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一种基于人群的数字参考对象(DRO),用于优化用于临床试验的动态磁敏感对比(DSC)-MRI方法。

A Population-Based Digital Reference Object (DRO) for Optimizing Dynamic Susceptibility Contrast (DSC)-MRI Methods for Clinical Trials.

作者信息

Semmineh Natenael B, Stokes Ashley M, Bell Laura C, Boxerman Jerrold L, Quarles C Chad

机构信息

Department of Imaging Research, Barrow Neurological Institute, Phoenix, Arizona.

Department of Diagnostic Imaging, RI Hospital and Alpert Medical School of Brown University, Providence, Rhode Island.

出版信息

Tomography. 2017 Mar;3(1):41-49. doi: 10.18383/j.tom.2016.00286.

Abstract

The standardization and broad-scale integration of dynamic susceptibility contrast (DSC)-magnetic resonance imaging (MRI) have been confounded by a lack of consensus on DSC-MRI methodology for preventing potential relative cerebral blood volume inaccuracies, including the choice of acquisition protocols and postprocessing algorithms. Therefore, we developed a digital reference object (DRO), using physiological and kinetic parameters derived from in vivo data, unique voxel-wise 3-dimensional tissue structures, and a validated MRI signal computational approach, aimed at validating image acquisition and analysis methods for accurately measuring relative cerebral blood volume in glioblastomas. To achieve DSC-MRI signals representative of the temporal characteristics, magnitude, and distribution of contrast agent-induced T and changes observed across multiple glioblastomas, the DRO's input parameters were trained using DSC-MRI data from 23 glioblastomas (>40 000 voxels). The DRO's ability to produce reliable signals for combinations of pulse sequence parameters and contrast agent dosing schemes unlike those in the training data set was validated by comparison with in vivo dual-echo DSC-MRI data acquired in a separate cohort of patients with glioblastomas. Representative applications of the DRO are presented, including the selection of DSC-MRI acquisition and postprocessing methods that optimize CBV accuracy, determination of the impact of DSC-MRI methodology choices on sample size requirements, and the assessment of treatment response in clinical glioblastoma trials.

摘要

动态磁敏感对比增强(DSC)-磁共振成像(MRI)的标准化和大规模整合一直受到阻碍,因为对于DSC-MRI方法,包括采集协议和后处理算法的选择,在预防潜在的相对脑血容量测量不准确方面缺乏共识。因此,我们开发了一种数字参考对象(DRO),它利用从体内数据得出的生理和动力学参数、独特的体素级三维组织结构以及经过验证的MRI信号计算方法,旨在验证用于准确测量胶质母细胞瘤中相对脑血容量的图像采集和分析方法。为了获得代表造影剂诱导的T的时间特征、幅度和分布以及在多个胶质母细胞瘤中观察到的变化的DSC-MRI信号,使用来自23个胶质母细胞瘤(>40000体素)的DSC-MRI数据对DRO的输入参数进行了训练。通过与在另一组胶质母细胞瘤患者中采集的体内双回波DSC-MRI数据进行比较,验证了DRO针对与训练数据集中不同的脉冲序列参数和造影剂给药方案组合产生可靠信号的能力。展示了DRO的代表性应用,包括选择优化脑血容量准确性的DSC-MRI采集和后处理方法、确定DSC-MRI方法选择对样本量要求的影响以及评估临床胶质母细胞瘤试验中的治疗反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec56/6024422/29f0a0f664cd/tom0011700820001.jpg

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