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January 11, 2024Cerebral Cortex2 citationsOpen Access

Resting heart rate causally affects the brain cortical structure: Mendelian randomization study

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YZYinsheng ZhongSun Yat-sen UniversityJLJun LiFudan UniversityYHYinghui HongSun Yat-sen University

Key Result

Elevated resting heart rate was causally associated with decreased global cortical surface area (P < 0.0125) and altered regional cortical structures.

Study Design

Type

Observational

Structured PICO

Does elevated resting heart rate causally affect brain cortical structure?

P
Population
Genetic data used for Two-Sample Mendelian randomization analysis
E
Exposure
Genetically predicted elevated resting heart rate (RHR)
C
Comparator
Genetically predicted lower resting heart rate
O
Outcome
Brain cortical structure (global surface area, regional surface area, and thickness)surrogate

Genetically predicted elevated resting heart rate is causally linked to alterations in brain cortical structure, providing insights into the heart-brain axis.

Main Result

p-value: p=<0.0125

Abstract

Resting heart rate (RHR) has been linked to impaired cortical structure in observational studies. However, the extent to which this association is potentially causal has not been determined. Using genetic data, this study aimed to reveal the causal effect of RHR on brain cortical structure. A Two-Sample Mendelian randomization (MR) analysis was conducted. Sensitivity analyses, weighted median, MR Pleiotropy residual sum and outlier, and MR-Egger regression were conducted to evaluate heterogeneity and pleiotropy. A causal relationship between RHR and cortical structures was identified by MR analysis. On the global scale, elevated RHR was found to decrease global surface area (SA; P < 0.0125). On a regional scale, the elevated RHR significantly decreased the SA of pars triangularis without global weighted (P = 1.58 × 10-4) and the thickness (TH) of the paracentral with global weighted (P = 3.56 × 10-5), whereas it increased the TH of banks of the superior temporal sulcus in the presence of global weighted (P = 1.04 × 10-4). MR study provided evidence that RHR might be causally linked to brain cortical structure, which offers a different way to understand the heart-brain axis theory.

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Cite This Study

Zhong et al. (2024) reported an observational. Resting heart rate was evaluated on global surface area (SA) (p=<0.0125). Elevated resting heart rate was causally associated with decreased global cortical surface area (P < 0.0125) and altered regional cortical structures.

synapsesocial.com/papers/6a6c346c45e10bb5bcf31cb1https://doi.org/10.1093/cercor/bhad536
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