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皮质网络形成过程及早期脑损伤的影响。

Process of cortical network formation and impact of early brain damage.

作者信息

Kiss Jozsef Z, Vasung Lana, Petrenko Volodymyr

机构信息

aDepartment of Neurosciences, University of Geneva Medical School bChild Development Unit, Department of Pediatrics, School of Medicine, University of Geneva, Geneva, Switzerland.

出版信息

Curr Opin Neurol. 2014 Apr;27(2):133-41. doi: 10.1097/WCO.0000000000000068.

Abstract

PURPOSE OF REVIEW

The aim is to review mechanisms that are central to the formation of proper cortical circuitry and relevant to perinatal brain injury and premature birth.

RECENT FINDINGS

Clinical investigations using noninvasive imaging techniques suggest that impaired connectivity of cortical circuitry is associated with perinatal adverse conditions. Recent experimental and translational studies revealed developmental mechanisms that are critical for circuit formation and potentially at risk in the perinatal period. These include existence of last wave genesis, migration and integration of gamma-aminobutyric acid (GABA) interneurons in the perinatal period; maturation of GABA interneuron networks that are central to critical period plasticity; transient connections by subplate neurons that guide thalamocortical connectivity, and a perineuronal microglia network that maintains axonal growth and neuronal survival as well as executing synaptic pruning. In addition, recent work has demonstrated that birth plays a key role in triggering the maturation cascade of cortical circuits.

SUMMARY

Altered maturation of cortical circuits is an increasingly recognized aspect of perinatal injury and premature birth. Potential mechanisms are revealed but further translational studies are required to associate fine changes at the cellular and molecular level with imaging data in experimental models.

摘要

综述目的

旨在回顾对于形成正常皮质神经回路至关重要且与围产期脑损伤和早产相关的机制。

最新发现

使用非侵入性成像技术的临床研究表明,皮质神经回路连接受损与围产期不良状况有关。最近的实验和转化研究揭示了对神经回路形成至关重要且在围产期可能处于风险中的发育机制。这些机制包括围产期最后一波神经发生的存在、γ-氨基丁酸(GABA)中间神经元的迁移和整合;对于关键期可塑性至关重要的GABA中间神经元网络的成熟;引导丘脑皮质连接的板下神经元的瞬时连接,以及维持轴突生长和神经元存活并执行突触修剪的神经元周围小胶质细胞网络。此外,最近的研究表明出生在触发皮质神经回路成熟级联反应中起关键作用。

总结

皮质神经回路成熟改变是围产期损伤和早产中一个日益被认识到的方面。已揭示了潜在机制,但需要进一步的转化研究,以将细胞和分子水平的细微变化与实验模型中的成像数据联系起来。

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