首页> 外文会议>International conference on medical image computing and computer assisted intervention >Radial Structure in the Preterm Cortex; Persistence of the Preterm Phenotype at Term Equivalent Age?
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Radial Structure in the Preterm Cortex; Persistence of the Preterm Phenotype at Term Equivalent Age?

机译:早产皮层的径向结构;足月等效年龄的早产表型是否持续?

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Preterm birth increases the risk of perinatal brain injury and is believed to initiate a cascade of processes causing white matter damage resulting in subsequent neurological deficit; neonatal magnetic resonance imaging provides a number of potential biomarkers of this deficit. In this work we unify measures of the cortical folding pattern and of white matter integrity to establish correlation between grey and white matter derived properties. Diffusion weighted MRI has revealed that the cortical grey matter in the extremely preterm period exhibits a strong transient radial organisation suggesting neuronal axons are orientated towards the underlying white matter. This effect is lost during cortical maturation and is considered no longer visible on MRI at term equivalent age. Here we show that, in a group of 19 infants, radial organisation in the cortical grey matter remains detectable at term-equivalent age and that there is a strong anterior-posterior asymmetry. A group of three infants with moderate or severe abnormal white matter abnormality have significantly higher cortical grey matter radial organisation (p < 0.02), higher grey matter FA (p < 0.01) and a lower measure of cortical complexity (p < 0.03) than infants with normal or mild abnormal white matter abnormality; all measures associated with the preterm phenotype before term equivalent age. The novel combination of state-of-the-art imaging techniques, analysing grey-matter based spatial characteristics, may provide insight into the mechanism of neurodevelopmental deficits seen in infants with abnormal MR imaging at term equivalent age.
机译:早产会增加围产期脑部受伤的风险,并且据信会引发一系列导致白质损伤的过程,进而导致随后的神经功能缺损。新生儿磁共振成像提供了这一缺陷的许多潜在生物标记。在这项工作中,我们统一了皮质折叠模式和白质完整性的测量方法,以建立灰色和白质衍生性质之间的相关性。扩散加权MRI显示,在极早的时期,皮质灰质表现出强烈的瞬时radial骨组织,表明神经元轴突朝向潜在的白质。该效应在皮质成熟过程中消失,在足月等效年龄时,在MRI上不再可见。在这里,我们表明,在一组19名婴儿中,皮质足灰质的放射状组织在足月等效年龄仍可检测到,并且存在很强的前后不对称性。一组三例中度或重度异常白质异常婴儿,其皮质灰质放射状组织(p <0.02),灰质FA(p <0.01)较高,皮质复杂性指标(p <0.03)较低。具有正常或轻度异常的白质异常;与足月等效年龄之前的早产表型相关的所有测量。最先进的成像技术的新颖组合,可以分析基于灰质的空间特征,可以为足月同龄的MR成像异常的婴儿提供神经发育缺陷的机制的见解。

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