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发育中小脑的结构-功能关系:来自早期小脑损伤和神经发育障碍的证据。

Structure-function relationships in the developing cerebellum: Evidence from early-life cerebellar injury and neurodevelopmental disorders.

作者信息

Stoodley Catherine J, Limperopoulos Catherine

机构信息

Department of Psychology and Center for Behavioral Neuroscience, American University, Washington DC, USA.

Diagnostic Imaging and Radiology, Children's National Health Systems, Washington DC, USA.

出版信息

Semin Fetal Neonatal Med. 2016 Oct;21(5):356-64. doi: 10.1016/j.siny.2016.04.010. Epub 2016 May 12.

Abstract

The increasing appreciation of the role of the cerebellum in motor and non-motor functions is crucial to understanding the outcomes of acquired cerebellar injury and developmental lesions in high-risk fetal and neonatal populations, children with cerebellar damage (e.g. posterior fossa tumors), and neurodevelopmental disorders (e.g. autism). We review available data regarding the relationship between the topography of cerebellar injury or abnormality and functional outcomes. We report emerging structure-function relationships with specific symptoms: cerebellar regions that interconnect with sensorimotor cortices are associated with motor impairments when damaged; disruption to posterolateral cerebellar regions that form circuits with association cortices impact long-term cognitive outcomes; and midline posterior vermal damage is associated with behavioral dysregulation and an autism-like phenotype. We also explore the impact of age and the potential role for critical periods on cerebellar structure and child function. These findings suggest that the cerebellum plays a critical role in motor, cognitive, and social-behavioral development, possibly via modulatory effects on the developing cerebral cortex.

摘要

人们对小脑在运动和非运动功能中作用的认识不断加深,这对于理解高危胎儿和新生儿群体、小脑损伤儿童(如后颅窝肿瘤)以及神经发育障碍(如自闭症)患者后天小脑损伤和发育性病变的后果至关重要。我们回顾了有关小脑损伤或异常的部位与功能结果之间关系的现有数据。我们报告了新出现的结构 - 功能关系及其特定症状:与感觉运动皮层相互连接的小脑区域受损时与运动障碍相关;与联合皮层形成回路的小脑后外侧区域受到破坏会影响长期认知结果;而小脑蚓部中线后部损伤与行为失调和自闭症样表型有关。我们还探讨了年龄的影响以及关键期对小脑结构和儿童功能的潜在作用。这些发现表明,小脑可能通过对发育中的大脑皮层的调节作用,在运动、认知和社会行为发展中发挥关键作用。

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