MedicineEnvironmental Science

Eric Mulder, I. Löfquist, Felix Schagatay, Arne Sieber, E. Schagatay

2026.1.1Journal of Physiological Sciences

DOI: 10.1016/j.jphyss.2026.100060

tlooto Summary

This case confirms BO can occur at SpO₂ values around 50 %, even in the absence of arrhythmia, and support individualized risk screening based on early desaturation patterns in submaximal dives.

Abstract

Blackout (BO) in breath-hold diving is attributed to cerebral hypoxia, yet direct observations are rare. We continuously recorded arterial oxygen saturation (SpO₂) and heart rate (HR) in 11 trained freedivers (5 females) performing two dynamic apneas (75 m, 100 m) using a waterproof forehead oximeter. One diver experienced BO at the end of a 100 m dive (SpO₂ 51 %), recovering within 5 s. Group SpO₂ fell from 98 ± 1 % to 77 ± 9 % (75 m) and 68 ± 9 % (100 m; range 51–83 %), while mean HR declined from 83 ± 12 to 43 ± 8 and 40 ± 4bpm, respectively. No arrhythmias were detected. Within-diver SpO₂ nadirs were consistent between distances (r = 0.93), whereas HR nadirs were not (r = 0.40). This case confirms BO can occur at SpO₂ values around 50 %, even in the absence of arrhythmia. The BO diver consistently showed the lowest SpO₂, indicating profound hypoxemia as the most likely contributing factor. Findings support individualized risk screening based on early desaturation patterns in submaximal dives.

Citation format

MULDER, Eric, et al. Hypoxic blackout in dynamic apnea: A case report. Journal of Physiological Sciences, 2026, 76(1): 100060.