[Pediatric bowel MRI--accelerated parallel imaging in a single breathhold]

C Hohl1, D Honnef, G Krombach

  • 1Klinik für Radiologische Diagnostik, UK Aachen. hohl@rad.rwth-aachen.de

Rofo : Fortschritte Auf Dem Gebiete Der Rontgenstrahlen Und Der Nuklearmedizin
|April 29, 2008
PubMed

Insights

Highly accelerated parallel MRI significantly reduces bowel examination time in children with inflammatory bowel disease (IBD) to a single breathhold. This advanced technique maintains diagnostic accuracy and image quality comparable to conventional methods.

Area of Science:

  • Radiology
  • Medical Imaging
  • Gastroenterology

Context:

  • Inflammatory bowel disease (IBD) diagnosis in children requires detailed imaging of the bowel.
  • Conventional MRI sequences for bowel imaging are time-consuming, often requiring multiple breathholds.
  • Advancements in MRI technology aim to improve patient comfort and diagnostic efficiency.

Purpose:

  • To compare the efficacy of highly accelerated parallel MRI with conventional balanced Fast Field Echo (FFE) sequences for evaluating the bowel in pediatric patients with IBD.
  • To assess diagnostic accuracy, image quality, artifact susceptibility, and bowel distension between the two MRI techniques.

Summary:

  • A study involving 20 children with suspected or proven IBD compared conventional and highly accelerated (R=5) balanced FFE MRI sequences using different receiver coils.
  • Both techniques demonstrated high diagnostic accuracy (92%) for detecting inflammatory bowel changes.
  • Highly accelerated parallel MRI, utilizing a 32-channel coil and SENSE technique, reduced acquisition time to a single breathhold without compromising diagnostic impact or image quality, despite a slight increase in artifacts.

Impact:

  • Highly accelerated parallel MRI with SENSE and a 32-channel coil offers a faster and efficient method for whole-bowel examination in children with IBD.
  • This technique improves patient experience by reducing the need for multiple breathholds.
  • The findings support the clinical utility of advanced parallel imaging techniques in pediatric gastroenterology for improved diagnostic workflows.
Abstract