Quantitative Analysis of Automatically Segmented Perivascular Space in Subcortical White Matter of Parkinson's Disease: Its Clinical Relevance.

IF 4 4区 医学 Q2 CLINICAL NEUROLOGY
Chae Jung Park, Yoonho Nam, Hyun-Jae Jeong, Han Kyu Na, Kyunghwa Han, Hye Sun Lee, Jun Hwee Kim, Seung-Koo Lee, Phil Hyu Lee, Yun Joong Kim, Young H Sohn, Seok Jong Chung
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Abstract

Objective: To examine the relationship between automatically quantified perivascular space (PVS) extent located in the subcortical white matter (WM), baseline motor deficits and cognitive function, as well as longitudinal motor and cognitive outcomes in patients with Parkinson's disease (PD).

Methods: This retrospective cohort study included 270 consecutive patients with newly diagnosed PD. Subcortical WM PVS was automatically segmented using high-resolution T2-weighted images, and automated PVS (aPVS) volume and count were calculated. Multivariate linear regression analyses evaluated the association between subcortical WM aPVS and baseline Unified PD Rating Scale Part III, Mini-Mental State Examination, and Montreal Cognitive Assessment scores. Cox regression models assessed the prognostic value of baseline subcortical WM aPVS for the risk of developing freezing of gait (FOG) and dementia.

Results: Greater subcortical WM aPVS volume, particularly in the frontal and parietal regions, correlated with milder parkinsonian motor deficits and better global cognitive function at baseline. Higher subcortical WM aPVS volume, especially in the frontal region, was linked to a lower risk of FOG (hazard ratio (HR), 0.5; 95% confidence interval (CI), 0.2-0.9; p=0.028). Additionally, greater subcortical WM aPVS volume, especially in the occipital region, was associated with a reduced risk of dementia conversion (HR, 0.4; 95% CI, 0.1-1.0; p=0.041) in Cox regression models. Higher subcortical WM aPVS count was linked to better baseline motor symptoms, cognitive function, and lower risk of FOG.

Conclusions: These findings indicate that larger subcortical WM aPVS volume or higher aPVS count can be an indicator of favorable clinical outcomes in PD.

帕金森病皮层下白质自动分割血管周围空间的定量分析及其临床意义。
目的:探讨帕金森病(PD)患者皮质下白质(WM)自动量化血管周围间隙(PVS)范围与基线运动缺陷和认知功能以及纵向运动和认知预后的关系。方法:本回顾性队列研究纳入270例连续的新诊断PD患者。采用高分辨率t2加权图像自动分割皮层下WM PVS,计算自动PVS (automated PVS, aPVS)体积和计数。多变量线性回归分析评估皮质下WM aPVS与基线统一PD评定量表第III部分、迷你精神状态检查和蒙特利尔认知评估得分之间的关系。Cox回归模型评估了基线皮质下WM aPVS对发生步态冻结(FOG)和痴呆风险的预后价值。结果:更大的皮质下WM aPVS体积,特别是在额叶和顶叶区域,与较轻的帕金森运动缺陷和较好的整体认知功能相关。较高的皮质下WM aPVS体积,尤其是额叶区域,与较低的FOG风险相关(风险比(HR), 0.5;95%置信区间(CI), 0.2-0.9;p = 0.028)。此外,在Cox回归模型中,更大的皮质下WM aPVS体积,特别是在枕区,与痴呆转化风险降低相关(HR, 0.4; 95% CI, 0.1-1.0; p=0.041)。较高的皮质下WM aPVS计数与较好的基线运动症状、认知功能和较低的FOG风险相关。结论:这些发现表明,皮质下WM aPVS体积较大或aPVS计数较高可能是PD患者临床预后良好的指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Movement Disorders
Journal of Movement Disorders CLINICAL NEUROLOGY-
CiteScore
2.50
自引率
5.10%
发文量
49
审稿时长
12 weeks
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