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Delineation of cortical pathology in multiple sclerosis using multi-surface magnetization transfer ratio imaging

机译:多表面磁化转移率成像在多发性硬化中的皮质病理学描述

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The purpose of our study was to evaluate the utility of measurements of cortical surface magnetization transfer ratio (csMTR) on the inner, mid and outer cortical boundaries as clinically accessible biomarkers of cortical gray matter pathology in multiple sclerosis (MS). Twenty-five MS patients and 12 matched controls were recruited from the MS Clinic of the Montreal Neurological Institute. Anatomical and magnetization transfer ratio (MTR) images were acquired using 3 Tesla MRI at baseline and two-year time-points. MTR maps were smoothed along meshes representing the inner, mid and outer neocortical boundaries. To evaluate csMTR reductions suggestive of sub-pial demyelination in MS patients, a mixed model analysis was carried out at both the individual vertex level and in anatomically parcellated brain regions. Our results demonstrate that focal areas of csMTR reduction are most prevalent along the outer cortical surface in the superior temporal and posterior cingulate cortices, as well as in the cuneus and precentral gyrus. Additionally, age regression analysis identified that reductions of csMTR in MS patients increase with age but appear to hit a plateau in the outer caudal anterior cingulate, as well as in the precentral and postcentral cortex. After correction for the naturally occurring gradient in cortical MTR, the difference in csMTR between the inner and outer cortex in focal areas in the brains of MS patients correlated with clinical disability. Overall, our findings support multi-surface analysis of csMTR as a sensitive marker of cortical sub-pial abnormality indicative of demyelination in MS patients. Highlights ? Novel cortical MTR analysis identifies areas of sub-pial abnormality in MS patients. ? A greater area of sub-pial abnormality in MS exists on the outer cortical layer. ? Cortical regions most affected were involved in executive function and processing speed. ? Normalized differences between outer and inner cortex MTR correlate with EDSS in MS. ? This technique can be applied for clinical trials at the MRI field strength of 3 T.
机译:我们研究的目的是评估皮质内,中,外皮质边界上皮质表面磁化传递比(csMTR)的测量作为多发性硬化症(MS)中皮质灰质病理的临床可及生物标志物的实用性。从蒙特利尔神经病学研究所的MS诊所招募了25名MS患者和12位相匹配的对照。在基线和两年时间点使用3 Tesla MRI采集了解剖学和磁化传递比(MTR)图像。沿代表内部,中间和外部新皮层边界的网格对MTR贴图进行平滑处理。为了评估提示MS患者的cSMTR减少,可能是由于脊髓下髓鞘脱髓鞘,在个体的顶点水平和解剖性脑部区域均进行了混合模型分析。我们的结果表明,沿颞叶和后扣带状皮层的皮质外表面,以及在楔骨和前中央回中,csMTR减少的焦点区域最普遍。此外,年龄回归分析表明,MS患者的csMTR降低随着年龄的增长而增加,但似乎在尾外侧前扣带回以及中央前和中央后皮层达到了平稳状态。校正了皮质MTR的自然梯度后,MS患者大脑局灶区域内外皮层之间的csMTR差异与临床残疾有关。总体而言,我们的研究结果支持csMTR的多表面分析,将其作为皮层下皮层异常的敏感标志物,指示MS患者脱髓鞘。强调 ?新颖的皮质MTR分析可确定MS患者的亚皮下异常区域。 ? MS的更大范围的亚皮下异常存在于外皮层上。 ?受影响最大的皮质区域参与执行功能和处理速度。 ?外皮和内皮MTR之间的归一化差异与MS中的EDSS相关。 ?这项技术可用于3 T的MRI场强的临床试验。

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