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首页> 外文期刊>British Journal of Radiology >Structural MRI connectome in development: challenges of the changing brain.
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Structural MRI connectome in development: challenges of the changing brain.

机译:发展中的结构MRI连接器:不断变化的大脑所面临的挑战。

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MRI connectomics is an emerging approach to study the brain as a network of interconnected brain regions. Understanding and mapping the development of the MRI connectome may offer new insights into the development of brain connectivity and plasticity, ultimately leading to improved understanding of normal development and to more effective diagnosis and treatment of developmental disorders. In this review, we describe the attempts made to date to map the whole-brain structural MRI connectome in the developing brain and pay a special attention to the challenges associated with the rapid changes that the brain is undergoing during maturation. The two main steps in constructing a structural brain network are (i) choosing connectivity measures that will serve as the network "edges" and (ii) finding an appropriate way to divide the brain into regions that will serve as the network "nodes". We will discuss how these two steps are usually performed in developmental studies and the rationale behind different strategies. Changes in local and global network properties that have been described during maturation in neonates and children will be reviewed, along with differences in network topology between typically and atypically developing subjects, for example, owing to pre-mature birth or hypoxic ischaemic encephalopathy. Finally, future directions of connectomics will be discussed, addressing important steps necessary to advance the study of the structural MRI connectome in development.
机译:MRI连接组学是研究大脑作为相互连接的大脑区域网络的新兴方法。了解和绘制MRI连接组的发展图可能会为大脑的连接性和可塑性的发展提供新的见解,最终导致人们对正常发育的了解得到改善,并能更有效地诊断和治疗发育障碍。在这篇综述中,我们描述了迄今为止在发育中的大脑中绘制全脑结构MRI连接器图谱​​的尝试,并特别注意了与大脑在成熟过程中快速变化相关的挑战。构建结构性大脑网络的两个主要步骤是(i)选择将用作网络“边缘”的连接性度量,以及(ii)寻找适当的方法将大脑分为将用作网络“节点”的区域。我们将讨论在开发研究中通常如何执行这两个步骤以及不同策略背后的原理。将回顾新生儿和儿童在成熟过程中描述的局部和全局网络特性的变化,以及典型和非典型发育对象之间网络拓扑的差异,例如由于早产或缺氧缺血性脑病。最后,将讨论连接组学的未来方向,讨论推进发展中的结构MRI连接组研究所必需的重要步骤。

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