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人类认知中的白质可塑性和成熟度。

White matter plasticity and maturation in human cognition.

机构信息

Neurosciences and Mental Health Program, Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada.

Krembil Research Institute, University Health Network, Toronto, Ontario, Canada.

出版信息

Glia. 2019 Nov;67(11):2020-2037. doi: 10.1002/glia.23661. Epub 2019 Jun 24.

Abstract

White matter plasticity likely plays a critical role in supporting cognitive development. However, few studies have used the imaging methods specific to white matter tissue structure or experimental designs sensitive to change in white matter necessary to elucidate these relations. Here we briefly review novel imaging approaches that provide more specific information regarding white matter microstructure. Furthermore, we highlight recent studies that provide greater clarity regarding the relations between changes in white matter and cognition maturation in both healthy children and adolescents and those with white matter insult. Finally, we examine the hypothesis that white matter is linked to cognitive function via its impact on neural synchronization. We test this hypothesis in a population of children and adolescents with recurrent demyelinating syndromes. Specifically, we evaluate group differences in white matter microstructure within the optic radiation; and neural phase synchrony in visual cortex during a visual task between 25 patients and 28 typically developing age-matched controls. Children and adolescents with demyelinating syndromes show evidence of myelin and axonal compromise and this compromise predicts reduced phase synchrony during a visual task compared to typically developing controls. We investigate one plausible mechanism at play in this relationship using a computational model of gamma generation in early visual cortical areas. Overall, our findings show a fundamental connection between white matter microstructure and neural synchronization that may be critical for cognitive processing. In the future, longitudinal or interventional studies can build upon our knowledge of these exciting relations between white matter, neural communication, and cognition.

摘要

大脑白质的可塑性可能在支持认知发展方面发挥着关键作用。然而,很少有研究使用专门针对白质组织结构的成像方法或对阐明这些关系所必需的白质变化敏感的实验设计。在这里,我们简要回顾了提供有关白质微观结构更具体信息的新的成像方法。此外,我们强调了最近的研究,这些研究更清楚地阐明了白质变化与健康儿童和青少年以及白质损伤者的认知成熟之间的关系。最后,我们检验了白质通过对神经同步的影响与认知功能相关的假设。我们在患有复发性脱髓鞘综合征的儿童和青少年人群中检验了该假设。具体来说,我们评估了 25 名患者和 28 名年龄匹配的正常发育对照者的视辐射内白质微观结构的组间差异,以及在视觉任务中视觉皮层的神经相位同步性。与正常发育的对照组相比,患有脱髓鞘综合征的儿童和青少年表现出髓鞘和轴突损伤的证据,这种损伤预示着在视觉任务中相位同步性降低。我们使用早期视觉皮层区域中γ生成的计算模型来研究这种关系中起作用的一种可能的机制。总的来说,我们的发现表明白质微观结构和神经同步之间存在着基本的联系,这可能对白质损伤患者的认知处理至关重要。在未来,纵向或干预性研究可以建立在我们对白质、神经通讯和认知之间这些令人兴奋的关系的了解之上。

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