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Updated: Jul 3, 2025

Cardiac Magnetic Resonance for the Evaluation of Suspected Cardiac Thrombus: Conventional and Emerging Techniques
Published on: June 11, 2019
Ultrashort VIBE-Dixon versus Cine and late gadolinium enhancement MRI sequences for cardiac thrombus detection
Martin Soschynski1, Fabio Capilli2, Muhammad Taha Hagar1
1Department of Diagnostic and Interventional Radiology, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Freiburg, Hugstetter Straße 55, 79106 Freiburg, Germany.
Insights
Volumetric Interpolated Breath-hold Examination with Dixon technique (VIBE-Dixon) sequences offer high accuracy for detecting cardiac thrombus. This rapid MRI method can serve as a standalone tool for screening patients who cannot tolerate longer scan times.
Area of Science:
- Cardiovascular Imaging
- Medical Physics
- Radiology
Background:
- Cardiac thrombus detection is crucial for preventing thromboembolic events.
- Traditional MRI sequences for cardiac thrombus can be time-consuming.
- There is a need for faster and accurate imaging techniques.
Purpose of the Study:
- To evaluate the diagnostic accuracy of VIBE-Dixon sequences for cardiac thrombus detection.
- To compare the performance of VIBE-Dixon with conventional Cine + LGE sequences.
Main Methods:
- Retrospective analysis of 141 cardiac MRI studies (2014-2022).
- Patients underwent both Cine + LGE and VIBE-Dixon sequences.
- Two blinded readers assessed images for thrombus presence against a reference standard.
Main Results:
- VIBE-Dixon acquisition time was significantly shorter (28.8s) than Cine + LGE (23.3 min).
- Sensitivity for thrombus detection was significantly higher with VIBE-Dixon (96%) compared to Cine + LGE (73-78%).
- Overall diagnostic accuracy of VIBE-Dixon (95%) was superior to Cine + LGE (89%) and non-inferior to the reference standard.
Conclusions:
- VIBE-Dixon sequences provide high diagnostic accuracy for cardiac thrombus.
- The rapid acquisition of VIBE-Dixon makes it suitable for patients with limited breath-hold capacity.
- VIBE-Dixon can be utilized as a standalone sequence for efficient cardiac thrombus screening.
Purpose:
To determine the diagnostic accuracy of volumetric interpolated breath-hold examination sequences with fat suppression in Dixon technique (VIBE-Dixon) for cardiac thrombus detection.
Method:
From our clinical database, we retrospectively identified consecutive patients between 2014 and 2022 who had definite diagnosis or exclusion of cardiac thrombus confirmed by an independent adjudication committee, serving as the reference standard. All patients received 2D-Cine plus 2D-Late-Gadolinium-Enhancement (Cine + LGE) and VIBE-Dixon sequences. Two blinded readers assessed all images for the presence of cardiac thrombus. The diagnostic accuracy of Cine + LGE and VIBE-Dixon was determined and compared.
Results:
Among 141 MRI studies (116 male, mean age: 61 years) mean image examination time was 28.8 ± 3.1 s for VIBE-Dixon and 23.3 ± 2.5 min for Cine + LGE. Cardiac thrombus was present in 49 patients (prevalence: 35 %). For both readers sensitivity for thrombus detection was significantly higher in VIBE-Dixon compared with Cine + LGE (Reader 1: 96 % vs.73 %, Reader 2: 96 % vs. 78 %, p < 0.01 for both readers), whereas specificity did not differ significantly (Reader 1: 96 % vs. 98 %, Reader 2: 92 % vs. 93 %, p > 0.1). Overall diagnostic accuracy of VIBE-Dixon was higher than for Cine + LGE (95 % vs. 89 %, p = 0.02) and was non-inferior to the reference standard (Delta ≤ 5 % with probability > 95 %).
Conclusions:
Biplanar VIBE-Dixon sequences, acquired within a few seconds, provided a very high diagnostic accuracy for cardiac thrombus detection. They could be used as stand-alone sequences to rapidly screen for cardiac thrombus in patients not amenable to lengthy acquisition times.
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