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      Autocalibrating Motion-Corrected Wave-Encoding for Highly Accelerated Free-Breathing Abdominal MRI

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          Abstract

          Purpose

          To develop a motion-robust wave-encoding technique for highly accelerated free-breathing abdominal MRI.

          Methods

          A comprehensive 3D wave-encoding-based method was developed to enable fast free-breathing abdominal imaging: (a) auto-calibration for wave-encoding was designed to avoid extra scan for coil sensitivity measurement; (b) intrinsic butterfly navigators were used to track respiratory motion; (c) variable-density sampling was included to enable compressed sensing; (d) golden-angle radial-Cartesian hybrid view-ordering was incorporated to improve motion robustness; (e) localized rigid motion correction was combined with parallel imaging compressed sensing reconstruction to reconstruct the highly accelerated wave-encoded datasets. The proposed method was tested on six subjects and image quality was compared with standard accelerated Cartesian acquisition both with and without respiratory triggering. Inverse gradient entropy and normalized gradient squared metrics were calculated, testing whether image quality was improved using paired t-tests.

          Results

          For respiratory-triggered scans, wave-encoding significantly reduced residual aliasing and blurring compared with standard Cartesian acquisition (metrics suggesting P < 0.05). For non-respiratory-triggered scans, the proposed method yielded significantly better motion correction compared with standard motion-corrected Cartesian acquisition (metrics suggesting P < 0.01).

          Conclusion

          The proposed methods can reduce motion artifacts and improve overall image quality of highly accelerated free-breathing abdominal MRI.

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          Author and article information

          Journal
          8505245
          5733
          Magn Reson Med
          Magn Reson Med
          Magnetic resonance in medicine
          0740-3194
          1522-2594
          20 November 2016
          09 December 2016
          November 2017
          01 November 2018
          : 78
          : 5
          : 1757-1766
          Affiliations
          [1 ]Department of Electrical Engineering, Stanford University, Stanford, California, USA.
          [2 ]Department of Radiology, Stanford University, Stanford, California, USA.
          Author notes
          Address correspondence to: Feiyu Chen, Packard Electrical Engineering, Room 301, 350 Serra Mall, Stanford, CA 94305-9510, feiyuc@ 123456stanford.edu
          Article
          PMC5466545 PMC5466545 5466545 nihpa829820
          10.1002/mrm.26567
          5466545
          27943402
          c51c460a-2230-47c7-92ff-91091e6d0636
          History
          Categories
          Article

          wave-encoding,motion correction,abdominal imaging,acceleration,parallel imaging,auto-calibration

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