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个体内信息处理速度的变异性反映了多发性硬化症中的白质微观结构。

Intra-individual variability in information processing speed reflects white matter microstructure in multiple sclerosis.

机构信息

McConnell Brain Imaging Centre, Montreal Neurological Institute, McGill University, Room WB325, 3801 University St, Montreal, Quebec H3A 2B4, Canada ; Department of Psychology and Neuroscience, Dalhousie University, Life Sciences Centre, P.O. Box 15000, Halifax, Nova Scotia B3H 4R2, Canada.

出版信息

Neuroimage Clin. 2013 Jun 28;2:894-902. doi: 10.1016/j.nicl.2013.06.012. eCollection 2013.

Abstract

Slowed information processing speed is commonly reported in persons with multiple sclerosis (MS), and is typically investigated using clinical neuropsychological tests, which provide sensitive indices of mean-level information processing speed. However, recent studies have demonstrated that within-person variability or intra-individual variability (IIV) in information processing speed may be a more sensitive indicator of neurologic status than mean-level performance on clinical tests. We evaluated the neural basis of increased IIV in mildly affected relapsing-remitting MS patients by characterizing the relation between IIV (controlling for mean-level performance) and white matter integrity using diffusion tensor imaging (DTI). Twenty women with relapsing-remitting MS and 20 matched control participants completed the Computerized Test of Information Processing (CTIP), from which both mean response time and IIV were calculated. Other clinical measures of information processing speed were also collected. Relations between IIV on the CTIP and DTI metrics of white matter microstructure were evaluated using tract-based spatial statistics. We observed slower and more variable responses on the CTIP in MS patients relative to controls. Significant relations between white matter microstructure and IIV were observed for MS patients. Increased IIV was associated with reduced integrity in more white matter tracts than was slowed information processing speed as measured by either mean CTIP response time or other neuropsychological test scores. Thus, despite the common use of mean-level performance as an index of cognitive dysfunction in MS, IIV may be more sensitive to the overall burden of white matter disease at the microstructural level. Furthermore, our study highlights the potential value of considering within-person fluctuations, in addition to mean-level performance, for uncovering brain-behavior relationships in neurologic disorders with widespread white matter pathology.

摘要

信息处理速度减慢在多发性硬化症(MS)患者中较为常见,通常使用临床神经心理学测试进行研究,这些测试提供了信息处理速度的平均水平的敏感指标。然而,最近的研究表明,信息处理速度的个体内变异性(IIV)或个体内变异性可能比临床测试的平均水平表现更能敏感地反映神经状态。我们通过使用弥散张量成像(DTI)来描述信息处理速度的个体内变异性(控制平均水平表现)与白质完整性之间的关系,评估了轻度复发缓解型 MS 患者中 IIV 增加的神经基础。20 名复发缓解型 MS 女性患者和 20 名匹配的对照组参与者完成了计算机信息处理测试(CTIP),从中计算出了平均反应时间和 IIV。还收集了其他信息处理速度的临床测量值。使用基于束的空间统计学来评估 CTIP 上的 IIV 与白质微观结构的 DTI 指标之间的关系。与对照组相比,MS 患者在 CTIP 上的反应较慢且更不稳定。MS 患者的白质微观结构与 IIV 之间存在显著关系。与平均 CTIP 反应时间或其他神经心理学测试分数所衡量的信息处理速度减慢相比,增加的 IIV 与更多白质束的完整性降低有关。因此,尽管平均水平表现通常被用作 MS 认知功能障碍的指标,但 IIV 可能更敏感地反映微观结构水平上的白质疾病的整体负担。此外,我们的研究强调了除了平均水平表现外,还考虑个体内波动,以揭示具有广泛白质病变的神经障碍中的大脑-行为关系的潜在价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6939/3777766/016336338047/gr1.jpg

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