Structural disruption in subjective cognitive decline and mild cognitive impairment.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Jie Song, Han Yang, Hailang Yan, Qian Lu, Lei Guo, Hui Zheng, Tianjiao Zhang, Bin Lin, Zhiyong Zhao, Chuan He, Ying Shen
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Abstract

Subjective cognitive decline (SCD) marks the initial stage in Alzheimer's disease continuum. Nonetheless, current research findings regarding brain structural changes in the SCD are inconsistent. In this study, 37 SCD patients, 28 mild cognitive impairment (MCI) patients, and 42 healthy controls (HC) were recruited to investigate structural alterations. Morphological and microstructural differences among the three groups were analyzed based on T1- and diffusion-weighted images, correlating them with neuropsychological assessments. Additionally, classification analysis was performed by using support vector machines (SVM) categorize participants into three groups based on MRI features. Both SCD and MCI showed decreased volume in left inferior parietal lobe (IPL) compared to HC, while SCD showed altered morphologies in the right inferior temporal gyrus (ITG), right insula and right amygdala, and microstructures in fiber tracts of the right ITG, lateral occipital cortex (LOC) and insula relative to MCI. Moreover, the volume in the left IPL, right LOC, right amygdala and diffusivity value in fiber tracts of right LOC were significantly correlated with cognitive functions across all subjects. The classification models achieved an accuracy of > 0.7 (AUC = 0.8) in distinguishing the three groups. Our findings suggest that SCD and MCI share similar atrophy in the IPL but show more differences in morphological and microstructural features of cortical-subcortical areas.

主观认知能力下降和轻度认知障碍的结构性破坏。
主观认知能力下降(SCD)是阿尔茨海默病的初始阶段。然而,目前关于 SCD 中大脑结构变化的研究结果并不一致。本研究招募了 37 名 SCD 患者、28 名轻度认知障碍(MCI)患者和 42 名健康对照组(HC),以调查其结构变化。根据 T1 和弥散加权图像分析了三组患者的形态学和微观结构差异,并将其与神经心理学评估结果进行了关联。此外,还使用支持向量机(SVM)进行了分类分析,根据磁共振成像特征将参与者分为三组。与HC相比,SCD和MCI患者的左侧顶下叶(IPL)体积均有所减小;与MCI相比,SCD患者的右侧颞下回(ITG)、右侧岛叶和右侧杏仁核的形态以及右侧ITG、外侧枕叶皮层(LOC)和岛叶纤维束的微结构均有所改变。此外,在所有受试者中,左侧IPL、右侧LOC、右侧杏仁核的体积以及右侧LOC纤维束的扩散值与认知功能显著相关。分类模型区分三组的准确率大于 0.7(AUC = 0.8)。我们的研究结果表明,SCD和MCI在IPL上有相似的萎缩,但在皮层-皮层下区域的形态学和微观结构特征上表现出更大的差异。
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
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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