Overduin Christiaan G, Fütterer Jurgen J, Scheenen Tom W J
Department of Radiology and Nuclear Medicine, Radboud University Medical Center, Nijmegen, the Netherlands.
MIRA Institute for Biomedical Engineering and Technical Medicine, University of Twente, Enschede, the Netherlands.
J Magn Reson Imaging. 2016 Dec;44(6):1572-1579. doi: 10.1002/jmri.25301. Epub 2016 May 10.
To assess the feasibility and accuracy of 3D ultrashort echo time (UTE) magnetic resonance (MR) thermometry of frozen tissue during cryoablation on a clinical 3T MR system.
Ex vivo porcine muscle specimens (n = 4) were imaged during two cycles of 10:3 minutes freeze-thaw on a 3T clinical MR scanner. Continuous MR monitoring was performed using a 3D radial ramp-sampled UTE sequence with a shortest TE of 70 μs. Fiber optic sensors were used for temperature reference. Data of three experiments were used as reference sets. Signal intensity values were normalized to baseline before cooling and related to temperature. Data for subzero temperatures were fit to a monoexponential function. In the separate validation set, the obtained fit was used to generate 3D MR temperature maps of frozen tissue at each imaging timepoint. Statistical analysis was performed to assess accuracy of the MR temperature maps.
With 3D UTE imaging, MR signal was measured from frozen tissue down to temperatures as low as -40°C. Temperatures predicted from the MR temperature maps strongly correlated with sensor recorded values (r = 0.977, P < 0.001). Bland-Altman analysis demonstrated a mean difference between MR-estimated temperatures and sensor readings of -1.2 ± 2.7°C with upper and lower limits of agreement of +4.1 and -6.5°C, respectively.
3D MR thermometry of frozen tissue using UTE signal intensity was feasible during cryoablation on a clinical 3T MR system. Down to temperatures as low as -40°C, accuracy of the MR temperature maps was within clinically acceptable limits. J. Magn. Reson. Imaging 2016;44:1572-1579.
在临床3T磁共振(MR)系统上评估冷冻消融过程中对冷冻组织进行三维超短回波时间(UTE)磁共振温度测量的可行性和准确性。
在3T临床MR扫描仪上,对离体猪肌肉标本(n = 4)进行两个10:3分钟冻融循环的成像。使用最短回波时间为70μs的三维径向斜坡采样UTE序列进行连续MR监测。使用光纤传感器作为温度参考。三个实验的数据用作参考集。信号强度值在冷却前归一化为基线并与温度相关。低于零度温度的数据拟合为单指数函数。在单独的验证集中,所获得的拟合用于在每个成像时间点生成冷冻组织的三维MR温度图。进行统计分析以评估MR温度图的准确性。
通过三维UTE成像,可测量到低至-40°C的冷冻组织的MR信号。从MR温度图预测的温度与传感器记录值高度相关(r = 0.977,P < 0.001)。Bland-Altman分析表明,MR估计温度与传感器读数之间的平均差异为-1.2±2.7°C,一致性上限和下限分别为+4.1和-6.5°C。
在临床3T MR系统上进行冷冻消融时,使用UTE信号强度对冷冻组织进行三维MR温度测量是可行的。低至-40°C的温度下,MR温度图的准确性在临床可接受范围内。《磁共振成像杂志》2016年;44:1572 - 1579。