首页> 外文会议>International Conference on Medical Image Computing and Computer-Assisted Intervention;MICCAI 2008 >Bayesian Motion Recovery Framework for Myocardial Phase-Contrast Velocity MRI
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Bayesian Motion Recovery Framework for Myocardial Phase-Contrast Velocity MRI

机译:心肌相差速度MRI的贝叶斯运动恢复框架

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摘要

Detailed assessment of myocardial motion provides a key indicator of ventricular function, enabling the early detection and assessment of a range of cardiac abnormalities. Existing techniques for myocardial contractility analysis are complicated by a combination of factors including resolution, acquisition time, and consistency of quantification results. Phase-contrast velocity MRI is a technique that provides instantaneous, in vivo measurement of tissue velocity on a per-voxel basis. It allows for the direct derivation of contractile indices with minimal post-processing. For this method to be clinically useful, SNR and image artifacts need to be addressed. The purpose of this paper is to present a Maximum a posteriori (MAP) restoration technique for high quality myocardial motion recovery. It employs an accurate noise modeling scheme and a generalized Gaussian Markov random field prior tailored for the myocardial morphology. The quality of the proposed method is evaluated with both simulated myocardial velocity data with known ground truth and in vivo phase-contrast MR velocity acquisitions from a group of normal subjects.
机译:心肌运动的详细评估可提供心室功能的关键指标,从而能够及早发现和评估一系列心脏异常情况。现有的用于心肌收缩力分析的技术由于多种因素而变得复杂,包括分辨率,采集时间和定量结果的一致性。相衬速度MRI是一项技术,可在每个体素的基础上提供瞬时的体内组织速度测量。它允许以最少的后处理直接得出收缩指数。为了使该方法在临床上有用,需要解决SNR和图像伪影的问题。本文的目的是提出一种用于高质量心肌运动恢复的最大后验(MAP)恢复技术。它采用了精确的噪声建模方案和事先为心肌形态量身定制的广义高斯马尔可夫随机场。所提出的方法的质量是通过模拟的具有已知地面真实性的心肌速度数据以及一组正常受试者体内相差MR速度采集来评估的。

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