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February 11, 2026Journal of Cerebral Blood Flow & Metabolism0 citations

A linear-no-threshold association between carotid intima–media thickness and cognitive function: The mediating role of cerebrovascular disease

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LJLi JiLQLingli QiuYLYunjie Liu

Key Result

Higher carotid intima–media thickness causally reduces cognitive function with β = −1.18 and 9.9% mediated by small vessel stroke, showing a linear-no-threshold effect.

Key Points

  • The study aims to investigate the relationship between carotid intima-media thickness and cognitive function, focusing on the role of cerebrovascular disease.
  • Utilized observational and Mendelian randomization analyses.
  • Analyzed data from UK Biobank participants and additional consortium data.
  • Conducted mediation analysis for cerebrovascular disease.
  • Evaluated linear and non-linear associations.
  • Higher carotid intima-media thickness was associated with lower cognitive function.
  • No evidence of nonlinearity in the association was found.
  • Mendelian randomization indicated a causal effect of higher carotid intima-media thickness on lower cognitive function.
  • Cerebrovascular disease mediated 9.9% of the relationship.

Structured PICO

Does higher carotid intima-media thickness reduce cognitive function?

P
Population
UK Biobank participants (n=19,588) for observational and one-sample Mendelian randomization analyses; summary data from the CHARGE/UCLEB Consortia (n=71,128) for cIMT and from a meta-analysis of UK Biobank and COGENT (n=257,828) for cognitive function in two-sample Mendelian randomization.
I
Intervention
Higher carotid intima-media thickness (cIMT) as an observational exposure and genetically predicted cIMT
O
Outcome
Cognitive function

There is a linear, causal relationship between higher carotid intima-media thickness and lower cognitive function, which is partially mediated by small vessel cerebrovascular disease.

Abstract

Carotid intima–media thickness (cIMT), a noninvasive marker of subclinical atherosclerosis beginning in childhood, has been linked to cognitive decline in adulthood. However, the nature and shape of this association remain unclear. We investigated linear and nonlinear associations between cIMT and cognitive function using observational and Mendelian randomization (MR) analyses. Observational and one-sample MR analyses were conducted in UK Biobank participants ( n = 19,588). Two-sample MR used summary data from the CHARGE/UCLEB Consortia ( n = 71,128) for cIMT and from a meta-analysis of UK Biobank and COGENT ( n = 257,828) for cognitive function. Mediation MR evaluated the role of cerebrovascular disease. Observational analysis showed higher cIMT was associated with lower cognitive function (β = −0.17, 95% CI = −0.27 to −0.08, p = 3.24 × 10 −4 ), with no nonlinearity ( p nonlinearity = 0.49). One-sample MR supported a causal effect of higher genetically predicted cIMT on lower cognitive function (β = −1.18, 95% CI = −2.33 to −0.03, p = 4.51 × 10 −2 ), with no evidence of nonlinearity ( P quadratic test = 0.88; P Cochran Q test = 0.90). This was confirmed in two-sample MR (β = −0.83, 95% CI = −1.39 to −0.26, p = 4.03 × 10 −3 ). Mediation analysis indicated that 9.9% of this association was mediated by small vessel stroke. Reverse MR showed no causal effect of cognitive function on cIMT. Our findings demonstrate a linear-no-threshold relationship between cIMT and cognitive function, underscoring the importance of early-life vascular health.

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Cite This Study

Ji et al. (2026) studied this question. Higher carotid intima–media thickness causally reduces cognitive function with β = −1.18 and 9.9% mediated by small vessel stroke, showing a linear-no-threshold effect.

synapsesocial.com/papers/698c1bff267fb587c655e09bhttps://doi.org/10.1177/0271678x261415785
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