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Tissue Classification from Brain Perfusion MR Images Using Expectation-Maximization Algorithm Initialized by Hierarchical Clustering on Whitened Data

机译:通过在白化数据上初始化的预期 - 最大化算法从脑灌注MR图像中的组织分类

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Classification of different perfusion compartments in the brain is important to the profound analysis of brain perfusion. We presents a method based on a mixture of multivariate Gaussians (MoMG) and the expectation-maximization (EM) algorithm initialized by the results of hierarchical clustering (HC) on the whitened data to automatically dissect various perfusion compartments from dynamic susceptibility contrast (DSC) MR images so that each compartment comprises pixels of similar signal-time curves. Monte Carlo simulations have been designed and executed to assess the performance of the proposed method under various signal-to-noise ratios (SNRs). The results of simulations showed that using EM initialized by HC on whitened data produce the best accuracy of segmentation. Five healthy volunteers participated in this study for the validation of this method. The averaged ratios of gray matter to white matter for relative cerebral blood volume (rCBV), relative cerebral blood flow (rCBF) and mean transition time (MTT) derived from 5 normal subjects were 2.196±0.097, 2.259±0.119, and 0.968±0.023 which are in good agreement with those reported in the literature. The proposed method can subserve the diagnosis and assessment of various diseases involving the changes of cerebral blood distribution.
机译:大脑中的不同灌注室的分类是脑灌注的深刻分析非常重要。我们提出了一种基于多变量高斯(MoMG)的混合物的方法,并通过在白化数据层次聚类(HC)的结果初始化为从动态易感性对比度自动解剖各种灌注隔室(DSC)的期望最大化(EM)算法MR图像,使得每个隔室包含类似的信号 - 时间曲线的像素。 Monte Carlo模拟的设计和执行,以评估在各种信号 - 噪声比(SNR)所提出的方法的性能。模拟的结果表明,使用EM初始化由HC上白化数据产生分割的最佳精确度。五个健康志愿者参加了这项研究对这种方法的有效性。从5名正常受试者的灰质平均比率白质为相对脑血容量(rCBV),相对脑血流量(rCBF)和平均转换时间(MTT)分别为2.196±0.097,2.259±0.119,和0.968±0.023这是在与文献报道一致。所提出的方法可以对...有用涉及脑血分布的变化的各种疾病的诊断和评估。

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