VESTIBULAR-AUTONOMIC ADAPTATION OF NAVAL CADETS IN A PROLONGED SEA VOYAGE AND PHYSICAL CORRECTION
Abstract
Aim. This paper aims to evaluate vestibular-autonomic load factors during a prolonged sea voyage in naval cadets and to justify a physical conditioning program for preventing seasickness, postural instability, and reduced performance. Materials and methods. A field observational study was conducted under real-world conditions during a training sea voyage on a surface vessel. Data from the ship’s weather log over the 51-day voyage (sea state, wind speed, atmospheric pressure, and compartment temperature) were analyzed, along with the results of work-related stress assessments and evaluations of reduced performance in 188 cadets. Additionally, a two-stage survey using Boyko’s method was administered to 99 cadets in 2024 and 111 cadets in 2025. Results. The mean sea state score was 1.55 ± 0.73, with sea states of 3–4 points recorded on 5 days; wind speed was 7.43 ± 3.25 m/s; compartment temperature ranged between 12 °C and 32 °C. The total stress load increased from 140.5 to 167.5 points, corresponding to a 19.2% increase. The majority of cadets did not develop a pronounced maladaptation phase. However, 17.1 % of those examined in 2025 and 23.3 % of those examined in 2024 exhibited signs of developing or established resistance phases. Conclusion. A prolonged sea voyage should be considered a model of combined sensory, vestibular, thermal, and organizational load. To prevent reduced performance, this article proposes a corrective exercise program targeting gaze stabilization, vestibular habituation, postural control, respiratory regulation, and overall motor activation.
References
References on translit
Copyright (c) 2026 Human. Sport. Medicine

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.













