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使用加速黄金角度径向序列对肝脏动态对比增强 MRI 的时间分辨率和运动校正的影响。

Impact of temporal resolution and motion correction for dynamic contrast-enhanced MRI of the liver using an accelerated golden-angle radial sequence.

机构信息

Centre hospitalier de l'Université de Montréal (CHUM) Research center, Montréal, QC, Canada.

出版信息

Phys Med Biol. 2020 Apr 17;65(8):085004. doi: 10.1088/1361-6560/ab78be.

Abstract

This paper presents a prospective study evaluating the impact on image quality and quantitative dynamic contrast-enhanced (DCE)-MRI perfusion parameters when varying the number of respiratory motion states when using an eXtra-Dimensional Golden-Angle Radial Sparse Parallel (XD-GRASP) MRI sequence. DCE acquisition was performed using a 3D stack-of-stars gradient-echo golden-angle radial acquisition in free-breathing with 100 spokes per motion state and temporal resolution of 6 s/volume, and using a non-rigid motion compensation to align different motion states. Parametric analysis was conducted using a dual-input single-compartment model. Nonparametric analysis was performed on the time-intensity curves. A total of 22 hepatocellular carcinomas (size: 11-52 mm) were evaluated. XD-GRASP reconstructed with increasing number of spokes for each motion state increased the signal-to-noise ratio (SNR) (p < 0.05) but decreased temporal resolution (0.04 volume/s vs 0.17 volume/s for one motion state) (p < 0.05). A visual scoring by an experienced radiologist show no change between increasing number of motion states with same number of spokes using the Likert score. The normalized maximum intensity time ratio, peak enhancement ratio and tumor arterial fraction increased with decreasing number of motion states (p < 0.05) while the transfer constant from the portal venous plasma to the surrounding tissue significantly decreased (p < 0.05). These same perfusion parameters show a significant difference in case of tumor displacement more than 1 cm (p < 0.05) whereas in the opposite case there was no significant variation. While a higher number of motion states and higher number of spokes improves SNR, the resulting lower temporal resolution can influence quantitative parameters that capture rapid signal changes. Finally, fewer displacement compensation is advantageous with lower number of motion state due to the higher temporal resolution. XD-GRASP can be used to perform quantitative perfusion measures in the liver, but the number of motion states may significantly alter some quantitative parameters.

摘要

本文提出了一项前瞻性研究,评估了当使用 eXtra-Dimensional Golden-Angle Radial Sparse Parallel(XD-GRASP)MRI 序列时,改变呼吸运动状态数量对图像质量和定量动态对比增强(DCE)-MRI 灌注参数的影响。DCE 采集是在自由呼吸下使用三维星形梯度回波黄金角径向采集进行的,每个运动状态有 100 个辐射线,时间分辨率为 6 秒/体积,并使用非刚性运动补偿来对齐不同的运动状态。参数分析使用双输入单室模型进行。时间-强度曲线进行非参数分析。共评估了 22 个肝细胞癌(大小:11-52mm)。对于每个运动状态,增加辐射线数量重建的 XD-GRASP 增加了信噪比(SNR)(p<0.05),但降低了时间分辨率(一个运动状态时为 0.04 体积/s 与 0.17 体积/s)(p<0.05)。一位有经验的放射科医生进行的视觉评分显示,使用Likert 评分,增加相同数量的辐射线的运动状态数量之间没有变化。归一化最大强度时间比、峰值增强比和肿瘤动脉分数随着运动状态数量的减少而增加(p<0.05),而从门静脉血浆到周围组织的转移常数显著降低(p<0.05)。这些相同的灌注参数在肿瘤位移超过 1cm 的情况下存在显著差异(p<0.05),而在相反的情况下则没有显著变化。虽然更多的运动状态和更多的辐射线提高了 SNR,但较低的时间分辨率会影响捕捉快速信号变化的定量参数。最后,由于较高的时间分辨率,较低的运动状态数量有利于较少的位移补偿。XD-GRASP 可用于在肝脏中进行定量灌注测量,但运动状态的数量可能会显著改变一些定量参数。

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