神经纤维瘤病患者工作记忆表现的神经解剖学相关性

Cerebral cortex communications Pub Date : 2022-05-19 eCollection Date: 2022-01-01 DOI:10.1093/texcom/tgac021
Cameron Sawyer, Jonathan Green, Ben Lim, Gorana Pobric, JeYoung Jung, Grace Vassallo, D Gareth Evans, Charlotte J Stagg, Laura M Parkes, Stavros Stivaros, Nils Muhlert, Shruti Garg
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引用次数: 0

摘要

背景:1型神经纤维瘤病(NF1)是一种单基因神经发育障碍,与认知和行为障碍有关,特别是与工作记忆缺陷有关。本研究调查了患有NF1的青少年与正常发育的对照组相比脑容量的差异,以及工作记忆任务表现与这些差异之间的关系。方法:将31例11 ~ 17岁青少年与年龄、性别匹配的对照组进行比较。NF1受试者在基线时使用详细的多模态工作记忆测量进行评估,随后进行3T MR扫描。使用基于体素的形态学方法来估计NF1组和对照组之间的总灰质和区域灰质(GM)体积差异。工作记忆指标采用主成分分析(PCA)方法。最后,在调整了年龄、性别和总颅内容积后,我们检查了来自PCA的成分与NF1组GM体积变化的相关性。结果:NF1队列显示,与对照组相比,双侧丘脑、苍白球、尾状核、壳核、中脑背侧和小脑的GM体积增加。PCA得到了三个独立的行为成分,分别反映了高记忆负荷、低记忆负荷和听觉工作记忆。相关分析显示,下外侧顶叶皮层体积的增加与高工作记忆负荷任务的较差表现有关。默认模式网络(DMN)的关键组成部分后扣带皮层的体积增加与低工作记忆负荷任务的较差表现显著相关。讨论:这是第一次研究NF1青少年工作记忆的神经解剖学相关性。与先前的文献一致,我们发现NF1队列的皮质下脑容量更大。后扣带皮质体积与低记忆负荷条件下的表现之间的密切联系支持了先前提出的DMN结构发育缺陷的假设,而DMN结构发育缺陷反过来可能导致NF1的认知障碍。
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Neuroanatomical correlates of working memory performance in Neurofibromatosis 1.

Introduction: Neurofibromatosis 1 (NF1) is a single-gene disorder associated with cognitive impairments, particularly with deficits in working memory. Prior research indicates that brain structure is affected in NF1, but it is unclear how these changes relate to aspects of cognition.

Methods: 29 adolescents aged 11-17 years were compared to age and sex-matched controls. NF1 subjects were assessed using detailed multimodal measurements of working memory at baseline followed by a 3T MR scan. A voxel-based morphometry approach was used to estimate the total and regional gray matter(GM) volumetric differences between the NF1 and control groups. The working memory metrics were subjected to a principal component analysis (PCA) approach.

Results: The NF1 groups showed increased gray matter volumes in the thalamus, corpus striatum, dorsal midbrain and cerebellum bilaterally in the NF1 group as compared to controls. Principal component analysis on the working memory metrics in the NF1 group yielded three independent factors reflecting high memory load, low memory load and auditory working memory. Correlation analyses revealed that increased volume of posterior cingulate cortex, a key component of the default mode network (DMN) was significantly associated with poorer performance on low working memory load tasks.

Conclusion: These results are consistent with prior work showing larger subcortical brain volumes in the NF1 cohort. The strong association between posterior cingulate cortex volume and performance on low memory load conditions supports hypotheses of deficient DMN structural development, which in turn may contribute to the cognitive impairments in NF1.

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