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Validation, Optimization, And Image Processing of Spiral Cine Dense Magnetic Resonance Imaging for the Quantification of Left and Right Ventricular Mechanics

机译:螺旋电影密集磁共振成像的验证,优化和图像处理,用于量化左右心室力学

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摘要

Recent evidence suggests that cardiac mechanics (e.g. cardiac strains) are better measures of heart function compared to common clinical metrics like ejection fraction. However, commonly-used parameters of cardiac mechanics remain limited to just a few measurements averaged over the whole left ventricle. We hypothesized that recent advances in cardiac magnetic resonance imaging (MRI) could be extended to provide measures of cardiac mechanics throughout the left and right ventricles (LV and RV, respectively).;Displacement Encoding with Stimulated Echoes (DENSE) is a cardiac MRI technique that has been validated for measuring LV mechanics at a magnetic field strength of 1.5 T but not at higher field strengths such as 3.0 T. However, it is desirable to perform DENSE at 3.0 T, which would yield a better signal to noise ratio for imaging the thin RV wall. Results in Chapter 2 support the hypothesis that DENSE has similar accuracy at 1.5 and 3.0 T.;Compared to standard, clinical cardiac MRI, DENSE requires more expertise to perform and is not as widely used. If accurate mechanics could be measured from standard MRI, the need for DENSE would be reduced. However, results from Chapter 3 support the hypothesis that measured cardiac mechanics from standard MRI do not agree with, and thus cannot be used in place of, measurements from DENSE.;Imaging the thin RV wall with its complex contraction pattern requires both three-dimensional (3D) measures of myocardial motion and higher resolution imaging. Results from Chapter 4 support the hypothesis that a lower displacement-encoding frequency can be used to allow for easier processing of 3D DENSE images. Results from Chapter 5 support the hypothesis that images with higher resolution (decreased blurring) can be achieved by using more spiral interleaves during the DENSE image acquisition.;Finally, processing DENSE images to yield measures of cardiac mechanics in the LV is relatively simple due to the LVs mostly cylindrical geometry. Results from Chapter 6 support the hypothesis that a local coordinate system can be adapted to the geometry of the RV to quantify mechanics in an equivalent manner as the LV.;In summary, cardiac mechanics can now be quantified throughout the left and right ventricles using DENSE cardiac MRI.
机译:最近的证据表明,与常见的临床指标(例如射血分数)相比,心脏力学(例如心脏应变)是更好的心脏功能指标。但是,心脏力学的常用参数仍然仅限于整个左心室平均的几次测量。我们假设心脏磁共振成像(MRI)的最新进展可以扩展到整个左心室和右心室(分别为LV和RV)来提供心脏力学的测量指标。刺激回声的位移编码(DENSE)是一种心脏MRI技术经验证可在1.5 T的磁场强度下测量LV力学,但在更高的磁场强度(例如3.0 T)下不能进行测量。但是,理想的是在3.0 T下执行DENSE,这将产生更好的成像信噪比RV薄壁。第2章中的结果支持DENSE在1.5和3.0 T时具有相似精度的假设。与标准的临床心脏MRI相比,DENSE需要更多的专业知识来执行并且没有得到广泛使用。如果可以通过标准MRI测量准确的力学,则对DENSE的需求将减少。但是,第3章的结果支持以下假设:标准MRI的心脏力学测量结果与DENSE的测量结果不一致,因此不能代替DENSE的测量结果。 (3D)心肌运动测量和高分辨率成像。第4章的结果支持以下假设:可以使用较低的位移编码频率来简化3D DENSE图像的处理。第5章的结果支持以下假设:可以在DENSE图像采集过程中使用更多的螺旋交错来获得分辨率更高的图像(减少模糊)。最后,由于以下原因,处理DENSE图像以产生LV中心脏力学的量度相对简单: LV大多是圆柱形的。第6章的结果支持以下假设:局部坐标系可以适应RV的几何形状,以与LV等效的方式量化力学;总之,现在可以使用DENSE量化整个左心室和右心室的心脏力学心脏核磁共振。

著录项

  • 作者

    Wehner, Gregory James.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:45

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