量了成像器的信号响应,发现其呈线性。通过测量系统的预采样调制传递函数MTF(f)来确定空间分辨率。使用26 kVp:钼/钼、28 kVp:钼/铑和30 kVp:铑/铑,在探测器入口空气比释动能约为80.2至92.3微戈瑞的范围内,针对三种X射线光谱中的每一种,分别使用厚度为20、45和57毫米的聚甲基丙烯酸甲酯(PMMA)“组织等效材料”,估计了系统的噪声功率谱NPS(f)。计算了各种光谱条件下的噪声等效量子NEQ(f)和探测量子效率DQE(f)。此外,在9.4至169.7微戈瑞的不同探测器入口空气比释动能下,研究了NPS(f)和DQE(f)的剂量依赖性。在10% MTF(f)水平下获得了约10线对毫米⁻¹的空间分辨率。在较高能谱条件下观察到NEQ(f)略有增加,而DQE(f)略有下降。对于给定的光谱,增加PMMA滤过在DQE(f)方面产生的变化可忽略不计。在本研究调查的条件下,零频率处估计的DQE值在0.45至0.55范围内。

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