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与脑白质高信号相关的功能连接变化差异。

Divergent functional connectivity changes associated with white matter hyperintensities.

机构信息

Department of Clinical Sciences, Clinical Memory Research Unit, Faculty of Medicine, Lund University, Lund/Malmö, Sweden. Postal address: Memory Clinic, Skåne University Hospital, SE-20502 Malmö, Sweden.

Department of Clinical Sciences, Clinical Memory Research Unit, Faculty of Medicine, Lund University, Lund/Malmö, Sweden. Postal address: Memory Clinic, Skåne University Hospital, SE-20502 Malmö, Sweden; Danish Research Centre for Magnetic Resonance, Centre for Functional and Diagnostic Imaging and Research, Copenhagen University Hospital Hvidovre, Hvidovre, Denmark.

出版信息

Neuroimage. 2024 Aug 1;296:120672. doi: 10.1016/j.neuroimage.2024.120672. Epub 2024 Jun 6.

Abstract

Age-related white matter hyperintensities are a common feature and are known to be negatively associated with structural integrity, functional connectivity, and cognitive performance. However, this has yet to be fully understood mechanistically. We analyzed multiple MRI modalities acquired in 465 non-demented individuals from the Swedish BioFINDER study including 334 cognitively normal and 131 participants with mild cognitive impairment. White matter hyperintensities were automatically quantified using fluid-attenuated inversion recovery MRI and parameters from diffusion tensor imaging were estimated in major white matter fibre tracts. We calculated fMRI resting state-derived functional connectivity within and between predefined cortical regions structurally linked by the white matter tracts. How change in functional connectivity is affected by white matter lesions and related to cognition (in the form of executive function and processing speed) was explored. We examined the functional changes using a measure of sample entropy. As expected hyperintensities were associated with disrupted structural white matter integrity and were linked to reduced functional interregional lobar connectivity, which was related to decreased processing speed and executive function. Simultaneously, hyperintensities were also associated with increased intraregional functional connectivity, but only within the frontal lobe. This phenomenon was also associated with reduced cognitive performance. The increased connectivity was linked to increased entropy (reduced predictability and increased complexity) of the involved voxels' blood oxygenation level-dependent signal. Our findings expand our previous understanding of the impact of white matter hyperintensities on cognition by indicating novel mechanisms that may be important beyond this particular type of brain lesions.

摘要

年龄相关的脑白质高信号是一种常见特征,已知其与结构完整性、功能连接和认知表现呈负相关。然而,这在机制上尚未得到充分理解。我们分析了来自瑞典 BioFINDER 研究的 465 名非痴呆个体的多种 MRI 模态,包括 334 名认知正常和 131 名轻度认知障碍参与者。脑白质高信号使用液体衰减反转恢复 MRI 自动量化,并在主要白质纤维束中估计扩散张量成像的参数。我们计算了静息状态 fMRI 内在和皮质区域之间的功能连接,这些区域通过白质束在结构上连接。我们探索了功能连接的变化如何受到脑白质病变的影响,并与认知(以执行功能和处理速度的形式)相关。我们使用样本熵来衡量功能变化。正如预期的那样,高信号与白质结构完整性受损有关,与区域间额叶连接减少有关,这与处理速度和执行功能下降有关。同时,高信号也与局部区域内功能连接增加有关,但仅限于额叶。这种现象也与认知表现下降有关。增加的连接与涉及的体素血氧水平依赖信号的熵增加(可预测性降低和复杂性增加)有关。我们的发现通过表明可能对认知有重要影响的新机制,扩展了我们对脑白质高信号对认知影响的先前理解,而不仅仅是针对这种特定类型的脑损伤。

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