Related Experiment Video
Updated: Feb 27, 2026

Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions
Published on: May 23, 2011
Coupling between global brain blood oxygen level-dependent activity and cerebrospinal fluid dynamics in young
Daisuke Hoshi1,2,3, Marina Fukuie1,2, Ryota Asahara4,5
1Human Informatics and Interaction Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan.
Abstract:
Cerebrospinal fluid (CSF) contributes to brain waste clearance through its coupling with cerebral haemodynamics. Aerobic exercise promotes brain health, but its influence on brain waste clearance remains unclear. This study examined the coupling between CSF and cerebral haemodynamics in endurance athletes. Fifteen young male endurance athletes were compared with 16 age-matched sedentary male controls. Resting-state functional magnetic resonance imaging was used to obtain brain global blood oxygen level-dependent (gBOLD) and CSF inflow signals. The gBOLD-CSF coupling was estimated using cross-correlation function and transfer function analyses in time and frequency domains, respectively. The magnitude of gBOLD and CSF oscillations was also quantified by power spectral density. The cross-correlation-derived gBOLD-CSF coupling was similar between athletes and sedentary controls (-0.30 ± 0.26 vs. -0.33 ± 0.22, P = 0.753). Power spectral density of the CSF inflow signal was significantly greater in athletes (2.83 [2.19, 3.47] z2/Hz) than sedentary individuals (1.84 [1.22, 2.46] z2/Hz, P = 0.030), whereas that of the gBOLD signal did not differ between groups. Although transfer function gain did not show a statistically significant group difference, a moderate effect size was observed (1.50 [-0.36, 3.36] vs. 1.24 [-0.06, 2.55], P = 0.051, effect size: 0.523). Transfer function phase and coherence were comparable between groups. Significant frequency dependence was observed for gBOLD power spectral density as well as transfer function gain, phase and coherence across groups. Endurance athletes demonstrated greater CSF fluctuation compared with sedentary individuals. Our findings suggest that endurance training may be linked to changes in CSF dynamics.
More Related Videos
04:20Integration of Brain Tissue Saturation Monitoring in Cardiopulmonary Exercise Testing in Patients with Heart Failure
Published on: October 1, 2019
06:24Paired Cisterna Magna Nanoinjection and Laser Speckle Contrast Imaging Assay to Study Cerebral Blood Flow Regulation In Vivo
Published on: July 8, 2025
Related Concept Videos
Regulation of Stroke Volume
Preload refers to the degree of stretch on the heart before it contracts. It's analogous to the stretching of a rubber band; the more it's stretched, the more forcefully it snaps back. This concept is encapsulated in the Frank-Starling law of the...
Exercise and Cardiac Output
Sustained exercise increases the muscles' oxygen demand, which can be...
Oxygen Transport in the Blood
Cerebrospinal Fluid
CSF Production
CSF is produced mainly in the choroid plexus, a network of capillaries and ependymal cells located within the ventricular system of the brain....
Autoregulation of Blood Flow
Chemical Signaling in Autoregulation
Chemical signaling operates at the precapillary sphincter level, inciting either contraction or relaxation....