Progressive brain structural abnormality in cerebral small vessel disease assessed with MR imaging by using causal network analysis

IF 3.4 2区 医学 Q2 NEUROIMAGING
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Abstract

Aims

Cerebral small vessel disease (CSVD) is a complex condition characterized by a combination of microcirculation disorders and neurodegenerative processes, CSVD is associated with structural abnormalities in multiple brain regions. However, the progressive pattern of structural changes remains unknown.

Methods

In order to detail the progressive structural changes in CSVD patients according to the degree of cognitive impairment, we recruited 121 CSVD patients and 104 healthy controls (HCs). Voxel-based morphometry was employed to measure the gray matter volume (GMV) of each participant. According to the VICCCS-2 diagnostic criteria, patients were initially divided into three stage groups, then we investigated the GMV changes in each stage and their causal relationships using causal structure covariance network (CaSCN) analysis.

Results

Overall, patients with CSVD presented stage-specific GMV alterations compared with HCs. With the worsening of cognitive impairment, the decrease in gray matter volume starts from the right hippocampus and gradually spreads to the cortical-subcortical brain regions. Importantly, the right hippocampus in CSVD patients plays a driving role in the directional network and forms both positive and negative causal effect networks with cortical-subcortical brain regions.

Conclusions

This study reveals the significance of the right hippocampus as an early pathological area in CSVD patients and its causal impact on brain GMV changes with disease progression, shedding light on structural brain damage hierarchy and compensatory mechanisms.

利用因果网络分析评估脑小血管疾病磁共振成像中的渐进性脑结构异常
目的脑小血管病(CSVD)是一种复杂的疾病,其特点是微循环障碍和神经退行性过程的结合,CSVD与多个脑区的结构异常有关。为了根据认知障碍程度详细了解 CSVD 患者的渐进性结构变化,我们招募了 121 名 CSVD 患者和 104 名健康对照者(HCs)。我们采用体素形态计量法测量了每位受试者的灰质体积(GMV)。根据 VICCCS-2 诊断标准,患者被初步分为三个阶段组,然后我们利用因果结构协方差网络(CaSCN)分析法研究了每个阶段的 GMV 变化及其因果关系。随着认知障碍的加重,灰质体积的减少从右侧海马开始,逐渐扩散到皮质-皮质下脑区。重要的是,CSVD患者的右侧海马在定向网络中起着驱动作用,并与皮层-皮层下脑区形成正负因果效应网络。结论 本研究揭示了右侧海马作为CSVD患者早期病理区域的重要意义,以及其随着疾病进展对脑GMV变化的因果影响,揭示了脑结构损伤的层次结构和代偿机制。
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来源期刊
Neuroimage-Clinical
Neuroimage-Clinical NEUROIMAGING-
CiteScore
7.50
自引率
4.80%
发文量
368
审稿时长
52 days
期刊介绍: NeuroImage: Clinical, a journal of diseases, disorders and syndromes involving the Nervous System, provides a vehicle for communicating important advances in the study of abnormal structure-function relationships of the human nervous system based on imaging. The focus of NeuroImage: Clinical is on defining changes to the brain associated with primary neurologic and psychiatric diseases and disorders of the nervous system as well as behavioral syndromes and developmental conditions. The main criterion for judging papers is the extent of scientific advancement in the understanding of the pathophysiologic mechanisms of diseases and disorders, in identification of functional models that link clinical signs and symptoms with brain function and in the creation of image based tools applicable to a broad range of clinical needs including diagnosis, monitoring and tracking of illness, predicting therapeutic response and development of new treatments. Papers dealing with structure and function in animal models will also be considered if they reveal mechanisms that can be readily translated to human conditions.
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