Size or Strength? how components of muscle relate to behavioral and neuroelectric measures of executive function independent of aerobic fitness

Brain Cogn. 2024 Mar:175:106139. doi: 10.1016/j.bandc.2024.106139. Epub 2024 Feb 15.

Abstract

While previous research has linked cognitive function with resistance exercise, the nuanced links between muscle strength, mass, and neuroelectric function are less understood. Therefore, this study investigated the association of muscle strength and mass with inhibitory control (IC), working memory (WM), and related neuroelectric activity. A total of 123 18-50-year-old adults completed maximal aerobic capacity and strength tests, a body composition scan, and IC and WM tasks while the N2 and P3 components of event-related potentials were recorded. Bivariate correlations revealed aerobic fitness, strength, and mass were associated with behavioral and neuroelectric outcomes. After accounting for age, sex, and aerobic fitness, strength was associated with intra-individual response time variability, accuracy, and P3 latency during WM. Muscle mass was associated with N2 latency during IC. While relationships with behavioral outcomes did not persist after controlling for the opposite muscle outcome, greater strength and mass were related to shorter P3 latency during WM and shorter N2 latency during IC, respectively. These results provide initial evidence that muscle outcomes are associated with executive function and neuroelectric processing speed, suggesting distinct contributions of strength and mass to cognition. This work highlights the significance of maintaining muscle strength and mass alongside aerobic fitness for optimal cognitive health.

Keywords: Event-Related Potentials (ERPs); Inhibitory Control; Muscle Mass; Muscle Strength; Processing Speed; Working Memory.

MeSH terms

  • Adult
  • Cognition / physiology
  • Evoked Potentials / physiology
  • Executive Function* / physiology
  • Exercise / physiology
  • Humans
  • Muscles
  • Physical Fitness* / physiology
  • Physical Fitness* / psychology
  • Reaction Time / physiology