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Updated: Jan 13, 2026

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Published on: April 23, 2021
Silent yet impaired: Hidden memory processing deficits in asymptomatic individuals with moderate-to-severe white
Aonan Li1, Lei Liu1, Yueyan Bian2
1Department of Neurology & Innovation Center for Neurological Disorders, Xuanwu Hospital, Capital Medical University, National Center for Neurological Disorders, Beijing, China.
Introduction:
White matter hyperintensities (WMHs) are strongly associated with cognitive decline and dementia, but whether asymptomatic individuals with moderate-to-severe WMHs (msWMHs) are truly cognitively intact, particularly in visual short-term memory (VSTM), remains unclear.
Methods:
Electroencephalography and diffusion tensor imaging (DTI) was obtained from 45 msWMH patients and 38 normal controls during an occluded-face delay-matching task.
Results:
Individuals with msWMH showed systematic deficits in face-memory processing across encoding, maintenance, and retrieval, accompanied by reduced theta power and synchronization, altered alpha power, and disrupted theta-gamma coupling. DTI further revealed microstructural damage, particularly in the inferior fronto-occipital fasciculus (IFOF), superior longitudinal fasciculus (SLF), and inferior longitudinal fasciculus (ILF), which mediated the effects on global cognition via encoding-related theta oscillations.
Discussion:
These findings indicate that individuals with msWMH already show hidden VSTM deficits. Theta oscillations mediate the link between tract integrity and global cognition, highlighting a potential preclinical intervention target.
Highlights:
Asymptomatic individuals with moderate-to-severe white matter hyperintensities (msWMHs) already show visual short-term memory (VSTM) deficits. Electroencephalography revealed abnormal neural oscillations during encoding, maintenance, and retrieval stages. Damage to the inferior fronto-occipital fasciculus (IFOF), superior longitudinal fasciculus (SLF), and inferior longitudinal fasciculus (ILF) affects cognition via theta oscillations. Theta activity mediates structure - function coupling and may serve as a preclinical intervention target.
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