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White matter organization in developmental coordination disorder: A pilot study exploring the added value of constrained spherical deconvolution

机译:发育协调障碍中的白质组织:探索受约束球面反褶积的附加价值的初步研究

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摘要

Previous studies of white matter organization in sensorimotor tracts in developmental coordination disorder (DCD) have adopted diffusion tensor imaging (DTI), a method unable to reconcile pathways with ‘crossing fibres’. In response to limitations of the commonly adopted DTI approach, the present study employed a framework that can reconcile the ‘crossing fibre’ problem (i.e., constrained spherical deconvolution- CSD) to characterize white matter tissue organization of sensorimotor tracts in young adults with DCD. Participants were 19 healthy adults aged 18–46: 7 met diagnostic criteria for DCD (4 females) and 12 were controls (3 females). All underwent high angular diffusion MRI. After preprocessing, the left and right corticospinal tracts (CST) and superior longitudinal fasciculi (SLF) were delineated and all tracts were then generated using both CSD and DTI tractography respectively. Based on the CSD model, individuals with DCD demonstrated significantly decreased mean apparent fibre density (AFD) in the left SLF relative to controls (with large effect size, Cohen's d = 1.32) and a trend for decreased tract volume of the right SLF (with medium-large effect size, Cohen's d = 0.73). No differences in SLF microstructure were found between groups using DTI, nor were differences in CST microstructure observed across groups regardless of hemisphere or diffusion model. Our data are consistent with the view that motor impairment characteristic of DCD may be subserved by white matter abnormalities in sensorimotor tracts, specifically the left and right SLF. Our data further highlight the benefits of higher order diffusion MRI (e.g. CSD) relative to DTI for clarifying earlier inconsistencies in reports speaking to white matter organization in DCD, and its contribution to poor motor skill in DCD.
机译:先前关于发育协调障碍(DCD)感觉运动区白质组织的研究已采用扩散张量成像(DTI),该方法无法与“交叉纤维”协调通路。为了应对常用DTI方法的局限性,本研究采用了一个框架,该框架可以解决“交叉纤维”问题(即,受约束的球形反褶积-CSD),以表征DCD成年人的感觉运动道白质组织。参加者为19位18-46岁的健康成年人:其中7位符合DCD诊断标准(4位女性),而12位为对照组(3位女性)。所有患者均接受了高角度扩散MRI。预处理后,划定左右皮质脊髓束(CST)和上纵筋膜(SLF),然后分别使用CSD和DTI束摄影术生成所有束。根据CSD模型,DCD患者的左SLF的平均表观纤维密度(AFD)相对于对照显着降低(效应值较大,Cohen d = 1.32),并且右SLF的管道体积减小趋势中等大小的效果,Cohen d = 0.73)。无论使用半球或扩散模型,使用DTI在各组之间均未发现SLF微结构的差异,也未在各组之间观察到CST微结构的差异。我们的数据与以下观点相一致:DCD的运动障碍特征可能由感觉运动区的白质异常(尤其是左和右SLF)所保留。我们的数据进一步强调了相对于DTI而言,高阶扩散MRI(例如CSD)的好处是它可以澄清与DCD中的白质组织说话的报告中的早期不一致之处,以及它对DCD中较差的运动技能的贡献。

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