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The effect of amorphous selenium detector thickness on dual-energy digital breast imaging

机译:非晶硒探测器厚度对双能数字乳腺成像的影响

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摘要

Purpose:Contrast enhanced (CE) imaging techniques for both planar digital mammography (DM) and three-dimensional (3D) digital breast tomosynthesis (DBT) applications requires x-ray photon energies higher than the k-edge of iodine (33.2 keV). As a result, x-ray tube potentials much higher (>40 kVp) than those typical for screening mammography must be utilized. Amorphous selenium (a-Se) based direct conversion flat-panel imagers (FPI) have been widely used in DM and DBT imaging systems. The a-Se layer is typically 200 μm thick with quantum detective efficiency (QDE) >87% for x-ray energies below 26 keV. However, QDE decreases substantially above this energy. To improve the object detectability of either CE-DM or CE-DBT, it may be advantageous to increase the thickness (dSe) of the a-Se layer. Increasing the dSe will improve the detective quantum efficiency (DQE) at the higher energies used in CE imaging. However, because most DBT systems are designed with partially isocentric geometries, where the gantry moves about a stationary detector, the oblique entry of x-rays will introduce additional blur to the system. The present investigation quantifies the effect of a-Se thickness on imaging performance for both CE-DM and CE-DBT, discussing the effects of improving photon absorption and blurring from oblique entry of x-rays.
机译:目的:用于平面数字乳房X线照相术(DM)和三维(3D)数字乳房断层合成(DBT)应用的对比度增强(CE)成像技术要求X射线光子能量高于碘的k边缘(33.2 keV)。结果,必须利用比用于筛查乳房X线照相术的X射线管电势高得多的X射线管电势(> 40 kVp)。基于非晶硒(a-Se)的直接转换平板成像仪(FPI)已被广泛用于DM和DBT成像系统中。对于低于26 keV的X射线能量,a-Se层通常为200μm厚,量子探测效率(QDE)> 87%。但是,QDE在此能量之上大大降低。为了提高CE-DM或CE-DBT的物体可检测性,增加a-Se层的厚度(dSe)可能是有利的。 dSe的增加将提高在CE成像中使用的较高能量下的探测量子效率(DQE)。但是,由于大多数DBT系统都设计为具有部分等中心的几何形状,其中机架围绕固定检测器移动,因此X射线的倾斜入射会给系统带来额外的模糊。本研究量化了CE-DM和CE-DBT的a-Se厚度对成像性能的影响,讨论了改善光子吸收和因X射线斜入射而模糊的影响。

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