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3D true-phase polarity recovery with independent phase estimation using three-tier stacks based region growing (3D-TRIPS)

  • Haining Liu
  • , Gregory J. Wilson
  • , Niranjan Balu
  • , Jeffrey H. Maki
  • , Daniel S. Hippe
  • , Wei Wu
  • , Hiroko Watase
  • , Jinnan Wang
  • , Martin L. Gunn
  • , Chun Yuan

研究成果: ジャーナルへの寄稿学術論文査読

抄録

Objectives: A postprocessing technique termed 3D true-phase polarity recovery with independent phase estimation using three-tier stacks based region growing (3D-TRIPS) was developed, which directly reconstructs phase-sensitive inversion-recovery images without acquisition of phase-reference images. The utility of this technique is demonstrated in myocardial late gadolinium enhancement (LGE) imaging. Materials and methods: A data structure with three tiers of stacks was used for 3D-TRIPS to directly achieve reliable region growing for successful background-phase estimation. Fifteen patients undergoing postgadolinium 3D phase-sensitive inversion recovery (PSIR) cardiac LGE magnetic resonance imaging (MRI) were recruited, and 3D-TRIPS LGE reconstructions were compared with standard PSIR. Objective voxel-by-voxel comparison was performed. Additionally, blinded review by two radiologists compared scar visibility, clinical acceptability, voxel polarity error, or groups and blurring. Results: 3D-TRIPS efficiently reconstructed postcontrast phase-sensitive myocardial LGE images. Objective analysis showed an average 95% voxel-by-voxel agreement between 3D-TRIPS and PSIR images. Blinded radiologist review demonstrated similar image quality between 3D-TRIPS and PSIR reconstruction. Conclusion: 3D-TRIPS provided similar image quality to PSIR for phase-sensitive myocardial LGE MRI reconstruction. 3D-TRIPS does not require acquisition of a reference image and can therefore be used to accelerate phase-sensitive LGE imaging.

本文言語英語
ページ(範囲)87-99
ページ数13
ジャーナルMagnetic Resonance Materials in Physics, Biology and Medicine
31
1
DOI
出版ステータス出版済み - 01-02-2018
外部発表はい

All Science Journal Classification (ASJC) codes

  • 生物理学
  • 放射線技術および超音波技術
  • 放射線学、核医学およびイメージング

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