Single breath‐hold CINE imaging with combined simultaneous multislice and region‐optimized virtual coils

Author:

Kim Daeun1,Coll‐Font Jaume2ORCID,Lobos Rodrigo A.1ORCID,Stäb Daniel3ORCID,Pang Jianing4,Foster Anna2ORCID,Garrett Thomas2,Bi Xiaoming4,Speier Peter5,Haldar Justin P.1ORCID,Nguyen Christopher267ORCID

Affiliation:

1. Ming Hsieh Department of Electrical and Computer Engineering University of Southern California Los Angeles California

2. Cardiovascular Research Center and Martinos Center for Biomedical Imaging Massachusetts General Hospital and Harvard Medical School Charlestown Massachusetts

3. MR Research Collaborations Siemens Healthcare Limited Melbourne Victoria Australia

4. Siemens Medical Solutions USA Inc. Los Angeles California

5. Siemens Healthcare Erlangen Germany

6. Division of Health Science Technology Harvard‐Massachusetts Institute of Technology Cambridge Massachusetts United States

7. Cardiovascular Innovation Research Center Heart, Vascular, and Thoracic Institute, Cleveland Clinic ClevelandOhio

Abstract

PurposeTo investigate the feasibility of combining simultaneous multislice (SMS) and region‐optimized virtual coils (ROVir) for single breath‐hold CINE imaging.MethodROVir is a recent virtual coil approach that allows reduced‐field of view (FOV) imaging by localizing the signal from a region‐of‐interest (ROI) and/or suppressing the signal from unwanted spatial regions. In this work, ROVir is used for reduced‐FOV SMS bSSFP CINE imaging, which enables whole heart CINE with a single breath‐hold acquisition.ResultsReduced‐FOV CINE with either SMS‐only or ROVir‐only resulted in significant aliasing, with severely reduced image quality when compared to the full FOV reference CINE, while the visual appearance of aliasing was substantially reduced with the proposed SMS+ROVir. The end diastolic volume, end systolic volume, and ejection fraction obtained using the proposed approach were similar to the clinical reference (correlations of 0.92, 0.94, and 0.88, respectively with in each case, and biases of 0.1, 1.6 mL, and , respectively). No statistically significant differences for these parameters were found with a Wilcoxon rank test (p = 0.96, 0.20, and 0.40, respectively).ConclusionWe demonstrated that reduced‐FOV CINE imaging with SMS+ROVir enables single breath‐hold whole‐heart imaging without compromising visual image quality or quantitative cardiac function parameters.

Funder

National Heart and Lung Institute

Publisher

Wiley

Subject

Radiology, Nuclear Medicine and imaging

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