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Structural and functional brain signatures of endurance runners

  • L Cao
  • , Y Zhang
  • , R Huang
  • , L Li
  • , F Xia
  • , L Zou
  • , Q Yu
  • , J Lin
  • , F Herold
  • , S Perrey
  • , P Mueller
  • , M Dordevic
  • , PD Loprinzi
  • , Y Wang
  • , Y Ma
  • , H Zeng
  • , S Qu
  • , J Wu
  • , Z Ren

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Although endurance running (ER) seems to be a simple repetitive exercise, good ER performance also requires and relies on multiple cognitive and motor control processes. Most of previous neuroimaging studies on ER were conducted using a single MRI modality, yet no multimodal study to our knowledge has been performed in this regard. In this study, we used multimodal MRI data to investigate the brain structural and functional differences between endurance runners (n = 22; age = 26.27 ± 6.07 years; endurance training = 6.23 ± 2.41 years) and healthy controls (HCs; n = 20; age = 24.60 ± 4.14 years). Compared with the HCs, the endurance runners showed greater gray matter volume (GMV) and cortical surface area in the left precentral gyrus, which at the same time had higher functional connectivity (FC) with the right postcentral and precentral gyrus. Subcortically, the endurance runners showed greater GMV in the left hippocampus and regional inflation in the right hippocampus. Using the bilateral hippocampi as seeds, further seed-based FC analyses showed higher hippocampal FC with the supplementary motor area, middle cingulate cortex, and left posterior lobe of the cerebellum. Moreover, compared with the HCs, the endurance runners also showed higher fractional anisotropy in several white matter regions, involving the corpus callosum, left internal capsule, left corona radiata, left external capsule, left posterior lobe of cerebellum and bilateral precuneus. Taken together, our findings provide several lines of evidence for the brain structural and functional differences between endurance runners and HCs. The current data suggest that these brain characteristics may have arisen as a result of regular ER training; however, whether they represent the neural correlates underlying the good ER performances of the endurance runners requires further investigations.
Original languageEnglish
Pages (from-to)93-103
Number of pages11
JournalBrain Structure & Function
Volume226
Issue number1
Early online date7 Nov 2020
DOIs
Publication statusPublished - Jan 2021

Funding

This study was funded by the National Natural Science Foundation of China [Grant Number 11002036]; the Fundamental Research Funds for the Central Universities [Grant Number 2672018ZYGX2018J075]; the Humanities and Social Science of Shenzhen University [Grant Number 17QNFC59]; and the Youth cultivation program of Xi'an Health Commission [Grant Number 2020QN03].

FundersFunder number
Humanities and Social Science of Shenzhen University17QNFC59
Xi'an Health Commission2020QN03
National Natural Science Foundation of China11002036
Fundamental Research Funds for the Central Universities2672018ZYGX2018J075

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