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Updated: Jul 5, 2026

Whole-body PET/MRI of Pediatric Patients: The Details That Matter
Published on: December 19, 2017
[Pediatric bowel MRI--accelerated parallel imaging in a single breathhold]
1Klinik für Radiologische Diagnostik, UK Aachen. hohl@rad.rwth-aachen.de
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.
Purpose:
To compare highly accelerated parallel MRI of the bowel with conventional balanced FFE sequences in children with inflammatory bowel disease (IBD).
Materials And Methods:
20 children with suspected or proven IBD underwent MRI using a 1.5 T scanner after oral administration of 700 -1000 ml of a Mannitol solution and an additional enema. The examination started with a 4-channel receiver coil and a conventional balanced FFE sequence in axial (2.5 s/slice) and coronal (4.7 s/slice) planes. Afterwards highly accelerated (R = 5) balanced FFE sequences in axial (0.5 s/slice) and coronal (0.9 s/slice) were performed using a 32-channel receiver coil and parallel imaging (SENSE). Both receiver coils achieved a resolution of 0.88 x 0.88 mm with a slice thickness of 5 mm (coronal) and 6 mm (axial) respectively. Using the conventional imaging technique, 4 - 8 breathholds were needed to cover the whole abdomen, while parallel imaging shortened the acquisition time down to a single breathhold. Two blinded radiologists did a consensus reading of the images regarding pathological findings, image quality, susceptibility to artifacts and bowel distension. The results for both coil systems were compared using the kappa-(kappa)-coefficient, differences in the susceptibility to artifacts were checked with the Wilcoxon signed rank test. Statistical significance was assumed for p = 0.05.
Results:
13 of the 20 children had inflammatory bowel wall changes at the time of the examination, which could be correctly diagnosed with both coil systems in 12 of 13 cases (92 %). The comparison of both coil systems showed a good agreement for pathological findings (kappa = 0.74 - 1.0) and the image quality. Using parallel imaging significantly more artifacts could be observed (kappa = 0.47) without impairing the diagnostic impact. The comparison of the bowel distension showed no significant differences.
Conclusion:
The highly accelerated parallel MRI using the SENSE technique and a 32-channel surface coil enables the examination of the entire bowel in a single breathhold without relevant restrictions in image quality and diagnostic impact.
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