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胼胝体发育不全的前连合和后连合:注意过程的替代途径?

Anterior and posterior commissures in agenesis of the corpus callosum: Alternative pathways for attention processes?

机构信息

Laboratory for Behavioral Neurology and Imaging of Cognition, University of Geneva, Switzerland; Brain and Mind Research, Clinical Sciences, Murdoch Children's Research Institute, Melbourne, Australia; School of Psychological Sciences, University of Melbourne, Melbourne, Australia.

Brain and Mind Research, Clinical Sciences, Murdoch Children's Research Institute, Melbourne, Australia; School of Life and Health Sciences & Aston Neuroscience Institute, Aston University, Birmingham, B4 7ET, UK; School of Psychology, Faculty of Health, Melbourne Burwood Campus, Deakin University, Geelong, Victoria, Australia.

出版信息

Cortex. 2019 Dec;121:454-467. doi: 10.1016/j.cortex.2019.09.014. Epub 2019 Oct 23.

Abstract

Developmental absence (agenesis) of the corpus callosum (AgCC) is a congenital brain malformation resulting from disruption of corpus callosum formation, a structure that is crucial for the transfer and integration of information, including attention processes, across the brain. This study aimed to investigate previously proposed candidates for alternative inter-hemispheric pathways in AgCC by examining (1) white matter volume and microstructure of the anterior and posterior commissures in children with AgCC compared to typically developing controls (TDC), and (2) in children with AgCC, examine the associations of white matter volume and microstructure of the anterior and posterior commissures and any remaining corpus callosum with attention processes. Participants were 21 children with AgCC (13 complete, 8 partial) recruited from The Royal Children's Hospital, Melbourne, and 30 TDC aged 8-17 years. T1-and diffusion-weighted MR sequences were used to calculate volume and microstructural parameters. Neuropsychological testing assessed attention processes. We found the anterior commissure was significantly larger in volume in children with AgCC than TDC (p = .027), with reduced mean FA (p = .001) associated with increased mean RD (p < .001). In children with AgCC, we found microstructural properties of the anterior commissure associated with attentional processes, specifically, mean FA of the anterior commissure was associated with better divided attention (p = .03), and the association between alerting attention and mean AD and RD was found to be moderated by age (p = .027, p = .008) and the degree of corpus callosum agenesis (p = .025, p = .016). Furthermore, in partial AgCC, larger posterior commissure volume was associated with better orienting attention (p = .035). In conclusion, we provide evidence that the volume and microstructure of the anterior commissure are altered in children with AgCC, and this neuroplastic response might have an influence on attention processes.

摘要

胼胝体发育不全(agenesis)是一种先天性脑畸形,是由于胼胝体形成过程中断而导致的,胼胝体是大脑中信息传递和整合的关键结构,包括注意力过程。本研究旨在通过检查(1)与典型发育对照组(TDC)相比,胼胝体发育不全患儿的前连合和后连合的白质体积和微观结构,以及(2)在胼胝体发育不全患儿中,检查前连合和后连合的白质体积和微观结构与任何残留胼胝体与注意力过程的相关性,来研究先前提出的替代胼胝体发育不全患儿的双侧半球间通路的候选者。参与者为 21 名来自墨尔本皇家儿童医院的胼胝体发育不全患儿(完全性 13 例,部分性 8 例)和 30 名 TDC,年龄 8-17 岁。使用 T1 和弥散加权磁共振序列计算体积和微观结构参数。神经心理学测试评估注意力过程。我们发现,与 TDC 相比,胼胝体发育不全患儿的前连合体积明显更大(p=0.027),平均 FA 降低(p=0.001)与平均 RD 增加相关(p<0.001)。在胼胝体发育不全患儿中,我们发现前连合的微观结构特性与注意力过程相关,具体而言,前连合的平均 FA 与更好的分散注意力相关(p=0.03),警觉注意力与平均 AD 和 RD 的关系受年龄(p=0.027,p=0.008)和胼胝体发育不全程度(p=0.025,p=0.016)的调节。此外,在部分性胼胝体发育不全中,较大的后连合体积与更好的定向注意力相关(p=0.035)。总之,我们提供的证据表明,胼胝体发育不全患儿的前连合体积和微观结构发生了改变,这种神经可塑性反应可能对注意力过程有影响。

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