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Can multi-modal neuroimaging evidence from hippocampus provide biomarkers for the progression of amnestic mild cognitive impairment?

机译:海马体的多模式神经影像学证据能否为轻度认知障碍的发展提供生物标记?

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摘要

Impaired structure and function of the hippocampus is a valuable predictor of progression from amnestic mild cognitive impairment (aMCI) to Alzheimer’s disease (AD). As a part of the medial temporal lobe memory system, the hippocampus is one of the brain regions affected earliest by AD neuropathology, and shows progressive degeneration as aMCI progresses to AD. Currently, no validated biomarkers can precisely predict the conversion from aMCI to AD. Therefore, there is a great need of sensitive tools for the early detection of AD progression. In this review, we summarize the specific structural and functional changes in the hippocampus from recent aMCI studies using neurophysiological and neuroimaging data. We suggest that a combination of advanced multi-modal neuroimaging measures in discovering biomarkers will provide more precise and sensitive measures of hippocampal changes than using only one of them. These will potentially affect early diagnosis and disease-modifying treatments. We propose a new sequential and progressive framework in which the impairment spreads from the integrity of fibers to volume and then to function in hippocampal subregions. Meanwhile, this is likely to be accompanied by progressive impairment of behavioral and neuropsychological performance in the progression of aMCI to AD.
机译:海马的结构和功能受损是从轻度遗忘性轻度认知障碍(aMCI)到阿尔茨海默氏病(AD)进展的重要预测指标。作为内侧颞叶记忆系统的一部分,海马体是最早受AD神经病理学影响的大脑区域之一,并且随着aMCI进展到AD而表现出进行性变性。当前,没有经过验证的生物标记物可以准确预测从aMCI到AD的转化。因此,非常需要用于早期检测AD进展的敏感工具。在这篇综述中,我们使用神经生理学和神经影像学数据总结了来自最近aMCI研究的海马结构和功能的特定变化。我们建议,结合使用先进的多模式神经影像学措施发现生物标志物,将比仅使用其中一种提供更精确和敏感的海马体变化测量。这些将潜在地影响早期诊断和疾病治疗。我们提出了一种新的顺序和渐进框架,其中损伤从纤维的完整性扩散到体积,然后在海马亚区起作用。同时,这很可能伴随着aMCI到AD的行为和神经心理性能的逐步损害。

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