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September 24, 2025SLEEP2 citations

Circadian Mechanisms Underlying Post-exercise Blood Pressure Responses in Healthy Adults

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LBLeandro C. BritoMJMegan JonesNCNicole Chaudhary

Key Points

  • Circadian rhythms significantly affect blood pressure responses after exercise, especially in young adults.
  • Systolic and mean blood pressure demonstrated substantial decreases of -10 mmHg and -9 mmHg at approximately 1 PM.
  • Skeletal muscle vasodilatory mechanisms are likely responsible for the observed blood pressure reduction.
  • Mixed-model cosinor analyses indicated significant circadian rhythmicity when assessing the blood pressure changes.

Abstract

Abstract Study Objectives We aimed to determine whether the endogenous circadian system modulates blood pressure (BP) and its hemodynamic mechanisms during the post-exercise period. Methods Ten healthy adults (mean age: 24±2 SD years; 4 males, 6 females) completed a 30-hour circadian protocol in dim light (8 lux), while all behaviors and measurements were evenly distributed across the 24-hour circadian cycle. Participants underwent five recurring 6-hour cycles of 2-hour sleep opportunities and 4-hour standardized wake episodes. After 90 minutes of awakening during each wake episode, participants performed 30 minutes of moderate-intensity aerobic exercise at 40% heart-rate-reserve. Systolic, diastolic, and mean BP and hemodynamic determinants derived from the beat-to-beat BP waveform (finger photoplethysmography) were measured just before and 30 minutes after the conclusion of each exercise bout. Arm and leg blood flows were assessed using vascular ultrasound. Endogenous circadian phases were determined using each participant’s dim-light melatonin onset. Mixed-model cosinor analyses were used to test for the presence of circadian rhythmicity (with significance set at p0.05). Results Systolic and mean BP reduction post-exercise had significant circadian rhythms, with the greatest decreases at the circadian phase corresponding to ~1 PM (-10 mmHg and -9 mmHg), respectively. Systemic vascular resistance and leg blood flow also had significant circadian rhythms, with the lowest resistance and greatest blood flow at ~11 AM. Conclusions In young, healthy adults, the circadian system modulates the post-exercise BP reduction, likely due to skeletal muscle vasodilatory mechanisms.

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Cite This Study

Brito et al. (2025) studied this question.

synapsesocial.com/papers/68d6e14f8b2b6861e4c3fcd3https://doi.org/10.1093/sleep/zsaf295
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