Assessing Leg Blood Flow and Cardiac Output During Running Using Thermodilution
- PMID: 39056564
- DOI: 10.1111/sms.14705
Assessing Leg Blood Flow and Cardiac Output During Running Using Thermodilution
Abstract
Cardiac output (Q̇C) and leg blood flow (Q̇LEG) can be measured simultaneously with high accuracy using transpulmonary and femoral vein thermodilution with a single-bolus injection. The invasive measure has offered important insight into leg hemodynamics and blood flow distribution during exercise. Despite being the natural modality of exercise in humans, there has been no direct measure of Q̇LEG while running in humans. We sought to determine the feasibility of the thermodilution technique for measuring Q̇LEG and conductance during high-intensity running, in an exploratory case study. A trained runner (30 years male) completed two maximal incremental tests on a cycle ergometer and motorized treadmill. Q̇LEG and Q̇C were determined using the single-bolus thermodilution technique. Arterial and venous blood were sampled throughout exercise, with continuous monitoring of metabolism, intra-arterial and venous pressure, and temperature. The participant reached a greater peak oxygen uptake (V̇O2peak) during running relative to cycling (74 vs. 68 mL/kg/min) with comparable Q̇LEG (19.0 vs. 19.5 L/min) and Q̇C (27.4 vs. 26.2 L/min). Leg vascular conductance was greater during high-intensity running relative to cycling (82 vs. 70 mL/min/mmHg @ ~80% V̇O2peak). The "beat phenomenon" was apparent in femoral flow while running, producing large gradients in conductance (62-90 mL/min/mmHg @ 70% V̇O2peak). In summary, we present the first direct measure of Q̇LEG and conductance in a running human. Our findings corroborate several assumptions about Q̇LEG during running compared with cycling. Importantly, we demonstrate that using thermodilution in running exercise can be completed effectively and safely.
Keywords: cardiac output; leg blood flow; running; vascular conductance.
© 2024 The Author(s). Scandinavian Journal of Medicine & Science In Sports published by John Wiley & Sons Ltd.
References
-
- G. Fegler, “Measurement of Cardiac Output in Anaesthetized Animals by a Thermodilution Method,” Quarterly Journal of Experimental Physiology and Cognate Medical Sciences 39, no. 3 (1954): 153–164, https://doi.org/10.1113/expphysiol.1954.sp001067.
-
- W. Ganz, R. Donoso, H. S. Marcus, J. S. Forrester, and H. J. Swan, “A New Technique for Measurement of Cardiac Output by Thermodilution in Man,” American Journal of Cardiology 27, no. 4 (1971): 392–396, https://doi.org/10.1016/0002‐9149(71)90436‐x.
-
- V. Ganz, A. Hlavova, A. Fronek, J. Linhart, and I. Prerovsky, “Measurement of Blood Flow in the Femoral Artery in Man at Rest and During Exercise by Local Thermodilution,” Circulation 30 (1964): 86–89, https://doi.org/10.1161/01.cir.30.1.86.
-
- D. Sorlie and K. Myhre, “Determination of Lower Leg Blood Flow in Man by Thermodilution,” Scandinavian Journal of Clinical and Laboratory Investigation 37, no. 2 (1977): 117–124, https://doi.org/10.1080/00365517709156065.
-
- P. Andersen and B. Saltin, “Maximal Perfusion of Skeletal Muscle in Man,” Journal of Physiology 366 (1985): 233–249, https://doi.org/10.1113/jphysiol.1985.sp015794.
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