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本文引用的文献

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Proc SPIE Int Soc Opt Eng. 2015 Feb;9412. doi: 10.1117/12.2082014. Epub 2015 Mar 18.
2
Relative object detectability (ROD): a new metric for comparing x-ray image detector performance for a specified object of interest.相对物体可检测性(ROD):一种用于比较针对特定感兴趣物体的X射线图像探测器性能的新指标。
Proc SPIE Int Soc Opt Eng. 2014 Mar 19;9033:90335I. doi: 10.1117/12.2043504.
3
Experimental and theoretical performance analysis for a CMOS-based high resolution image detector.基于CMOS的高分辨率图像探测器的实验与理论性能分析
Proc SPIE Int Soc Opt Eng. 2014 Mar 19;9033:90333P. doi: 10.1117/12.2043053.
4
Design considerations for a new, high resolution Micro-Angiographic Fluoroscope based on a CMOS sensor (MAF-CMOS).基于CMOS传感器的新型高分辨率微血管造影荧光镜(MAF-CMOS)的设计考量。
Proc SPIE Int Soc Opt Eng. 2013 Mar 6;8668:866806-. doi: 10.1117/12.2006430.
5
Enhanced detection efficiency of direct conversion X-ray detector using polyimide as hole-blocking layer.使用聚酰亚胺作为空穴阻挡层提高直接转换X射线探测器的探测效率。
Sci Rep. 2013 Nov 28;3:3360. doi: 10.1038/srep03360.
6
A theoretical and experimental evaluation of the microangiographic fluoroscope: A high-resolution region-of-interest x-ray imager.理论和实验评估微血管荧光透视仪:高分辨率感兴趣区域 X 射线成像仪。
Med Phys. 2011 Jul;38(7):4112-26. doi: 10.1118/1.3599751.
7
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Proc SPIE Int Soc Opt Eng. 2004 May 6;5368:349-360. doi: 10.1117/12.533512.
8
Accurate MTF measurement in digital radiography using noise response.利用噪声响应进行数字 X 射线摄影中的精确调制传递函数测量。
Med Phys. 2010 Feb;37(2):724-35. doi: 10.1118/1.3284376.
9
Endovascular image-guided interventions (EIGIs).血管内影像引导介入治疗(EIGIs)。
Med Phys. 2008 Jan;35(1):301-9. doi: 10.1118/1.2821702.
10
Generalizing the MTF and DQE to include x-ray scatter and focal spot unsharpness: application to a new microangiographic system.将调制传递函数(MTF)和量子探测效率(DQE)进行推广,以纳入X射线散射和焦点模糊:应用于一种新型微血管造影系统。
Med Phys. 2005 Feb;32(2):613-26. doi: 10.1118/1.1844151.

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).

作者信息

Russ M, Shankar A, Jain A, Setlur Nagesh S V, Ionita C N, Scott C, Karim K S, Bednarek D R, Rudin S

机构信息

Toshiba Stroke and Vascular Research Center, University at Buffalo, Buffalo, NY.

Electrical and Computer Engineering, University of Waterloo, Waterloo, ON.

出版信息

Proc SPIE Int Soc Opt Eng. 2016 Feb 27;9783. doi: 10.1117/12.2216733. Epub 2016 Mar 22.

DOI:10.1117/12.2216733
PMID:28615795
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5467733/
Abstract

A novel amorphous selenium (a-Se) direct detector with CMOS readout has been designed, and relative detector performance investigated. The detector features include a 25m pixel pitch, and 1000m thick a-Se layer operating at 10V/m 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 fluoroscopic (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.

摘要