Low field thoracic MRI—a fast and radiation free routine imaging modality in children
Autor: | B. Böwing, Rainer Kuth, Michael Deimling, Thomas Rupprecht, Maren Wagner, Wolfgang Rascher |
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Rok vydání: | 2001 |
Předmět: |
Adult
Lung Diseases Male medicine.medical_specialty Adolescent Radiography Biomedical Engineering Biophysics Radiation Statistics Nonparametric Ionizing radiation Medical imaging medicine Humans Radiology Nuclear Medicine and imaging Child Modality (human–computer interaction) medicine.diagnostic_test business.industry Infant Magnetic resonance imaging Radiological examination Magnetic Resonance Imaging Child Preschool Coronal plane Female Radiology Artifacts Nuclear medicine business |
Zdroj: | Magnetic Resonance Imaging. 19:975-983 |
ISSN: | 0730-725X |
DOI: | 10.1016/s0730-725x(01)00417-9 |
Popis: | Radiography of the chest is the most frequently performed radiological examination in pediatric imaging. However, it is associated with the application of ionizing radiation. In order to avoid ionizing radiation in children a new and very fast MRI technique has been developed at our center as an alternative to the pediatric chest X-ray. 100 patients who had received a chest X-ray were additionally investigated in a 0.2 T low-field MR-scanner by a modified true FISP sequence with an acquisition time of 3.6–4.6 s for a coronal triple-slice scan. X-ray and MR images were independently evaluated and later compared by two pediatric radiologists. Total investigation times (door-to-door time) for X-ray and MRI were comparable. The signal-to-noise ratio for lung parenchyma was 4.6–7.3. Of 189 pathologic findings 165 were depicted on MR images as well as radiographs, 18 were noted on MRIs only, 6 on X-rays only. Overall kappa (κ) was 0.87. True FISP MRI may be a good alternative to conventional chest X-ray. The main advantages are: fast imaging free of ionizing radiation, easy performance, no need for special equipment, optional imaging in all 3 planes, good image quality, and a high diagnostic value. |
Databáze: | OpenAIRE |
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