Department of Neuroradiology, Faculty of Medicine, Medical Center-University of Freiburg, University of Freiburg, Freiburg, Germany.
Epilepsy Center, Faculty of Medicine, Medical Center-University of Freiburg, University of Freiburg, Freiburg, Germany.
Epilepsia. 2022 Jan;63(1):75-85. doi: 10.1111/epi.17127. Epub 2021 Nov 20.
The detection of focal cortical dysplasia (FCD) in magnetic resonance imaging is challenging. Voxel-based morphometric analysis and automated FCD detection using an artificial neural network (ANN) integrated into the Morphometric Analysis Program (MAP18) have been shown to facilitate FCD detection. This study aimed to evaluate whether the detection of FCD can be further improved by feeding this approach with magnetization prepared two rapid acquisition gradient echoes (MP2RAGE) instead of magnetization-prepared rapid acquisition gradient echo (MPRAGE) datasets.
MPRAGE and MP2RAGE datasets were acquired in a consecutive sample of 32 patients with FCD and postprocessed using MAP18. Visual analysis and, if available, histopathology served as the gold standard for assessing the sensitivity and specificity of FCD detection. Out-of-sample specificity was evaluated in a cohort of 32 healthy controls.
The sensitivity and specificity of FCD detection were 82.4% and 62.5% for the MPRAGE and 97.1% and 34.4% for the MP2RAGE sequences, respectively. Median volumes of true-positive voxel clusters were .16 ml for the MPRAGE and .52 ml for the MP2RAGE sequences compared to .08- and .04-ml volumes of false-positive clusters. With regard to cluster volumes, FCD detection was substantially improved for the MP2RAGE data when the estimated optimal threshold of .23 ml was applied (sensitivity = 72.9%, specificity = 83.0%). In contrast, the estimated optimal threshold of .37 ml for the MPRAGE data did not improve FCD lesion detection (sensitivity = 42.9%, specificity = 79.5%).
In this study, the sensitivity of FCD detection by morphometric analysis and an ANN integrated into MAP18 was higher for MP2RAGE than for MPRAGE sequences. Additional usage of cluster volume information helped to discriminate between true- and false-positive MP2RAGE results.
磁共振成像中局灶性皮质发育不良(FCD)的检测具有挑战性。基于体素的形态计量分析和使用人工神经网络(ANN)进行的自动 FCD 检测已被证明有助于 FCD 的检测。本研究旨在评估通过将这种方法与磁化准备双快速获取梯度回波(MP2RAGE)而不是磁化准备快速获取梯度回波(MPRAGE)数据集相结合,是否可以进一步提高 FCD 的检测。
在连续的 32 例 FCD 患者中采集了 MPRAGE 和 MP2RAGE 数据集,并使用 MAP18 进行后处理。视觉分析(如果有)和组织病理学作为 FCD 检测的敏感性和特异性的金标准。在 32 名健康对照者的队列中评估了样本外特异性。
MPRAGE 和 MP2RAGE 序列的 FCD 检测的敏感性和特异性分别为 82.4%和 62.5%和 97.1%和 34.4%。真阳性体素簇的中位数体积分别为.16 ml 为 MPRAGE 和.52 ml 为 MP2RAGE 序列,而假阳性簇的体积分别为.08 和.04 ml。就聚类体积而言,当应用估计的最佳阈值.23 ml 时,MP2RAGE 数据的 FCD 检测得到了很大改善(敏感性=72.9%,特异性=83.0%)。相比之下,MPRAGE 数据的估计最佳阈值.37 ml 并没有改善 FCD 病变检测(敏感性=42.9%,特异性=79.5%)。
在这项研究中,通过形态计量分析和集成到 MAP18 中的 ANN 进行的 FCD 检测的敏感性,MP2RAGE 序列高于 MPRAGE 序列。聚类体积信息的额外使用有助于区分真阳性和假阳性 MP2RAGE 结果。