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左脑上纵束和丘脑前辐射的变化与发育性计算障碍有关。

Changes in the superior longitudinal fasciculus and anterior thalamic radiation in the left brain are associated with developmental dyscalculia.

作者信息

Ayyıldız Nazife, Beyer Frauke, Üstün Sertaç, Kale Emre H, Mançe Çalışır Öykü, Uran Pınar, Öner Özgür, Olkun Sinan, Anwander Alfred, Witte A Veronica, Villringer Arno, Çiçek Metehan

机构信息

Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

Department of Interdisciplinary Neuroscience, Health Sciences Institute and Brain Research Center, Ankara University, Ankara, Türkiye.

出版信息

Front Hum Neurosci. 2023 Sep 28;17:1147352. doi: 10.3389/fnhum.2023.1147352. eCollection 2023.

Abstract

Developmental dyscalculia is a neurodevelopmental disorder specific to arithmetic learning even with normal intelligence and age-appropriate education. Difficulties often persist from childhood through adulthood lowering the individual's quality of life. However, the neural correlates of developmental dyscalculia are poorly understood. This study aimed to identify brain structural connectivity alterations in developmental dyscalculia. All participants were recruited from a large scale, non-referred population sample in a longitudinal design. We studied 10 children with developmental dyscalculia (11.3 ± 0.7 years) and 16 typically developing peers (11.2 ± 0.6 years) using diffusion-weighted magnetic resonance imaging. We assessed white matter microstructure with tract-based spatial statistics in regions-of-interest tracts that had previously been related to math ability in children. Then we used global probabilistic tractography for the first time to measure and compare tract length between developmental dyscalculia and typically developing groups. The high angular resolution diffusion-weighted magnetic resonance imaging and crossing-fiber probabilistic tractography allowed us to evaluate the length of the pathways compared to previous studies. The major findings of our study were reduced white matter coherence and shorter tract length of the left superior longitudinal/arcuate fasciculus and left anterior thalamic radiation in the developmental dyscalculia group. Furthermore, the lower white matter coherence and shorter pathways tended to be associated with the lower math performance. These results from the regional analyses indicate that learning, memory and language-related pathways in the left hemisphere might be related to developmental dyscalculia in children.

摘要

发育性计算障碍是一种特定于算术学习的神经发育障碍,即便个体智力正常且接受适龄教育也会出现。这些困难往往从儿童期持续至成年期,降低个体的生活质量。然而,人们对发育性计算障碍的神经关联了解甚少。本研究旨在确定发育性计算障碍患者脑结构连接的改变。所有参与者均从大规模、非转诊人群样本中通过纵向设计招募而来。我们使用扩散加权磁共振成像研究了10名患有发育性计算障碍的儿童(11.3±0.7岁)和16名发育正常的同龄人(11.2±0.6岁)。我们采用基于体素的空间统计学方法,在先前已证实与儿童数学能力相关的感兴趣区域内评估白质微观结构。然后,我们首次使用全局概率纤维束成像技术来测量和比较发育性计算障碍组与发育正常组之间的纤维束长度。与以往研究相比,高角分辨率扩散加权磁共振成像和交叉纤维概率纤维束成像使我们能够评估神经通路的长度。我们研究的主要发现是,发育性计算障碍组的白质连贯性降低,左侧上纵束/弓状束和左侧丘脑前辐射的纤维束长度缩短。此外,白质连贯性较低和神经通路较短往往与较低的数学成绩相关。这些区域分析结果表明,左半球中与学习、记忆和语言相关的神经通路可能与儿童发育性计算障碍有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1509/10586317/5f8832ad4eec/fnhum-17-1147352-g001.jpg

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