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IPEM Topical Report: An evidence and risk assessment based analysis of the efficacy of quality assurance tests on fluoroscopy units-part II; image quality.IPEM 专题报告:基于证据和风险评估的透视设备质量保证测试功效分析——第二部分;图像质量。
Phys Med Biol. 2020 Dec 5;65(22):225037. doi: 10.1088/1361-6560/abb92f.
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A novel quantitative measure of image quality in fluoroscopy.一种新型的透视图像质量定量测量方法。
Phys Med. 2020 Mar;71:150-160. doi: 10.1016/j.ejmp.2020.02.002. Epub 2020 Mar 6.
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Signal and contrast to noise ratio evaluation of fluoroscopic loops for interventional fluoroscope quality control.评估介入荧光透视术质量控制用透视环的信号与噪声比。
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The operation logic of automatic dose control of fluoroscopy system in conjunction with spectral shaping filters.透视系统自动剂量控制与光谱整形滤波器相结合的操作逻辑。
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Threshold contrast detail detectability curves for fluoroscopy and digital acquisition using modern image intensifier systems.使用现代影像增强器系统进行荧光透视和数字采集时的阈值对比度细节可探测性曲线。
Br J Radiol. 2004 Sep;77(921):751-8. doi: 10.1259/bjr/16707499.
7
Use of a quality index in threshold contrast detail detection measurements in television fluoroscopy.
Br J Radiol. 2003 Jul;76(907):464-72. doi: 10.1259/bjr/82965103.
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Analysis of variations in contrast-detail experiments.对比细节实验中的变异分析。
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A set of X-ray test objects for quality control in television fluoroscopy.一组用于电视荧光透视质量控制的X射线测试物体。
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TO.10 在平板探测器透视系统上的扩展细节对比。

Extended detail contrasts for TO.10 use on flat panel detector fluoroscopy systems.

机构信息

Mater Misericordiae University Hospital, Dublin, Ireland.

出版信息

Br J Radiol. 2021 Jun 1;94(1122):20201422. doi: 10.1259/bjr.20201422. Epub 2021 May 6.

DOI:10.1259/bjr.20201422
PMID:33956486
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8173690/
Abstract

OBJECTIVES

Leeds Test Object Ten (TO.10) is routinely used to subjectively estimate Threshold Contrast Detail Detectability (TCDD) as a measure of image quality in fluoroscopy. However, manufacturer guidance provides calibrated contrasts for only limited peak voltage and copper filtration thickness combinations. Prescribed testing conditions are often difficult to attain as modern flat panel fluoroscopic systems independently determine voltage and copper filtration thickness settings. This work aims to extend the range of TO.10 contrasts available for routine testing at peak voltage and copper thickness settings likely to be encountered.

METHODS

Two methods are described for generalising the calculation of target contrasts: a three-dimensional interpolation/extrapolation model in MATLAB, and a multivariate log-polynomial function. Both methods utilise the available calibrated contrasts to estimate contrasts at voltage and copper thickness combinations routinely encountered.

RESULTS

Results are presented as Threshold Detection Index [Formula: see text] curves fit by a second-order polynomial of log [Formula: see text] to log [Formula: see text] . Results are found to be more accurate at unprescribed conditions while also reproducible for relatively consistent input air kerma rate (IAKR) expected from automatic dose rate controls (ADRC).

CONCLUSIONS

The calculation of TO.10 contrasts at non-standard conditions aids in the determination of an absolute estimate of image quality in fluoroscopy with greater accuracy, reproducibility and efficiency.

ADVANCES IN KNOWLEDGE

TO.10 detail contrasts for TCDD testing of fluoroscopy units have been significantly extended beyond those previously available. The described methods will aid the clinical physicist in absolute assessments of fluoroscopic image quality and facilitate inter system comparisons.

摘要

目的

利兹测试对象十(TO.10)通常用于主观估计阈值对比细节可探测性(TCDD),作为透视图像质量的一种衡量标准。然而,制造商的指南仅为有限的峰值电压和铜过滤厚度组合提供校准对比度。由于现代平板透视系统独立确定电压和铜过滤厚度设置,因此规定的测试条件通常难以达到。这项工作旨在扩展 TO.10 对比度的范围,以便在可能遇到的峰值电压和铜厚度设置下进行常规测试。

方法

描述了两种用于推广目标对比度计算的方法:MATLAB 中的三维插值/外推模型和多元对数多项式函数。这两种方法都利用可用的校准对比度来估计在常规遇到的电压和铜厚度组合下的对比度。

结果

结果以阈值检测指数 [公式:见正文] 曲线呈现,该曲线由对数 [公式:见正文] 到对数 [公式:见正文] 的二阶多项式拟合。结果在非规定条件下更准确,同时对于自动剂量率控制(ADRC)预期的相对一致的输入空气比释动能率(IAKR)也具有可重复性。

结论

在非标准条件下计算 TO.10 对比度有助于更准确、可重复和高效地确定透视图像质量的绝对估计。

知识进展

透视单元 TCDD 测试的 TO.10 细节对比度已大大扩展,超出了以前的范围。所描述的方法将有助于临床物理学家对透视图像质量进行绝对评估,并促进系统间的比较。