首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >A fast Edge-preserving Bayesian reconstruction method for Parallel Imaging applications in cardiac MRI.
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A fast Edge-preserving Bayesian reconstruction method for Parallel Imaging applications in cardiac MRI.

机译:一种用于心脏MRI中并行成像应用的快速保边贝叶斯重建方法。

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摘要

Among recent parallel MR imaging reconstruction advances, a Bayesian method called Edge-preserving Parallel Imaging reconstructions with GRAph cuts Minimization (EPIGRAM) has been demonstrated to significantly improve signal-to-noise ratio when compared with conventional regularized sensitivity encoding method. However, EPIGRAM requires a large number of iterations in proportion to the number of intensity labels in the image, making it computationally expensive for high dynamic range images. The objective of this study is to develop a Fast EPIGRAM reconstruction based on the efficient binary jump move algorithm that provides a logarithmic reduction in reconstruction time while maintaining image quality. Preliminary in vivo validation of the proposed algorithm is presented for two-dimensional cardiac cine MR imaging and three-dimensional coronary MR angiography at acceleration factors of 2-4. Fast EPIGRAM was found to provide similar image quality to EPIGRAM and maintain the previously reported signal-to-noise ratio improvement over regularized sensitivity encoding method, while reducing EPIGRAM reconstruction time by 25-50 times.
机译:在最近的并行MR成像重建进展中,与传统的正则化灵敏度编码方法相比,一种称为GRAph cuts Minimization(EPIGRAM)的边缘保持并行成像重建(Bay-ian-preserving Parallelel Imaging reconstruction)的贝叶斯方法已被证明可以显着提高信噪比。但是,EPIGRAM需要与图像中强度标签的数量成比例的大量迭代,这使其在高动态范围图像上的计算量很大。这项研究的目的是基于有效的二进制跳跃移动算法开发快速EPIGRAM重构,该算法在保持图像质量的同时,提供了重构时间的对数减少。提出了该算法的初步体内验证,用于二维心脏电影MR成像和三维冠状动脉MR血管造影,加速因子为2-4。快速EPIGRAM被发现可提供与EPIGRAM相似的图像质量,并保持了先前报道的信噪比比常规灵敏度编码方法更高的性能,同时将EPIGRAM的重建时间缩短了25至50倍。

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