Three-Dimensional Brain Images in Preterm Children With Periventricular Leukomalacia
Hsiao-Feng Chou, Ming-Fan Lin, Chia‐Yuan Chen, Ein‐Yiao Shen
Abstract
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Hsiao-Feng Chou, Ming-Fan Lin, Chia‐Yuan Chen, Ein‐Yiao Shen
Abstract
Open-access reader
BACKGROUND: To investigate the use of three-dimensional (3D) brain magnetic resonance imaging (MRI) to evaluate in preterm children with periventricular leukomalacia. MATERIALS AND METHODS: Semiautomated 3D classification of the gray and white tissues was used to reconstruct brain images of patients with confirmed periventricular leukomalacia from 2D MRI. RESULTS: We studied 14 preterm patients. The gestational age ranged from 25-37 weeks. The corrected age ranged from 5-49 months. We reconstructed the gray matter, white matter, and ventricles in order to analyze the brain volume. CONCLUSION: Three-dimensional MRI is a good tool that can be used to demonstrate brain lesions in stereo and differentiate the gray matter, white matter, and ventricles. Brain volume can also be accurately evaluated.
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BACKGROUND: To investigate the use of three-dimensional (3D) brain magnetic resonance imaging (MRI) to evaluate in preterm children with periventricular leukomalacia. MATERIALS AND METHODS: Semiautomated 3D classification of the gray and white tissues was used to reconstruct brain images of patients with confirmed periventricular leukomalacia from 2D MRI. RESULTS: We studied 14 preterm patients. The gestational age ranged from 25-37 weeks. The corrected age ranged from 5-49 months. We reconstructed the gray matter, white matter, and ventricles in order to analyze the brain volume. CONCLUSION: Three-dimensional MRI is a good tool that can be used to demonstrate brain lesions in stereo and differentiate the gray matter, white matter, and ventricles. Brain volume can also be accurately evaluated.
Key concepts: Periventricular leukomalacia, White matter, Medicine, Magnetic resonance imaging, Lateral ventricles, Gestational age, Brain size, Radiology