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Free-breathing motion-corrected late-gadolinium-enhancement imaging improves image quality in children
Laura Olivieri1,2, Russell Cross3, Kendall J O'Brien3,4
1Division of Cardiology, Children's National Health System, W3-200, 111 Michigan Ave. NW, Washington, DC, 20010, USA. lolivier@childrensnational.org.
Insights
New single-shot free-breathing late-gadolinium-enhancement (LGE) imaging improves image quality in children compared to standard breath-held techniques. This method is robust for pediatric congenital heart disease diagnosis, even with high heart rates and arrhythmias.
Area of Science:
- Cardiovascular Imaging
- Pediatric Cardiology
- Medical Diagnostics
Background:
- Late-gadolinium-enhancement (LGE) imaging is crucial for pediatric and congenital heart disease.
- Current LGE techniques face challenges in children due to high heart rates, sinus arrhythmia, and inability to breath-hold.
- Standard pediatric LGE methods include breath-held segmented FLASH (segFLASH) and steady-state free precession-based (segSSFP) imaging.
Purpose of the Study:
- To evaluate and compare single-shot free-breathing LGE techniques against standard segmented breath-held techniques in pediatric patients.
- To assess the feasibility and image quality of novel LGE methods in children.
Main Methods:
- Thirty-two pediatric patients underwent LGE imaging with gadobutrol.
- Consecutive LGE sequences included breath-held segSSFP, breath-held segFLASH, and free-breathing single-shot SSFP.
- Image quality was rated by blinded reviewers on a 1-5 scale, assessing blood pool-myocardial definition, motion artifacts, and overall quality.
Main Results:
- Single-shot SSFP achieved higher mean quality ratings (long-axis: 4.0±0.9, short-axis: 4.3±0.7) compared to segSSFP (long-axis: 3.4±0.9, short-axis: 3.8±0.9) and segFLASH (long-axis: 3.1±0.9, short-axis: 3.4±1).
- These differences were statistically significant (P < 0.01 by ANOVA).
- The single-shot technique demonstrated robustness across a wide range of heart rates (47-164 bpm).
Conclusions:
- Single-shot free-breathing LGE imaging with motion-corrected averaging is feasible and effective in children.
- This technique offers superior image quality compared to standard breath-held methods, especially in children with high heart rates or arrhythmias.
- It provides a valuable, non-breath-held alternative for pediatric LGE imaging without compromising diagnostic quality.
Background:
The value of late-gadolinium-enhancement (LGE) imaging in the diagnosis and management of pediatric and congenital heart disease is clear; however current acquisition techniques are susceptible to error and artifacts when performed in children because of children's higher heart rates, higher prevalence of sinus arrhythmia, and inability to breath-hold. Commonly used techniques in pediatric LGE imaging include breath-held segmented FLASH (segFLASH) and steady-state free precession-based (segSSFP) imaging. More recently, single-shot SSFP techniques with respiratory motion-corrected averaging have emerged.
Objective:
This study tested and compared single-shot free-breathing LGE techniques with standard segmented breath-held techniques in children undergoing LGE imaging.
Materials And Methods:
Thirty-two consecutive children underwent clinically indicated late-enhancement imaging using intravenous gadobutrol 0.15 mmol/kg. Breath-held segSSFP, breath-held segFLASH, and free-breathing single-shot SSFP LGE sequences were performed in consecutive series in each child. Two blinded reviewers evaluated the quality of the images and rated them on a scale of 1-5 (1 = poor, 5 = superior) based on blood pool-myocardial definition, presence of cardiac motion, presence of respiratory motion artifacts, and image acquisition artifact. We used analysis of variance (ANOVA) to compare groups.
Results:
Patients ranged in age from 9 months to 18 years, with a mean +/- standard deviation (SD) of 13.3 +/- 4.8 years. R-R interval at the time of acquisition ranged 366-1,265 milliseconds (ms) (47-164 beats per minute [bpm]), mean +/- SD of 843+/-231 ms (72+/-21 bpm). Mean +/- SD quality ratings for long-axis imaging for segFLASH, segSSFP and single-shot SSFP were 3.1+/-0.9, 3.4+/-0.9 and 4.0+/-0.9, respectively (P < 0.01 by ANOVA). Mean +/- SD quality ratings for short-axis imaging for segFLASH, segSSFP and single-shot SSFP were 3.4+/-1, 3.8+/-0.9 and 4.3+/-0.7, respectively (P < 0.01 by ANOVA).
Conclusion:
Single-shot late-enhancement imaging with motion-corrected averaging is feasible in children, robust at high heart rates and with variable R-R intervals, and can be performed without breath-holding with higher image quality ratings than standard breath-held techniques. Use of free-breathing single-shot motion-corrected technique does not compromise LGE image quality in children who can hold their breath, and it can significantly improve image quality in children who cannot hold their breath or who have significant arrhythmia.
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