首页> 外文会议>2011 8th IEEE International Symposium on Biomedical Imaging: From Nano to Macro >Distortion-optimal self-calibrating parallel MRI by blind interpolation in subsampled filter banks
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Distortion-optimal self-calibrating parallel MRI by blind interpolation in subsampled filter banks

机译:子采样滤波器组中盲插值的失真最优自校准并行MRI

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Self-calibrating k-space-based image reconstruction in parallel MRI interpolates the subsampled multi-channel data to a fully sampled Nyquist grid in k-space. Adopting a filter bank interpolation framework, we provide a new formulation of the associated inverse problem and develop the theory for blind identification of the interpolant filters. The developed method is applied to imaging scenarios where high effective acceleration is desired and is shown to be capable of reconstructing artifact-free images with minimal amount of calibration data — hence, achieving high effective accelerations. Simulation and in-vivo results indicate that improved image quality, and thus greater scan time reductions compared to the state-of-the-art method of GRAPPA can be achieved.
机译:并行MRI中基于自校准k空间的图像重建将子采样的多通道数据插值到k空间中的完全采样的Nyquist网格。通过采用滤波器组插值框架,我们为相关的反问题提供了新的表述,并发展了用于插值滤波器盲识别的理论。所开发的方法应用于需要高有效加速度的成像场景,并被证明能够以最少的校准数据量重建无伪像的图像-因此,可以实现高有效加速度。仿真和体内结果表明,与最新的GRAPPA方法相比,可以提高图像质量,并因此减少更多的扫描时间。

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