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April 27, 2020Physiological Reports35 citationsOpen Access

Comparable blood velocity changes in middle and posterior cerebral arteries during and following acute high‐intensity exercise in young fit women

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LLLawrence LabrecqueADAudrey DrapeauKRKevan Rahimaly

Structured PICO

Does 30 s of high-intensity exercise alter regional cerebral blood velocity in young fit women?

P
Population
10 young fit women (age: 27 ± 6 years; VO2max: 48.6 ± 3.8 ml·kg·min−1)
I
Intervention
Cycling for 30 s at the workload reached at VO2max followed by 3 min of passive recovery
C
Comparator
Baseline values prior to exercise
O
Outcome
Regional cerebral blood velocity changes (Middle and posterior cerebral artery mean blood velocities)surrogate

In young fit women, cerebral blood velocity quickly increases at the onset of a 30-s maximal exercise and augments further during recovery.

Abstract

The cerebral blood flow response to high-intensity interval training (HIIT) remains unclear. HIIT induces surges in mean arterial pressure (MAP), which could be transmitted to the brain, especially early after exercise onset. The aim of this study was to describe regional cerebral blood velocity changes during and following 30 s of high-intensity exercise. Ten women (age: 27 ± 6 years; VO2max: 48.6 ± 3.8 ml·kg·min−1) cycled for 30 s at the workload reached at O2max followed by 3min of passive recovery. Middle (MCAvmean) and posterior cerebral artery mean blood velocities (PCAvmean; transcranial Doppler ultrasound), MAP (finger photoplethysmography), and end-tidal carbon dioxide partial pressure (PETCO2; gaz analyzer) were measured. MCAvmean (+19 ± 10%) and PCAvmean (+21 ± 14%) increased early after exercise onset, returning toward baseline values afterward. MAP increased throughout exercise (p < .0001). PETCO2 initially decreased by 3 ± 2 mmHg (p < .0001) before returning to baseline values at end-exercise. During recovery, MCAvmean (+43 ± 15%), PCAvmean (+42 ± 15%), and PETCO2 (+11 ± 3 mmHg; p < .0001) increased. In young fit women, cerebral blood velocity quickly increases at the onset of a 30-s exercise performed at maximal workload, before returning to baseline values through the end of the exercise. During recovery, cerebral blood velocity augments in both arteries, along with PETCO2.

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Cite This Study

Labrecque et al. (2020) studied this question.

synapsesocial.com/papers/6a239b85ffed3004559ee086https://doi.org/10.14814/phy2.14430
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Also Consider

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  1. 1Reduced Middle Cerebral Artery Blood Velocity Response during Low-Volume High-Intensity Interval Exercise in Chronic Stroke2022 · 1 citations
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  4. 4Effects of dynamic changes in arterial pressure and carbon dioxide on middle cerebral artery blood velocity during high-intensity interval exercise2025
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