Alejandro M Rosales, Dustin R Slivka, Dale A Schoeller, Timothy C Shriver, Michele N Ravelli, Brent C Ruby
High doubly labeled water (DLW) derived total energy expenditure (TEE) and water turnover (rH2O) occur during 161km (100-mile) ultramarathons. TEE and rH2O during races exceeding 161km and requiring multiple days to complete constitute an anomalous physiological stressor to further elucidate duration-dependent limits of human endurance. PURPOSE: To quantify TEE and rH2O during a multi-day mountain ultramarathon. METHODS: Two runners (female [R1], male [R2]), completed 322km following DLW (2H218O) consumption. TEE and rH2O were calculated from urinary isotopic elimination rates. Race-provided GPS monitors measured duration, moving time, and non-activity time. RESULTS: R1 finished in 73.6h at a pace of 1.3 m·s-1 with non-activity/rest time totaling 32% of the race (50.3h moving, 23.3h resting). In-race TEE for R1 was 123.9 MJ (29,376 kcals) and 35.5 MJ·d-1 (8,408 kcals·d-1, 5.6 times the basal metabolic rate [×BMR]) when expressed per 24h. In-race rH2O for R1 was 35.2 L (10.1 L·d-1). R2 finished in 89.9h at a pace of 1.0 m·s-1 with non-activity/rest time totaling 52% of the race (43.0h moving, 46.9h resting). In-race TEE for R2 was 164.2 MJ (38,909 kcals) and 41.1 MJ·d-1 (9,737 kcals·d-1, 5.0 ×BMR) when expressed per 24h. In-race rH2O for R2 was 47.5 L (11.9 L·d-1). CONCLUSIONS: Akin to 161km events, multi-day events are exceptional human endurance feats, demonstrating large absolute TEE and rH2O values. However, the daily TEE range of multi-day events appears diluted by unique non-activity time needs (rest, sleep). Thus, the human endurance metabolic ceiling will be largely contingent upon event duration.