Related Experiment Video
Updated: Jan 9, 2026

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Impact of Cerebral Microbleeds on Tau-Associated Cognitive and Structural Decline
Young Hee Jung1, Jaelim Cho2, Sang-Yoon Lee3
1Department of Neurology, Hallym University Sacred Heart Hospital, College of Medicine, Hallym University, Chuncheon, South Korea.
Background And Objectives:
Cognitive impairment in older adults is influenced by coexisting β-amyloid (Aβ), tau, and cerebral small vessel disease (CSVD). Cerebral microbleeds (CMBs) are associated with Aβ and CSVD, but their role on tau-related neurodegeneration remains unclear. We investigated whether the CMBs modify tau-related disease progression.
Methods:
A longitudinal, prospective cohort study was conducted involving participants with mild cognitive impairment, Alzheimer disease dementia from the memory disorder clinic of the single tertiary center, or cognitively unimpaired from the community. All participants underwent cognitive assessment, MRI, 18F-flutemetamol PET for Aβ, and 18F-MK-6240 PET for tau at baseline. Cognitive tests were performed annually and MRI at 2 years. Cognitive decline was defined by score changes over this period and cortical atrophy as annual cortical thickness change. Linear regression analyses were conducted after stratifying by total or lobar CMB presence.
Results:
Among the 201 participants (mean age 71.3 ± 7.0 years, 66.7% female), 95 had CMBs and 106 did not. Baseline Aβ or tau burden did not significantly differ between the 2 groups while white matter hyperintensity volume and lacunes were greater in the CMB group. Cross-sectionally, greater tau burden correlated with worse cognition, as measured by the Clinical Dementia Rating Scale Sum of Boxes (CDR-SOB) or Mini-Mental State Examination (MMSE) in both groups. Longitudinally, baseline tau burden was associated with CDR-SOB progression in the non-CMB group (β = 1.558, SE = 0.249, p < 0.001), but not in the CMB group (β = -0.031, SE = 0.405, p = 0.940; p-for-interaction = 0.001). Similar group differences were found for MMSE changes (non-CMB: β = -2.365, SE = 0.566, p < 0.001; CMB: β = -0.816, SE = 0.653, p = 0.217; p-for-interaction = 0.073). Stratification by lobar CMBs confirmed significant interaction effects for both CDR-SOB (p-for-interaction = 0.007) and MMSE (p-for-interaction = 0.045) scores. Imaging analysis showed more extensive cortical atrophy in the CMB group, but tau-related cortical atrophy was widespread only in the non-CMB group and minimal in the CMB group.
Discussion:
In the non-CMB group, tau burden was strongly associated with cognitive decline and cortical atrophy. By contrast, the CMB group exhibited greater CSVD burden and pronounced neurodegeneration not explained by tau, suggesting that additional mechanisms such as CSVD related to cerebral amyloid angiopathy or neuroinflammation may contribute to disease progression in this group.
Insights
Cerebral microbleeds (CMBs) alter the relationship between tau pathology and cognitive decline in older adults. In individuals without CMBs, tau drives neurodegeneration, but CMBs suggest other factors like small vessel disease contribute to cognitive impairment.
Area of Science:
- Neurology
- Neuroscience
- Geriatrics
Background:
- Cognitive impairment in older adults involves beta-amyloid (Aβ), tau, and cerebral small vessel disease (CSVD).
- Cerebral microbleeds (CMBs) are linked to Aβ and CSVD, but their impact on tau-related neurodegeneration is not fully understood.
Purpose of the Study:
- To investigate how cerebral microbleeds (CMBs) influence the progression of tau-related neurodegeneration and cognitive decline.
- To determine if CMBs modify the association between tau pathology and cognitive impairment.
Main Methods:
- A prospective longitudinal cohort study included participants with mild cognitive impairment, Alzheimer's disease dementia, or cognitive unimpaired status.
- Participants underwent cognitive assessments, MRI, and PET scans for Aβ and tau at baseline, with annual cognitive tests and a 2-year MRI follow-up.
- Linear regression analyses were performed, stratifying by the presence of total or lobar CMBs to assess cognitive decline and cortical atrophy.
Main Results:
- Participants with CMBs showed greater white matter hyperintensity and lacunes compared to those without.
- In the absence of CMBs, tau burden strongly correlated with cognitive decline (CDR-SOB, MMSE) and cortical atrophy.
- In the presence of CMBs, tau burden was not significantly associated with cognitive decline, and tau-related cortical atrophy was minimal, suggesting alternative neurodegeneration pathways.
Conclusions:
- Tau pathology is a significant driver of cognitive decline and atrophy in individuals without CMBs.
- In individuals with CMBs, neurodegeneration appears driven by factors beyond tau, potentially including CSVD-related mechanisms or neuroinflammation.
- CMBs may indicate a distinct pathway of cognitive decline involving greater CSVD burden and alternative neurodegenerative processes.

