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Global and local cardiac functional analysis with cine MR imaging: A non-rigid image registration approach.

机译:电影MR成像的整体和局部心脏功能分析:非刚性图像配准方法。

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摘要

According to the World Health Report 2003, cardiovascular disease (CVD) made up 29.2% of total global deaths, which highlights the importance of clinical cardiovascular research. Magnetic Resonance Imaging (MRI) has become an important technology to assist clinical diagnosis and treatment of cardiovascular disease that is non-invasive and radiation-free. Cine MRI can provide high-quality images of the beating heart with a good time resolution. Tagged MRI can be used to image the myocardium deformation by altering the magnetization spatially, which deforms with the myocardium during the cardiac cycle.;The quantitative evaluation of cardiac functions can be divided into three categories: volumetric analysis, geometry analysis and deformation analysis. Both volumetric and geometry analysis requires the segmentation of the myocardium in the MR images. The myocardium segmentation identifies the shape and size of the ventricles that are used to compute ventricular volumes and derive geometric parameters, such as curvature. The deformation analysis measures the myocardium strains, which reflect the contractibility and stretchability of the myocardium on a local scale.;Manual myocardium segmentation can be extremely labor-intensive due to the large number of images that need to be processed in a limited amount of time. A large number of fully automatic contouring algorithms have been proposed. But they are generally unreliable, and manual corrections are usually needed. In this dissertation, we propose a dual-contour propagation algorithm that propagates a small number of manual contours at two critical frames of the cardiac cycle to all the other time frames. Since manual contours are usually drawn at the two critical frames in most institutions, no extra labor is needed to perform the propagation. We validate our contour propagation algorithm on patient data, and it is shown to be statistically as accurate as manual contours.;Although myocardium deformation analysis is usually performed with tagged MRI, there are several disadvantages. First, the tags in tagged MR images fade quickly and can only be reliable over about half of the cardiac cycle. Second, the spatial resolution of the tag lines are limited and sparse inside the myocardium. Furthermore, tagged MR imaging is a more complicated protocol and is not as commonly available as cine MR imaging. So it will be very beneficial for clinical purposes to be able to measure myocardium strains through cine MR imaging. In this dissertation, we propose a comprehensive algorithm with several regularization schemes to measure myocardium strain for both left and right ventricles.;Both the contour propagation and myocardium strain analysis are based on non-rigid image registration. In this dissertation, we propose a comprehensive non-rigid image registration algorithm that is adaptive, topology preserving and consistent. This algorithm is computationally more efficient due to its adaptive optimization scheme. In addition, the inverse consistency and topology preservation are achieved by regularization.
机译:根据《 2003年世界卫生报告》,心血管疾病(CVD)占全球总死亡人数的29.2%,这突出了临床心血管研究的重要性。磁共振成像(MRI)已成为一项重要技术,可协助无创且无辐射的心血管疾病的临床诊断和治疗。电影MRI可以以良好的时间分辨率提供跳动心脏的高质量图像。标记的MRI可用于通过在空间上改变磁化强度来成像心肌的变形,该磁化强度在心动周期中随心肌而变形。心脏功能的定量评估可分为三类:体积分析,几何分析和变形分析。体积分析和几何分析都需要在MR图像中对心肌进行分割。心肌分割可识别心室的形状和大小,这些心室用于计算心室容积并导出几何参数,例如曲率。变形分析可测量心肌应变,反映局部区域的心肌收缩性和可拉伸性。由于需要在有限的时间内处理大量图像,因此手动进行心肌分割可能会非常费力。已经提出了许多全自动轮廓算法。但是它们通常不可靠,通常需要手动更正。在本文中,我们提出了一种双轮廓传播算法,该算法将少量手动轮廓在心动周期的两个关键帧传播到所有其他时间帧。由于在大多数机构中通常在两个关键帧处绘制手动轮廓,因此无需额外的劳动即可执行传播。我们在患者数据上验证了轮廓传播算法,并在统计学上与手动轮廓一样精确。;尽管通常使用带标签的MRI进行心肌变形分析,但仍存在一些缺点。首先,带标签的MR图像中的标签会快速消失,并且只能在心动周期的大约一半时间内可靠。其次,标记线的空间分辨率受到限制并且在心肌内部稀疏。此外,标记MR成像是一种更为复杂的协议,不如电影MR成像普遍可用。因此,对于能够通过电影MR成像测量心肌应变的临床目的将非常有益。本文提出了一种综合的算法,该算法采用多种正则化方案来测量左,右心室的心肌应变。轮廓传播和心肌应变分析均基于非刚性图像配准。本文提出了一种自适应的,拓扑保持的,一致性好的综合非刚性图像配准算法。由于其自适应优化方案,该算法的计算效率更高。另外,逆一致性和拓扑保留通过正则化实现。

著录项

  • 作者

    Feng, Wei.;

  • 作者单位

    Auburn University.;

  • 授予单位 Auburn University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:58

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