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.

Pediatric Radiology
|February 18, 2016
PubMed

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.
Abstract

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