首页> 外文会议>International Conference on Medical Image Computing and Computer-Assisted Intervention(MICCAI 2007) pt.2; 20071029-1102; Brisbane(AU) >Accuracy Assessment of Global and Local Atrophy Measurement Techniques with Realistic Simulated Longitudinal Data
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Accuracy Assessment of Global and Local Atrophy Measurement Techniques with Realistic Simulated Longitudinal Data

机译:真实模拟的纵向数据对全球和局部萎缩测量技术的准确性评估

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The main goal of this work was to assess the accuracy of several well-known methods which provide global (BSI and SIENA) or local (Jacobian integration) estimates of longitudinal atrophy in brain structures using Magnetic Resonance images. For that purpose, we have generated realistic simulated images which mimic the patterns of change obtained from a cohort of 19 real controls and 27 probable Alzheimer's disease patients. SIENA and BSI results correlate very well with gold standard data (BSI mean absolute error < 0.29%; SIENA < 0.44%). Jacobian integration was guided by both fluid and FFD-based registration techniques and resulting deformation fields and associated Jacobians were compared, region by region, with gold standard ones. The FFD registration technique provided more satisfactory results than the fluid one. Mean absolute error differences between volume changes given by the FFD-based technique and the gold standard were: sulcal CSF < 2.49%; lateral ventricles < 2.25%; brain < 0.36%; hippocampi < 1.42%.
机译:这项工作的主要目的是通过磁共振图像评估几种众所周知的方法的准确性,这些方法可以提供大脑结构纵向萎缩的整体(BSI和SIENA)或局部(雅各布整合)估计。为此,我们生成了逼真的模拟图像,这些图像模拟了从19个实际对照和27个可能的阿尔茨海默氏病患者队列中获得的变化模式。 SIENA和BSI结果与金标准数据非常相关(BSI平均绝对误差<0.29%; SIENA <0.44%)。雅可比积分通过流体和基于FFD的套准技术进行指导,并将形成的变形场和相关的雅可比派逐区域与金标准区域进行比较。 FFD配准技术比流体配准技术提供了更令人满意的结果。通过基于FFD的技术和金标准测定的体积变化之间的平均绝对误差差异为:鼻CSF <2.49%;侧脑室<2.25%;大脑<0.36%;海马<1.42%。

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