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Investigating white matter development in infancy and early childhood using myelin water faction and relaxation time mapping

机译:使用髓磷脂水派和松弛时间作图法调查婴儿期和幼儿期白质的发育

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The elaboration of the myelinated white matter is essential for normal neurodevelopment, establishing and mediating rapid communication pathways throughout the brain. These pathways facilitate the synchronized communication required for higher order behavioral and cognitive functioning. Altered neural messaging (or ‘disconnectivity’) arising from abnormal white matter and myelin development may underlie a number of neurodevelopmental psychiatric disorders. Despite the vital role myelin plays, few imaging studies have specifically examined its maturation throughout early infancy and childhood. Thus, direct investigations of the relationship(s) between evolving behavioral and cognitive functions and the myelination of the supporting neural systems have been sparse. Further, without knowledge of the ‘normative’ developmental time-course, identification of early abnormalities associated with developmental disorders remains challenging. In this work, we examined the use of longitudinal (T1) and transverse (T2) relaxation time mapping, and myelin water fraction (MWF) imaging to investigate white matter and myelin development in 153 healthy male and female children, 3 months through 60 months in age. Optimized age-specific acquisition protocols were developed using the DESPOT and mcDESPOT imaging techniques; and mean T1, T2 and MWF trajectories were determined for frontal, temporal, occipital, parietal and cerebellar white matter, and genu, body and splenium of the corpus callosum. MWF results provided a spatio-temporal pattern in-line with prior histological studies of myelination. Comparison of T1, T2 and MWF measurements demonstrates dissimilar sensitivity to tissue changes associated with neurodevelopment, with each providing differential but complementary information.
机译:有髓白质的形成对于正常的神经发育,建立和介导整个大脑的快速交流通路至关重要。这些途径促进了高级行为和认知功能所需的同步交流。由异常的白质和髓鞘发育引起的神经信息传递(或“脱节性”)改变可能是许多神经发育性精神疾病的基础。尽管髓磷脂起着至关重要的作用,但很少有影像学研究专门检查其在婴儿早期和儿童期的成熟情况。因此,对行为和认知功能发展与支持神经系统的髓鞘形成之间的关系进行的直接研究很少。此外,在不了解“规范性”发育时程的情况下,鉴定与发育障碍相关的早期异常仍然具有挑战性。在这项工作中,我们研究了使用纵向(T1)和横向(T2)弛豫时间映射以及髓磷脂水分数(MWF)成像来研究3个月至60个月的153名健康男女儿童中的白质和髓鞘发育在年龄上。使用DESPOT和mcDESPOT成像技术开发了针对特定年龄段的优化采集方案;确定额叶,颞叶,枕叶,顶叶和小脑白质以及call体的属,体和脾的平均T1,T2和MWF轨迹。 MWF的结果提供了与时俱进的髓鞘组织学研究一致的时空格局。 T1,T2和MWF测量值的比较表明,对与神经发育相关的组织变化的敏感性不同,每一种都提供差异但互补的信息。

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