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Electrocardiogram (ECG) analysis was performed in three human divers during a 71 atm (7,200 kPa) saturation dive (COMEX HYDRA 10 experiment). The inhaled gas mixture was slightly hyperoxic; its composition was basically helium and oxygen. Hydrogen was introduced during compression and its partial pressure reached 20 atm. ECG changes were the same in the three divers. Marked bradycardia rapidly appeared at the beginning of compression, then this response adapted throughout the dive. P-R, QRS, and Q-T intervals and the S-T segment did not change significantly. The QRS axis remained stable. However, a rightward shift occurred in P and T vector angles. These changes were correlated with time and gas density, respectively. The modifications of ventricular repolarization during compression are similar to those we observed during the HYDRA 9 COMEX dive. They may correspond to changes in duration of myocardial cell repolarization due to increased intrathoracic pressure changes with dense-gas breathing. A marked global diminution of voltage occurred during the decompression period. This suggests that accumulation of micro bubbles in tissues may influence the impedance, causing an artifact in the amplitude of ECG complexes.


Mehr lesen: https://pubmed.ncbi.nlm.nih.gov/7742710

Membranes traditionnelles

M

Pas d'élimination totale sur toute la durée de vie

M

Durée de conservation courte, généralement limitée à un an

M

Rapport élevé des eaux usées de 1:2 à 1:4 litres

M

Sensible aux charges élevées de particules et de dépôts, ce qui réduit la durée de vie

M

Pas de technologie brevetée et principalement des produits de masse

Membrane Evodrop

N

99,9% de filtration effective sans remise

N

Entretien tous les 10 000 litres ou au plus tard tous les 5 ans

N

Faible rapport d'eau usée de 1:1

N

La structure intégrée de la surface minimise l'adhérence des particules et des dépôts.

N

Procédé à membrane protégée (Orbital Osmosis®)

Evodrop utilise la base de données IP2Location LITE pour la géolocalisation IP .