Thalamic-limbic circuit dysfunction and white matter topological alteration in Parkinson’s disease are correlated with gait disturbance

IF 4.1 2区 医学 Q2 GERIATRICS & GERONTOLOGY Frontiers in Aging Neuroscience Pub Date : 2024-09-04 DOI:10.3389/fnagi.2024.1426754
Qingguo Ren, Shuai Zhao, Rong Yu, Ziliang Xu, Shuangwu Liu, Bin Zhang, Qicai Sun, Qingjun Jiang, Cuiping Zhao, Xiangshui Meng
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Abstract

BackgroundLimbic structures have recently garnered increased attention in Parkinson’s disease (PD) research. This study aims to explore changes at the whole-brain level in the structural network, specifically the white matter fibres connecting the thalamus and limbic system, and their correlation with the clinical characteristics of patients with PD.MethodsBetween December 2020 and November 2021, we prospectively enrolled 42 patients with PD and healthy controls at the movement disorder centre. All participants underwent diffusion tensor imaging (DTI), 3D T1-weighted imaging (3D-T1WI), and routine brain magnetic resonance imaging on a 3.0 T MR scanner. We employed the tract-based spatial statistical (TBSS) analytic approach, examined structural network properties, and conducted probabilistic fibre tractography to identify alterations in white matter pathways and the topological organisation associated with PD.ResultsIn patients with PD, significant changes were observed in the fibrous tracts of the prefrontal lobe, corpus callosum, and thalamus. Notably, the fibrous tracts in the prefrontal lobe and corpus callosum showed a moderate negative correlation with the Freezing of Gait Questionnaire (FOG-Q) scores (r = −0.423, p = 0.011). The hippocampus and orbitofrontal gyrus exhibited more fibre bundle parameter changes than other limbic structures. The mean streamline length between the thalamus and the orbitofrontal gyrus demonstrated a moderate negative correlation with Movement Disorder Society Unified Parkinson’s Disease Rating Scale (MDS-UPDRS) III (r = −0.435, p = 0.006). Topological parameters, including characteristic path length (Lp), global efficiency (Eg), normalised shortest path length (λ) and nodal local efficiency (Nle), correlated moderately with the MDS-UPDRS, HAMA, MoCA, PDQ-39, and FOG-Q, respectively.ConclusionDTI is a valuable tool for detecting changes in water molecule dispersion and the topological structure of the brain in patients with PD. The thalamus may play a significant role in the gait abnormalities observed in PD.
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帕金森病丘脑-边缘回路功能障碍和白质拓扑结构改变与步态障碍有关
背景最近,帕金森病(PD)的研究越来越关注边缘系统结构。本研究旨在探讨结构网络全脑水平的变化,特别是连接丘脑和边缘系统的白质纤维的变化及其与帕金森病患者临床特征的相关性。方法在 2020 年 12 月至 2021 年 11 月期间,我们在运动障碍中心前瞻性地招募了 42 名帕金森病患者和健康对照组。所有参与者都在 3.0 T MR 扫描仪上接受了弥散张量成像(DTI)、三维 T1 加权成像(3D-T1WI)和常规脑磁共振成像。我们采用了基于纤维束的空间统计(TBSS)分析方法,检查了结构网络特性,并进行了概率纤维束成像,以确定与帕金森病相关的白质通路和拓扑组织的改变。值得注意的是,前额叶和胼胝体的纤维束与步态冻结问卷(FOG-Q)得分呈中度负相关(r = -0.423,p = 0.011)。与其他边缘结构相比,海马和眶额回表现出更多的纤维束参数变化。丘脑和眶额回之间的平均流线长度与运动障碍协会统一帕金森病评分量表(MDS-UPDRS)III呈中度负相关(r = -0.435,p = 0.006)。拓扑参数,包括特征路径长度(Lp)、全局效率(Eg)、归一化最短路径长度(λ)和结点局部效率(Nle),分别与 MDS-UPDRS、HAMA、MoCA、PDQ-39 和 FOG-Q 中度相关。丘脑可能在帕金森氏症步态异常中起着重要作用。
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来源期刊
Frontiers in Aging Neuroscience
Frontiers in Aging Neuroscience GERIATRICS & GERONTOLOGY-NEUROSCIENCES
CiteScore
6.30
自引率
8.30%
发文量
1426
期刊介绍: Frontiers in Aging Neuroscience is a leading journal in its field, publishing rigorously peer-reviewed research that advances our understanding of the mechanisms of Central Nervous System aging and age-related neural diseases. Specialty Chief Editor Thomas Wisniewski at the New York University School of Medicine is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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