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对新开发的固态X射线图像增强器(SSXII)探测器的固有性能和系统整体性能进行评估。

Intrinsic and total system performance evaluation for a newly developed Solid State X-ray Image Intensifier (SSXII) detector.

作者信息

Singh V, Swetadri Vasan S N, Jain A, Sharma P, Bednarek D R, Rudin S

机构信息

Toshiba Stoke and Vascular Research Center, University at Buffalo (SUNY), Clinical Translational Research Center, 8 floor, 875 Elicott Street, Buffalo, NY 14203.

出版信息

Proc SPIE Int Soc Opt Eng. 2013 Mar 6;8668:86680K-. doi: 10.1117/12.2006451.

Abstract

The new Solid State X-ray Image Intensifier (SSXII) is a high-resolution, high-sensitivity, real-time region-of-interest (ROI) x-ray imaging detector. Evaluations were made of both standard linear systems metrics (MTF, DQE) and total system performance with generalized linear systems metrics (GMTF, GDQE) including scatter and geometric un-sharpness for simulated clinical conditions. The SSXII is based on a 1k × 1k EMCCD sensor coupled to a 300 µm thick CsI(Tl) phosphor through a 2.88:1 fiber optic taper resulting in a 37 µm effective pixel size and an effective 3.7 cm × 3.7 cm square field-of-view (FOV). Standard methods were used to calculate MTF, NNPS and DQE. Generalized metrics were calculated and compared for three different magnifications (1.03, 1.11 and 1.2) and three different focal spots (0.3 mm, 0.5 mm and 0.8 mm) for a scatter fraction of 0.28. For an RQA5 spectrum, at 5 cycles/mm the MTF was found to be 0.06 and DQE was 0.04, while the DQE(0) was 0.60. Focal spot un-sharpness and scatter significantly degrades the GMTF and GDQE performance of the detector. A low frequency drop is caused by scatter and is almost independent of focal spot size and magnification. The degradation for middle range frequencies is caused by geometric un-sharpness and increases with focal spot size and magnification. This degradation was least in the case of the small focal spot and almost independent of magnification. In spite of this degradation, the high resolution SSXII with a small FOV may have a significant impact on ROI image-guided neuro-interventions since it demonstrates far better performance than standard current detectors.

摘要

新型固态X射线图像增强器(SSXII)是一种高分辨率、高灵敏度、实时感兴趣区域(ROI)X射线成像探测器。针对模拟临床条件,对标准线性系统指标(调制传递函数、量子探测效率)以及包含散射和几何模糊的广义线性系统指标(广义调制传递函数、广义量子探测效率)进行了全系统性能评估。SSXII基于一个1k×1k的电子倍增电荷耦合器件(EMCCD)传感器,通过2.88:1的光纤锥与一个300μm厚的碘化铯(铊)磷光体耦合,从而得到37μm的有效像素尺寸和3.7cm×3.7cm的有效方形视场(FOV)。采用标准方法计算调制传递函数、噪声功率谱和量子探测效率。针对0.28的散射分数,计算并比较了三种不同放大倍数(1.03、1.11和1.2)以及三种不同焦点尺寸(0.3mm、0.5mm和0.8mm)下的广义指标。对于RQA5光谱,在5线对/mm时,调制传递函数为0.06,量子探测效率为0.04,而DQE(0)为0.60。焦点模糊和散射会显著降低探测器的广义调制传递函数和广义量子探测效率性能。低频下降是由散射引起的,几乎与焦点尺寸和放大倍数无关。中频段频率的下降是由几何模糊引起的,并且随着焦点尺寸和放大倍数的增加而增大。这种下降在小焦点情况下最小,并且几乎与放大倍数无关。尽管存在这种下降,但具有小视场的高分辨率SSXII可能会对ROI图像引导的神经介入产生重大影响,因为它的性能远优于当前的标准探测器。

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