Impact of Oxygen Supplementation on Brachial Artery Hemodynamics and Vascular Function During Ascent to 5,050m

High altitude medicine & biology(2023)

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摘要
Vizcardo-Galindo, Gustavo A., Connor A. Howe, Ryan L. Hoiland, Howard H. Carter, Christopher K. Willie, Philip N. Ainslie, and Joshua C. Tremblay. Impact of oxygen supplementation on brachial artery hemodynamics and vascular function during ascent to 5,050m. High Alt Med Biol. 24:27-36, 2023.-High-altitude trekking alters upper limb hemodynamics and reduces brachial artery vascular function in lowlanders. Whether these changes are reversible with the removal of hypoxia is unknown. We investigated the impact of 20 minutes of oxygen supplementation (O-2) on brachial artery hemodynamics, reactive hyperemia (RH; microvascular function), and flow-mediated dilation (FMD; endothelial function). Participants (aged 21-42 years) were examined before and with O-2 at 3,440m (n=7), 4,371m (n=7), and 5,050m (n=12) using Duplex ultrasound (days 4, 7, and 10 respectively). At 3,440m, O-2 decreased brachial artery diameter (-5%+/- 5%; p=0.04), baseline blood flow (-44%+/- 15%; p<0.001), oxygen delivery (-39 +/- 16; p<0.001), and peak RH (-8%+/- 8%; p=0.02), but not RH normalized for baseline blood flow. Elevated FMD (p=0.04) with O-2 at 3,440m was attributed to the reduction in baseline diameter. At 5,050m, a reduction in brachial artery blood flow (-17%+/- 22%; p=0.03), but not oxygen delivery, diameter, RH, or FMD occurred with O-2. These findings suggest that during early trekking at high altitude, O-2 causes vasoconstriction in the upper limb along the arterial tree (conduit and resistance arteries). With incremental high-altitude exposure, O-2 reduces blood flow without compromising oxygen delivery, RH, or FMD, suggesting a differential impact on vascular function modulated by the duration and severity of high-altitude exposure.
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关键词
flow-mediated dilation,hyperoxia,hypoxia,reactive hyperemia,shear stress
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