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肝脏中体素内不相干运动定量在不同场强和梯度硬件条件下的可重复性。

Reproducibility of intravoxel incoherent motion quantification in the liver across field strengths and gradient hardware.

作者信息

Simchick Gregory, Allen Timothy J, Hernando Diego

机构信息

Radiology, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Medical Physics, University of Wisconsin-Madison, Madison, Wisconsin, USA.

出版信息

Magn Reson Med. 2024 Dec;92(6):2652-2669. doi: 10.1002/mrm.30237. Epub 2024 Aug 9.

Abstract

PURPOSE

To evaluate reproducibility and interlobar agreement of intravoxel incoherent motion (IVIM) quantification in the liver across field strengths and MR scanners with different gradient hardware.

METHODS

Cramer-Rao lower bound optimization was performed to determine optimized monopolar and motion-robust 2D (b-value and first-order motion moment [M]) IVIM-DWI acquisitions. Eleven healthy volunteers underwent diffusion MRI of the liver, where each optimized acquisition was obtained five times across three MRI scanners. For each data set, IVIM estimates (diffusion coefficient (D), pseudo-diffusion coefficients ( and ), blood velocity SDs (V and V), and perfusion fractions [f and f]) were obtained in the right and left liver lobes using two signal models (pseudo-diffusion and M-dependent physical) with and without T correction (f and f) and three fitting techniques (tri-exponential region of interest-based full and segmented fitting and blood velocity SD distribution fitting). Reproducibility and interlobar agreement were compared across methods using within-subject and pairwise coefficients of variation (CV and CV), paired sample t-tests, and Bland-Altman analysis.

RESULTS

Using a combination of motion-robust 2D (b-M) data acquisition, M-dependent physical signal modeling with T correction, and blood velocity SD distribution fitting, multiscanner reproducibility with median CV = 5.09%, 11.3%, 9.20%, 14.2%, and 12.6% for D, V, V, f, and f, respectively, and interlobar agreement with CV = 8.14%, 11.9%, 8.50%, 49.9%, and 42.0%, respectively, was achieved.

CONCLUSION

Recently proposed advanced IVIM acquisition, signal modeling, and fitting techniques may facilitate reproducible IVIM quantification in the liver, as needed for establishment of IVIM-based quantitative biomarkers for detection, staging, and treatment monitoring of diseases.

摘要

目的

评估在不同场强以及配备不同梯度硬件的磁共振成像(MR)扫描仪上,肝脏体素内不相干运动(IVIM)定量分析的可重复性和叶间一致性。

方法

进行克拉美 - 罗下界优化,以确定优化的单极和运动稳健的二维(b值和一阶运动矩[M])IVIM扩散加权成像(DWI)采集。11名健康志愿者接受肝脏扩散磁共振成像检查,每种优化采集在三台MRI扫描仪上重复进行5次。对于每个数据集,使用两种信号模型(伪扩散和基于M的物理模型),分别在有和没有T校正(f和f)的情况下,以及三种拟合技术(基于感兴趣区域的三指数全拟合和分段拟合以及血流速度标准差分布拟合),在肝脏左右叶获得IVIM估计值(扩散系数(D)、伪扩散系数(和)、血流速度标准差(V和V)以及灌注分数[f和f])。使用受试者内和配对变异系数(CV和CV)、配对样本t检验以及布兰德 - 奥特曼分析,比较不同方法之间的可重复性和叶间一致性。

结果

采用运动稳健的二维(b - M)数据采集、基于M的物理信号建模并进行T校正以及血流速度标准差分布拟合的组合方法,多扫描仪可重复性方面,D、V、V、f和f的中位数CV分别为5.09%、11.3%、9.20%、14.2%和12.6%;叶间一致性方面,CV分别为8.14%、11.9%、8.50%、49.9%和42.0%。

结论

最近提出的先进IVIM采集、信号建模和拟合技术,可能有助于实现肝脏中可重复的IVIM定量分析,这是建立基于IVIM的疾病检测、分期和治疗监测定量生物标志物所必需的。

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