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New Ratios for the Detection and Classification of CJD in Multisequence MRI of the Brain

机译:脑多序列MRI中CJD检测和分类的新比率

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摘要

We present a method for the analysis of deep grey brain nuclei for accurate detection of human spongiform encephalopathy in multisequence MRI of the brain. We employ T1, T2 and FLAIR-T2 MR sequences for the detection of intensity deviations in the internal nuclei. The MR data are registered to a probabilistic atlas and normalised in intensity prior to the segmentation of hyperintensities using a foveal model. Anatomical data from a segmented atlas are employed to refine the registration and remove false positives. The results are robust over the patient data and in accordance to the clinical ground truth. Our method further allows the quantification of intensity distributions in basal ganglia. sCJD patient FLAIR images are classified with a more significant hypersignal in caudate nuclei (10/10) and putamen (6/10) than in thalami. Defining normalised MRI measures of the intensity relations between the internal grey nuclei of patients, we robustly differentiate sCJD and variant CJD (vCJD) patients, as an attempt towards the automatic detection and classification of human spongiform encephalopathies.
机译:我们提出了一种分析深灰色脑核的方法,可在脑部多序列MRI中准确检测出人类海绵状脑病。我们采用T1,T2和FLAIR-T2 MR序列来检测内部核的强度偏差。在使用中央凹模型对高强度进行分割之前,将MR数据记录到概率图谱并进行强度标准化。来自分割图谱的解剖数据被用于完善配准并去除假阳性。该结果在患者数据和临床实际情况上均很可靠。我们的方法还可以量化基底神经节的强度分布。 sCJD患者的FLAIR图像在尾状核(10/10)和壳核(6/10)中比在丘脑中具有更高的高信号分类。定义患者内部灰核之间强度关系的归一化MRI测量,我们强烈区分sCJD和变异CJD(vCJD)患者,以尝试自动检测和分类人类海绵状脑病。

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