Blood Pressure Variability and Autonomic Response to an Acute Bout of High Intensity Interval Exercise in Healthy Young Adults

Saniya Waghmare, Alicen A Whitaker-Hilbig, Mark Chertoff, Sandra A. Billinger
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Abstract

Autonomic nervous system (ANS) activity causes acute variations in the blood pressure. Blood pressure responds to high intensity interval exercise (HIIE) repeatedly during alternating intensities, however, ANS response to the changing intensities of HIIE is unknown. We characterized the response of beat-to-beat blood pressure variability (BTB BPV) to an acute bout of HIIE using coefficient of variation (CoV) and spectral low frequency [LF], and high frequency [HF] domains. Our hypotheses were mean arterial pressure BTB BPV, would increase during 1) high intensity and 2) active recovery of HIIE compared to baseline (BL). BTB BPV would reduce during 1) cool down 2) post HIIE 3) 30 minutes post HIIE compared to BL in young adults. HIIE included bouts of 1-minute high-intensity separated by 1-minute recovery (approx 70% and 10% estimated Wattmax) for total of 10 minutes on a recumbent stepper. A secondary analysis was performed using twenty-one datasets of young individuals (age 25[SD 1.5], 48% female). During high intensity, LF and HF increased compared to BL (p < 0.05) indicating increased sympathetic activity and breathing. During active recovery, LF and HF remained elevated above BL and were greater than during high intensity (p = 0.02). Sympathetic activity reduced back to BL immediately post HIIE but returned to being higher than BL at 30 minutes after HIIE (p=0.001). BTB BPV CoV also increased during HIIE compared to BL (p<0.05). Results suggest that young healthy individuals have increased BTB BPV during HIIE suggesting cardiovascular system responds to ANS fluctuations during changing exercise intensity.
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健康年轻人的血压变化和自律神经对急性高强度间歇运动的反应
自律神经系统(ANS)的活动会导致血压急剧变化。在强度交替的情况下,血压会对反复进行的高强度间歇运动(HIIE)产生反应,但自律神经系统对 HIIE 强度变化的反应尚不清楚。我们使用变异系数(CoV)、低频(LF)和高频(HF)频谱域描述了逐搏血压变异性(BTB BPV)对急性 HIIE 运动的响应。我们的假设是,与基线(BL)相比,平均动脉压 BTB BPV 将在 1) 高强度和 2) HIIE 积极恢复期间增加。与基线(BL)相比,BTB BPV 将在 1) 冷却 2) HIIE 后 3) HIIE 后 30 分钟内降低。HIIE 包括 1 分钟的高强度锻炼和 1 分钟的恢复锻炼(约 70% 和 10% 的估计最大功率),共 10 分钟。使用 21 个年轻人(年龄 25 [SD 1.5],48% 为女性)的数据集进行了二次分析。在高强度运动时,LF 和 HF 比 BL 增加(p < 0.05),表明交感神经活动和呼吸增加。在积极恢复期间,LF 和 HF 仍高于 BL,且高于高强度期间(p = 0.02)。交感神经活动在 HIIE 后立即恢复到 BL 值,但在 HIIE 后 30 分钟又恢复到高于 BL 值(p=0.001)。在 HIIE 期间,BTB BPV CoV 也比 BL 增加(p<0.05)。结果表明,年轻的健康人在 HIIE 期间 BTB BPV 增加,这表明心血管系统在运动强度变化期间对自律神经系统的波动做出了反应。
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