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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleORIGINAL RESEARCH

Deep Learning Based Reconstruction of 3D-T1-SPACE Vessel Wall Imaging Provides Improved Image Quality with Reduced Scan Times: A Preliminary Study

Girish Bathla, Steven A. Messina, David F. Black, John C. Benson, Peter Kollasch, Marcel D. Nickel, Neetu Soni, Brian C. Rucker, Ian T. Mark, Felix E. Diehn and Amit Agarwal
American Journal of Neuroradiology June 2024, ajnr.A8382; DOI: https://doi.org/10.3174/ajnr.A8382
Girish Bathla
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Steven A. Messina
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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David F. Black
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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John C. Benson
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Peter Kollasch
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Marcel D. Nickel
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Neetu Soni
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Brian C. Rucker
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Ian T. Mark
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Felix E. Diehn
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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Amit Agarwal
From the (1) Department of Radiology, Mayo Clinic, 200 1st Street SW, Rochester, MN 55902, USA, (2) Siemens Healthineers AG, Forchheim, Germany. (3)Department of Radiology, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL 55902, USA
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ABSTRACT

BACKGROUND AND PURPOSE: Intra-cranial vessel wall imaging (IC-VWI) is technically challenging to implement, given the simultaneous requirements of high spatial resolution, excellent blood and CSF signal suppression and clinically acceptable gradient times. Herein, we present our preliminary findings on the evaluation of a deep learning optimized sequence using T1 weighted imaging.

MATERIALS AND METHODS: Clinical and optimized Deep learning-based image reconstruction (DLBIR) T1 SPACE sequences were evaluated, comparing non-contrast sequences in ten healthy controls and post-contrast sequences in five consecutive patients. Images were reviewed on a Likert-like scale by four fellowship-trained neuroradiologists. Scores (range 1-4) were separately assigned for eleven vessel segments in terms of vessel wall and lumen delineation. Additionally, images were evaluated in terms of overall background noise, image sharpness and homogenous CSF signal. Segment-wise scores were compared using paired samples t-tests.

RESULTS: The scan time for the clinical and DLBIR sequences were 7:26 minutes and 5:23 minutes respectively. DLBIR images showed consistently higher wall signal and lumen visualization scores, with the differences being statistically significant in the majority of vessel segments on both pre and post contrast images. DLBIR images had lower background noise, higher image sharpness and uniform CSF signal. Depiction of intracranial pathologies was better or similar on the DLBIR images.

CONCLUSIONS: Our preliminary findings suggest that DLBIR optimized IC-VWI sequences may be helpful in achieving shorter gradient times with improved vessel wall visualization and overall image quality. These improvements may help with wider adoption of ICVWI in clinical practice and should be further validated on a larger cohort.

ABBREVIATIONS: DL deep learning; VWI = vessel wall imaging.

Footnotes

  • No potential conflicts of interest for all authors.

  • © 2024 by American Journal of Neuroradiology
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Accepted Manuscript
Girish Bathla, Steven A. Messina, David F. Black, John C. Benson, Peter Kollasch, Marcel D. Nickel, Neetu Soni, Brian C. Rucker, Ian T. Mark, Felix E. Diehn, Amit Agarwal
Deep Learning Based Reconstruction of 3D-T1-SPACE Vessel Wall Imaging Provides Improved Image Quality with Reduced Scan Times: A Preliminary Study
American Journal of Neuroradiology Jun 2024, ajnr.A8382; DOI: 10.3174/ajnr.A8382

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Accepted Manuscript
Deep Learning Based Reconstruction of 3D-T1-SPACE Vessel Wall Imaging Provides Improved Image Quality with Reduced Scan Times: A Preliminary Study
Girish Bathla, Steven A. Messina, David F. Black, John C. Benson, Peter Kollasch, Marcel D. Nickel, Neetu Soni, Brian C. Rucker, Ian T. Mark, Felix E. Diehn, Amit Agarwal
American Journal of Neuroradiology Jun 2024, ajnr.A8382; DOI: 10.3174/ajnr.A8382
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