Literature DB >> 1115694

Optimal use of nitrogen to suppress the high pressure nervous syndrome.

P B Bennett, R S Simon, D Youngblood.   

Abstract

Five subjects were compressed to 1000 ft (31 ATA) for 2 h breathing 3.2 ATA nitrogen, 0.5 ATA oxygen, and the remainder helium. The compression took 33 min with a 10-s stage at 50 ft (2.5 ATA), 1 MIN AT 320 FT (10.7 ATA), and 2 min at 700 ft (22 ATA). Hypothetically, this 1:10 ratio for nitrogen-helium partial pressures should induce neither nitrogen narcosis nor the High Pressure Nervous Syndrome (HPNS). Tests, therefore, were made during the experiment of postural tremor, spontaneous electroencephalogram, psychomotor and intellectual activities, and subjective sensations. One diver worked underwater for 40 min on a simulated engineering assembly while breathing with a closed-circuit breathing apparatus and wearing a battery-heated suit in water at 56 degrees F. Decompression was in 4 d using 0.8 ATA oxygen and helium. The performance tests indicated no narcosis and little or no signs of HPNS. No tremor or EEG changes were seen. The "wet" diver reported sensations of mild euphoria but the other four reported no difficulties. No nausea or dizziness of HPNS was reported. It is concluded that use of a ratio of 1:10::N2:He is effective in the control of narcosis and HPNS during rapid compression to 1000 ft (31 ATA).

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Year:  1975        PMID: 1115694

Source DB:  PubMed          Journal:  Aviat Space Environ Med        ISSN: 0095-6562


  2 in total

1.  The effect of increased nitrogen pressure on motor activity and the intercentral relationships of the brain of monkeys.

Authors:  A N Vetosh; E E Feigman; O I Sharapov; M N Shilina
Journal:  Neurosci Behav Physiol       Date:  1993 Jul-Aug

2.  Dopamine/BDNF loss underscores narcosis cognitive impairment in divers: a proof of concept in a dry condition.

Authors:  Gerardo Bosco; Tommaso Antonio Giacon; Nazareno Paolocci; Alessandra Vezzoli; Cinzia Della Noce; Matteo Paganini; Jacopo Agrimi; Giacomo Garetto; Danilo Cialoni; Natalie D'Alessandro; Enrico M Camporesi; Simona Mrakic-Sposta
Journal:  Eur J Appl Physiol       Date:  2022-10-10       Impact factor: 3.346

  2 in total

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