Hot water immersion increases internal carotid artery shear rate but does not alter intracranial vascular reactivity to carbon dioxide

大脑中动脉 医学 经颅多普勒 颈内动脉 麻醉 大脑后动脉 大脑前动脉 脑动脉 过度换气 脑血流 心脏病学 剪切速率 内科学 缺血 粘度 物理 量子力学
作者
Morgan L. Worley,Courtney E. Wheelock,Jocelyn Stooks,Jacqueline Schwob,Brian Bratta,John J. Leddy,Riana R. Pryor,David Hostler,Blair D. Johnson
出处
期刊:Applied Physiology, Nutrition, and Metabolism [NRC Research Press]
卷期号:50: 1-17 被引量:1
标识
DOI:10.1139/apnm-2024-0048
摘要

Acute hot water immersion (HWI) increases cerebral blood flow, which may increase arterial shear rate and benefit cerebrovascular function. However, it is unclear whether HWI alters cerebral artery shear rate and cerebrovascular reactivity to carbon dioxide (CVRCO2). We tested the hypotheses that HWI (39 °C) increases extracranial artery shear rate and intracranial artery hypercapnic CVRCO2, but reduces hypocapnic CVRCO2 compared to temperate water immersion (TWI; 35 °C). Eighteen healthy adults completed two experimental visits. Middle and posterior cerebral artery blood velocities (transcranial Doppler; MCAv and PCAv) were continuously recorded. Right internal carotid artery (ICA) and vertebral artery (VA) shear rate were obtained via Doppler ultrasound. Hypocapnic and hypercapnic CVRCO2 were assessed in the middle cerebral artery (MCA) and posterior cerebral artery (PCA) during self-paced hyperventilation and during 30 s of 7% CO2 inhalation. Measures were completed pre-immersion (PRE) and at 1.0 °C increase in core temperature during HWI and time-matched during TWI. Data are reported as mean ± SD. There were no differences between conditions at PRE. MCAv (64 ± 12 vs. 55 ± 9 cm/s; P = 0.01) and PCAv (39 ± 7 vs. 29 ± 5 cm/s; P < 0.01) were greater in TWI versus HWI at the 1.0 °C time point. ICA shear rate was greater in HWI versus TWI at 1.0 °C (247 ± 51 vs. 180 ± 43 s−1; P < 0.01) but VA shear did not differ. Hypocapnic and hypercapnic CVRCO2 in the MCA and PCA did not differ between conditions. Compared to TWI, MCAv and PCAv are lower in HWI, but HWI augments shear rate in the ICA, which may be beneficial for cerebrovascular health if done recurrently.
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