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Quantitative study of cardiac motion estimation and abnormality classification in emission computed tomography.

机译:放射计算机断层扫描中心脏运动估计和异常分类的定量研究。

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Quantitative description of cardiac motion is desirable to assist in detecting myocardial abnormalities from gated myocardial perfusion (GMP) emission computed tomography (ECT) images. While "optical flow" type of cardiac motion estimation (ME) techniques have been developed in the past, there has been no quantitative evaluation of their performance. Moreover, no investigation has been performed in terms of applying an ME technique to quantify cardiac motion abnormalities. Using the four-dimensional NCAT beating heart phantom with known built-in motion, the current work aimed at addressing the aforementioned two issues. A three-dimensional cardiac ME technique was developed to search for a motion vector field (MVF) that establishes voxel-by-voxel correspondence between two GMP ECT images. The weighted myocardial strain energy served as the constraint in the process to minimize the difference between one intensity image and the MVF warped other. We studied the convergence of the ME technique using different initial estimates and cost functions. The dependence of estimated MVF on the initialization was attributed to the tangential motion that is undetectable while not suppressed by the strain energy constraint. We optimized the strain energy constraint weighting using noise-free phantom images and noisy reconstructed images, the former against the known MVF and the later in the task of regional motion classification. While the results from the above two studies well coincide with each other, we also demonstrated that upon appropriate optimization the ME method has the capability of serving as a computer motion observer in separating simulated noisy reconstructed GMP SPECT images corresponding to hearts with and without regional motion abnormalities.
机译:心脏运动的定量描述有助于从门控心肌灌注(GMP)发射计算机断层扫描(ECT)图像检测心肌异常。尽管过去已经开发了“光流”类型的心脏运动估计(ME)技术,但尚未对其性能进行定量评估。此外,在应用ME技术量化心脏运动异常方面尚未进行任何研究。使用具有已知内置运动的三维NCAT跳动心脏幻像,当前的工作旨在解决上述两个问题。开发了三维心脏ME技术,以搜索建立两个GMP ECT图像之间逐像素对应的运动矢量场(MVF)。加权的心肌应变能在该过程中起着约束作用,以最大程度地减小一个强度图像与另一个变形的MVF之间的差异。我们使用不同的初始估计和成本函数研究了ME技术的收敛性。估计MVF对初始化的依赖性归因于切向运动,该切向运动是无法检测到的,而不受应变能约束的抑制。我们使用无噪声的幻像图像和嘈杂的重建图像优化了应变能约束权重,前者针对已知的MVF,后者针对区域运动分类。尽管以上两项研究的结果彼此吻合,但我们还证明,经过适当的优化,ME方法具有作为计算机运动观察器的功能,可以分离模拟的有噪声的重建GMP SPECT图像,分别对应有和没有区域运动的心脏异常。

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