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Updated: May 13, 2025

Swimming Performance Assessment in Fishes
Published on: May 20, 2011
Energetics of Underwater Swimming in Apnea
Giovanni Vinetti, Anna Taboni, Nazzareno Fagoni1
1Department of Molecular and Translational Medicine, University of Brescia, Brescia, ITALY.
Purpose:
Dynamic apnea with fins (DYN) involves swimming the longest distance relying solely on the body's oxygen and anaerobic energy stores. The energy cost per unit distance ( C ) is therefore an important determinant of DYN performance, yet it has never been measured. This study aimed to assess the C of DYN and its aerobic (EO 2 ), anaerobic lactic (ELa), and alactic (EPCr) energy contributions.
Methods:
In a 50-m swimming pool, 22 freedivers (3 females; 10 using bi-fins, 6 using monofin, 6 using both) performed a 50-m DYN, and 7 performed a 100-m DYN. Net C (above resting) was calculated from the O 2 debt measured at emersion plus ELa (calculated from the blood lactate increase). In nine subjects (six of whom performed also the 100-m DYN), determination of hemoglobin mass and total lung capacity allowed the estimation of EO 2 and, by subtraction, EPCr.
Results:
C was unchanged between the 100-m and the 50-m DYN ( P = 0.81) and resulted higher with bi-fins than with the monofin (7.4 ± 2.2 vs 5.5 ± 1.6 J·kg -1 ·m -1 , P = 0.02) due to a higher O 2 debt and ELa. DYN personal best correlated better with the distance swum per unit of EO 2 at 50 m ( R2 = 0.70) than with C ( R2 = 0.25). From 50 to 100 m, fractional EO 2 decreased (58% ± 19% to 47% ± 13%, P = 0.02), ELa increased (10% ± 5% to 21% ± 5%, P < 0.001), and EPCr was unchanged (31% ± 20% to 32% ± 15%, P = 0.83).
Conclusions:
The C of DYN seems compatible with published values for surface swimming with fins at the same speed. At 100 m, ELa and EPCr were disproportionately high for the exercise intensity, possibly due to a diving response. Sparing EO 2 is at least as important as C in determining DYN performance.
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