Key result
Acute exercise consisting of a 1-mile run improved performance on the King-Devick test and SAC component of the SCAT3, particularly in female athletes, and altered EEG activity.
Why the study?
Little empirical evidence existed regarding how acute exercise affects cognitive performance and EEG measures of cortical activity used to assess concussion in athletes.
Does acute exercise affect performance on concussion assessment tools and EEG measurements in collegiate athletes?
Observational
Does acute exercise affect performance on concussion assessment tools and EEG measurements in collegiate athletes?
Acute exercise alone can influence outcome measures of cognitive assessment tools and EEG used to assess brain function in athletes, indicating baseline and post-injury measurements should be taken in comparable physiologic states.
Acute exercise may confound SCAT3/EEG concussion measures; leaves open whether state-matched baselines are required.
A variety of cognitive assessment tools are used to determine the functional status of the brain before and after injury in athletes. Questionnaires, neuropsychological tests, and electroencephalographic (EEG) measures have been recently used to directly assess brain function on and near the playing field. However, exercise can affect cognitive performance and EEG measures of cortical activity. To date, little empirical evidence exists on the effects of acute exercise on these measures of neurological function. We therefore quantified athlete performance on a standardized battery of concussion assessment tools and EEG measurements immediately before and after acute exercise to simulate conditions of athletic competition. Heart rate and arterial oxygen levels were collected before and after the exercise challenge consisting of a 1-mile run. Together these data, from a gender-balanced cohort of collegiate athletes, demonstrated that moderate to hard levels of acute exercise improved performance on the King-Devick test (K-D test) and Standardized Assessment of Concussion (SAC) component of the Sport Concussion Assessment Tool (SCAT3). Gender played an important role in these effects, and performance was most affected by exercise in female athletes. EEG activity in the theta band (4-8 Hz) was decreased during periods of quiet resting with eyes open or eyes closed. Additionally, exercise produced a slowing of the EEG during the K-D test and a shift to higher frequencies during the balance assessment of the SCAT3. Together, these data indicate that exercise alone can influence outcome measures of cognitive assessment tools used to assess brain function in athletes. Finally, care must be taken to acquire postinjury measurements during a comparable physiologic state to that in which baseline assessment data were measured, and further research is needed into the factors influencing outcome measures of these tests.
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Devilbiss et al. (2019) conducted an observational in Concussion assessment. Acute exercise vs. Pre-exercise baseline was evaluated on Performance on King-Devick test, SAC component of SCAT3, and EEG measurements. Acute exercise consisting of a 1-mile run improved performance on the King-Devick test and SAC component of the SCAT3, particularly in female athletes, and altered EEG activity.
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