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开发和评估动脉自旋标记数字参考对象,用于质量控制和数据分析应用的比较。

Development and evaluation of an arterial spin-labeling digital reference object for quality control and comparison of data analysis applications.

机构信息

Department of Medical Physics, University of Wisconsin School of Medicine and Public Health, 1111 Highland Avenue, Madison, WI 53705-2275, United States of America.

出版信息

Phys Med Biol. 2019 Jan 11;64(2):02NT01. doi: 10.1088/1361-6560/aaf83b.

Abstract

Longitudinal assessment of quantitative imaging biomarkers (QIBs) requires a comprehensive quality control (QC) program to minimize bias and variance in measurement results. In addition, the availability of data analysis software from multiple vendors emphasizes the need for a means of quantitatively comparing the computed QIB measures produced by the applications. The purpose of this work is to describe a digital reference object (DRO) that has been developed for the evaluation of arterial spin-labeling (ASL) measurement results. The ASL DRO is a synthetic data set consisting of 10  ×  10 voxel square blocks with a range of ASL control image signal-to-noise ratio (SNR), blood flow (BF), and proton density (PD) image SNR values (SNR:1-100, BF:10-210 ml/100 g min, SNR:10-100). A pseudo-continuous ASL sequence was simulated with acquisition parameters and modeled signal intensities defined according to those typically associated with clinically-acquired ASL images. ASL parameters were estimated using the commercially-available nordicICE software package (NordicNeuroLab, Inc, Milwaukee, WI). Percent bias measures and Bland-Altman analyses demonstrated decreased bias and variance with increasing SNR and BF values. Excellent agreement with reference values was seen for all BF values above an SNR of 5 (concordance correlation coefficient greater than 0.92 for all SNR values). The ASL DRO developed in this work allows for the evaluation of software bias and variance across physiologically-meaningful BF and SNR values. Such studies are essential to the transition of quantitative ASL-based BF measurements into widespread clinical research applications, and ultimately, routine clinical care.

摘要

定量成像生物标志物(QIBs)的纵向评估需要一个全面的质量控制(QC)程序,以最大程度地减少测量结果中的偏差和方差。此外,多个供应商提供数据分析软件,这强调了需要一种方法来定量比较应用程序计算得出的 QIB 测量值。本工作的目的是描述一种数字参考对象(DRO),该对象是为评估动脉自旋标记(ASL)测量结果而开发的。ASL DRO 是一个由 10×10 个体素正方形块组成的合成数据集,具有一系列 ASL 控制图像信噪比(SNR)、血流(BF)和质子密度(PD)图像 SNR 值(SNR:1-100,BF:10-210 ml/100 g min,SNR:10-100)。根据通常与临床获得的 ASL 图像相关联的采集参数和模拟信号强度,模拟了伪连续 ASL 序列。使用商业上可用的 nordicICE 软件包(NordicNeuroLab,Inc,Milwaukee,WI)估计 ASL 参数。偏倚测量和 Bland-Altman 分析表明,随着 SNR 和 BF 值的增加,偏倚和方差减小。对于 SNR 大于 5 的所有 BF 值,均观察到与参考值极好的一致性(所有 SNR 值的一致性相关系数均大于 0.92)。本工作中开发的 ASL DRO 允许在具有生理意义的 BF 和 SNR 值范围内评估软件偏差和方差。这些研究对于将基于定量 ASL 的 BF 测量值过渡到广泛的临床研究应用以及最终过渡到常规临床护理至关重要。

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