EEG Brain Activity At Various Cycling Intensities
EEG Brain Activity During A Progressive Cycling Protocol
Study Overview
Status
Status
Conditions
Conditions
Intervention / Treatment
Intervention / Treatment
Detailed Description
Increases in EEG power spectra have been found during graded cycling to fatigue linking brain activity to exercise intensity. Additionally, to the activation of the classical motor control regions (e.g.: motor, somatosensory, premotor and supplementary motor cortices and cerebellum), the activation of the regions associated with autonomic regulation (i.e.: insular cortex) during exercise, as well as reduced activation of cognitive-related areas (i.e.: prefrontal cortex), an effect that increased at higher perceived intensities of cycling has been observed.
Furthermore, the precentral gyrus and cerebellar vermis, as well as brain areas (e.g.: posterior cingulate cortex (PCC) and precuneus) have been associated with higher levels of perceived exertion as well. Although the results were assessed sing a specially designed compatible fMRI cycling ergometer (Fontes et al., 2020), due to which the brain imaging techniques were limited to static (and horizontal) measurement conditions during cycling, we believe that the present study clearly distinguishes between claims proposed by different theoretical frameworks on brain responses during exercise.
Therefore, the aim of this study is to examine the brain activity with EEG during the same incremental protocol, which will allow us to investigate the functioning of surface electrocortical activation patterns during progressive cycling exercise. Furthermore, using the advanced brain image analysis (machine learning techniques and standardized low-resolution electromagnetic tomography - sLORETA) helped us determine the frequency spectrum of brain activity in the same brain areas.
Study Type
Study Type
Enrollment (Anticipated)
Enrollment
Phase
Phase
- Not Applicable
Contacts and Locations
Study Contact
Study Contact
- Name: Teja Ličen, MsC
- Phone Number: +38656637700
- Email: teja.licen@um.si
Study Contact Backup
- Name: Uros Marusic, PhD
- Phone Number: +38656637700
- Email: uros.marusic@zrs-kp.si
Study Locations
-
-
-
Maribor, Slovenia
- Recruiting
- University of Maribor
-
Contact:
- Teja Licen, Ms
- Email: t.licen@gmail.com
-
Contact:
- Uros Marusic, PhD
- Email: uros.marusic@zrs-kp.si
-
-
Participation Criteria
Eligibility Criteria
Eligibility Criteria
Ages Eligible for Study
Accepts Healthy Volunteers
Genders Eligible for Study
Description
Inclusion Criteria:
- Heathy and recreationaly active men
- No significant muscular, skeleton or nervous system damage
- Cycloergometry test (positive)
Exclusion Criteria:
- Nervous system disorders
- Cardiovascular disorders (e.g.: high blood pressure, arrhythmia...)
- Asthma
Study Plan
How is the study designed?
Design Details
- Primary Purpose: Basic Science
- Allocation: N/A
- Interventional Model: Single Group Assignment
- Masking: Single
What is the study measuring?
Primary Outcome Measures
Primary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Beta band suppression
Time Frame: During the intervention
|
Reduction of beta is one of the cortical markers which is usually obtained from the central electrodes and occurs with movement initiation.
|
During the intervention
|
Secondary Outcome Measures
Secondary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Brain mapping
Time Frame: During the intervention
|
Analyzing the change in (de)activated "regions of interest" (ROI) of the brain between cycling during increasing exercise conditions
|
During the intervention
|
Collaborators and Investigators
Sponsor
Sponsor
Collaborators
Collaborators
Publications and helpful links
General Publications
- Bailey SP, Hall EE, Folger SE, Miller PC. Changes in EEG during graded exercise on a recumbent cycle ergometer. J Sports Sci Med. 2008 Dec 1;7(4):505-11. eCollection 2008.
- Fontes EB, Bortolotti H, Grandjean da Costa K, Machado de Campos B, Castanho GK, Hohl R, Noakes T, Min LL. Modulation of cortical and subcortical brain areas at low and high exercise intensities. Br J Sports Med. 2020 Jan;54(2):110-115. doi: 10.1136/bjsports-2018-100295. Epub 2019 Aug 16.
- Fontes EB, Okano AH, De Guio F, Schabort EJ, Min LL, Basset FA, Stein DJ, Noakes TD. Brain activity and perceived exertion during cycling exercise: an fMRI study. Br J Sports Med. 2015 Apr;49(8):556-60. doi: 10.1136/bjsports-2012-091924. Epub 2013 Jun 1.
- Enders H, Cortese F, Maurer C, Baltich J, Protzner AB, Nigg BM. Changes in cortical activity measured with EEG during a high-intensity cycling exercise. J Neurophysiol. 2016 Jan 1;115(1):379-88. doi: 10.1152/jn.00497.2015. Epub 2015 Nov 4.
Study record dates
Study Major Dates
Study Start (Actual)
Study Start
Primary Completion (Anticipated)
Primary Completion
Study Completion (Anticipated)
Study Completion
Study Registration Dates
First Submitted
First Submitted
First Submitted That Met QC Criteria
First Submitted That Met QC Criteria
First Posted (Actual)
First Posted
Study Record Updates
Last Update Posted (Actual)
Last Update Posted
Last Update Submitted That Met QC Criteria
Last Update Submitted That Met QC Criteria
Last Verified
Last Verified
More Information
Terms related to this study
Keywords
Other Study ID Numbers
Other Study ID Numbers
- TwinBrainCycling
Drug and device information, study documents
Studies a U.S. FDA-regulated drug product
Studies a U.S. FDA-regulated device product
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