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Seven days of ischemic preconditioning augments hypoxic exercise ventilation and muscle oxygenation in recreationally trained males.

Afton D SeeleyAaron R CaldwellLawrence P CahalinSoyeon AhnArlette C PerryBrian ArwariKevin A Jacobs
Published in: American journal of physiology. Regulatory, integrative and comparative physiology (2022)
This investigation sought to assess whether single or repeated bouts of ischemic preconditioning (IPC) could improve oxyhemoglobin saturation ([Formula: see text]) and/or attenuate reductions in muscle tissue saturation index (TSI) during submaximal hypoxic exercise. Fifteen healthy young men completed submaximal graded exercise under four experimental conditions: <i>1</i>) normoxia (NORM), <i>2</i>) hypoxia (HYP) [oxygen fraction of inspired air ([Formula: see text]) = 0.14, ∼3,200 m], <i>3</i>) hypoxia preceded by a single session of IPC (IPC1-HYP), and <i>4</i>) hypoxia preceded by seven sessions of IPC, one a day for 7 consecutive days (IPC7-HYP). IPC7-HYP heightened minute ventilation (V̇e) at 80% HYP peak cycling power output (<i>W</i><sub>peak</sub>) (+10.47 ± 3.35 L·min<sup>-1</sup>, <i>P</i> = 0.006), compared with HYP, as a function of increased breathing frequency. Both IPC1-HYP (+0.17 ± 0.04 L·min<sup>-1</sup>, <i>P</i> &lt; 0.001) and IPC7-HYP (+0.16 ± 0.04 L·min<sup>-1</sup>, <i>P</i> &lt; 0.001) elicited greater oxygen consumption (V̇o<sub>2</sub>) across exercise intensities compared with NORM, whereas V̇o<sub>2</sub> was unchanged with HYP alone. [Formula: see text] was unchanged by either IPC condition at any exercise intensity, yet the reduction of muscle TSI during resting hypoxic exposure was attenuated by IPC7-HYP (+9.9 ± 3.6%, <i>P</i> = 0.040) compared with HYP, likely as a function of reduced local oxygen extraction. Considering all exercise intensities, IPC7-HYP attenuated reductions of TSI with HYP (+6.4 ± 1.8%, <i>P</i> = 0.001). Seven days of IPC heightens ventilation, posing a threat to ventilatory efficiency, during high-intensity submaximal hypoxic exercise and attenuates reductions in hypoxic resting and exercise muscle oxygenation in healthy young men. A single session of IPC may be capable of modulating hypoxic ventilation; however, our present population was unable to demonstrate this with certainty.
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