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Spatial Gradient of Microstructural Changes in Normal-Appearing White Matter in Tracts Affected by White Matter Hyperintensities in Older Age

机译:老年人中白质高信号影响的正常出现白质组织显微结构变化的空间梯度

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摘要

>Background and Purpose: White matter hyperintensities (WMH) are commonly seen on structural MRI of older adults and are a manifestation of underlying and adjacent tissue damage. WMH may contribute to cortical disconnection and cognitive dysfunction, but it is unclear how WMH affect intersecting or nearby white matter tract integrity. This study investigated the effects of WMH on tract microstructure by determining the spatial distribution of water diffusion characteristics in white matter tract areas adjacent to both intersecting and nearby WMH.>Methods: We used diffusion and structural MRI data from 52 representative participants from the Lothian Birth Cohort 1936 (72.2 ± 0.7 years) including a range of WMH burden. We segmented WMH, reconstructed 18 main white mater tracts using automated quantitative tractography and identified intersections between tracts and WMH. We measured mean diffusivity (MD) and fractional anisotropy (FA) in tract tissue at 2 mm incremental distances from tract-intersecting and non-intersecting (nearby) WMH.>Results: We observed a spatial gradient of FA and MD abnormalities for most white matter tracts which diminished with a similar distance pattern for tract-intersecting and nearby WMH. Overall, FA was higher, while MD was lower around nearby WMH compared with tract-intersecting WMH. However, for some tracts, FA was lower in areas immediately surrounding nearby WMH, although with faster normalization than in FA values surrounding tract-intersecting WMH.>Conclusion: WMH have similar effects on tract infrastructure, whether they be intersecting or nearby. However, the observed differences in tract water diffusion properties around WMH suggest that degenerative processes in small vessel disease may propagate further along the tract for intersecting WMH, while in some areas of the brain there is a larger and more localized accumulation of axonal damage in tract tissue nearby a non-connected WMH. Longitudinal studies should address differential effects of intersecting vs. nearby WMH progression and how they contribute to cognitive aging.
机译:>背景和目的:白质高信号(WMH)通常出现在老年人的结构MRI上,是潜在和邻近组织损伤的表现。 WMH可能导致皮质断开和认知功能障碍,但尚不清楚WMH如何影响相交或附近的白质束完整性。本研究通过确定与WMH相交和相邻的白质道区域水扩散特征的空间分布来研究WMH对道微结构的影响。>方法:我们使用了来自52个地区的扩散和结构MRI数据Lothian Birth Cohort 1936(72.2±0.7岁)的代表参加者,包括一系列WMH负担。我们对WMH进行了细分,使用自动定量束线照相术重建了18个主要的白色母线,并确定了这些线与WMH之间的交叉点。我们在距相交和不相交(附近)WMH 2 mm的增量距离处测量了导管组织中的平均扩散率(MD)和分数各向异性(FA)。>结果:我们观察到FA的空间梯度和大多数白质道的MD异常,以相交和附近WMH的相似距离模式减少。总体而言,与区域相交的WMH相比,附近WMH的FA较高,而MD较低。但是,对于某些区域,尽管与归一化的WMH周围的FA值相比,归一化要快于WMH周围的WFA周围区域的FA。>结论: WMH对区域基础设施的影响相似,无论它们是否相交或附近。但是,在WMH周围观察到的管道水扩散特性的差异表明,小血管疾病的退化过程可能沿着与WMH相交的管道进一步传播,而在大脑的某些区域中,轴突损伤在管道中更大且更局部地积聚。未连接的WMH附近的组织。纵向研究应解决相交与附近WMH进程的差异影响,以及它们如何促进认知衰老。

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