首页> 外文会议>Conference on physics of medical imaging >Quantitative comparison using Generalized Relative Object Detectability (G-ROD) metrics of an amorphous selenium detector with high resolution Microangiographic Fluoroscopes (MAF) and standard flat panel detectors (FPD)
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Quantitative comparison using Generalized Relative Object Detectability (G-ROD) metrics of an amorphous selenium detector with high resolution Microangiographic Fluoroscopes (MAF) and standard flat panel detectors (FPD)

机译:使用具有高分辨率微血管造影荧光镜(MAF)和标准平板探测器(FPD)的非晶态硒探测器的广义相对目标可检测性(G-ROD)指标进行定量比较

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A novel amorphous selenium (a-Se) direct detector with CMOS readout has been designed, and relative detector performance investigated. The detector features include a 25μm pixel pitch, and 1000μm thick a-Se layer operating at 10V/μm bias field. A simulated detector DQE was determined, and used in comparative calculations of the Relative Object Detectability (ROD) family of prewhitening matched-filter (PWMF) observer and non-prewhitening matched filter (NPWMF) observer model metrics to gauge a-Se detector performance against existing high resolution micro-angiographic fiuoroscopic (MAF) detectors and a standard flat panel detector (FPD). The PWMF-ROD or ROD metric compares two x-ray imaging detectors in their relative abilities in imaging a given object by taking the integral over spatial frequencies of the Fourier transform of the detector DQE weighted by an object function, divided by the comparable integral for a different detector. The generalized-ROD (G-ROD) metric incorporates clinically relevant parameters (focal-spot size, magnification, and scatter) to show the degradation in imaging performance for detectors that are part of an imaging chain. Preliminary ROD calculations using simulated spheres as the object predicted superior imaging performance by the a-Se detector as compared to existing detectors. New PWMF-G-ROD and NPWMF-G-ROD results still indicate better performance by the a-Se detector in an imaging chain over all sphere sizes for various focal spot sizes and magnifications, although a-Se performance advantages were degraded by focal spot blurring. Nevertheless, the a-Se technology has great potential to provide breakthrough abilities such as visualization of fine details including of neuro-vascular perforator vessels and of small vascular devices.
机译:设计了一种新颖的具有CMOS读出功能的非晶硒(a-Se)直接探测器,并研究了其相对探测器性能。该探测器的特征包括25μm的像素间距和1000μm厚的a-Se层,其偏置电场为10V /μm。确定了模拟检测器DQE,并将其用于相对白化匹配滤波器(PWMF)观测器和非预白化匹配滤波器(NPWMF)观测器模型指标的相对对象可检测性(ROD)系列的比较计算中,以针对a-Se检测器性能进行评估现有的高分辨率微血管造影(MAF)检测器和标准平板检测器(FPD)。 PWMF-ROD或ROD度量标准通过将检测器DQE的傅立叶变换的空间频率上的积分乘以对象函数加权后除以可比积分,比较两个X射线成像检测器对给定对象成像的相对能力。一个不同的探测器。通用ROD(G-ROD)度量标准结合了临床相关参数(焦点尺寸,放大倍数和散点),以显示作为成像链一部分的探测器的成像性能下降。使用模拟球体作为对象的初步ROD计算预测,与现有探测器相比,a-Se探测器具有更好的成像性能。新的PWMF-G-ROD和NPWMF-G-ROD结果仍然表明,对于各种焦斑大小和放大倍数,a-Se检测器在成像链上的所有球体尺寸上均具有更好的性能,尽管焦距会降低a-Se的性能优势模糊。然而,a-Se技术具有提供突破性功能的巨大潜力,例如可视化包括神经血管穿支血管和小型血管装置在内的精细细节。

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