Literature DB >> 23813463

Recreational technical diving part 2: decompression from deep technical dives.

David J Doolette1, Simon J Mitchell.   

Abstract

Technical divers perform deep, mixed-gas 'bounce' dives, which are inherently inefficient because even a short duration at the target depth results in lengthy decompression. Technical divers use decompression schedules generated from modified versions of decompression algorithms originally developed for other types of diving. Many modifications ostensibly produce shorter and/or safer decompression, but have generally been driven by anecdote. Scientific evidence relevant to many of these modifications exists, but is often difficult to locate. This review assembles and examines scientific evidence relevant to technical diving decompression practice. There is a widespread belief that bubble algorithms, which redistribute decompression in favour of deeper decompression stops, are more efficient than traditional, shallow-stop, gas-content algorithms, but recent laboratory data support the opposite view. It seems unlikely that switches from helium- to nitrogen-based breathing gases during ascent will accelerate decompression from typical technical bounce dives. However, there is evidence for a higher prevalence of neurological decompression sickness (DCS) after dives conducted breathing only helium-oxygen than those with nitrogen-oxygen. There is also weak evidence suggesting less neurological DCS occurs if helium-oxygen breathing gas is switched to air during decompression than if no switch is made. On the other hand, helium-to-nitrogen breathing gas switches are implicated in the development of inner-ear DCS arising during decompression. Inner-ear DCS is difficult to predict, but strategies to minimize the risk include adequate initial decompression, delaying helium-to-nitrogen switches until relatively shallow, and the use of the maximum safe fraction of inspired oxygen during decompression.

Entities:  

Keywords:  decompression; decompression sickness; decompression tables; deep diving; inner ear; models; review article; technical diving; trimix

Mesh:

Substances:

Year:  2013        PMID: 23813463

Source DB:  PubMed          Journal:  Diving Hyperb Med        ISSN: 1833-3516            Impact factor:   0.887


  6 in total

1.  A comparative evaluation of two decompression procedures for technical diving using inflammatory responses: compartmental versus ratio deco.

Authors:  Enzo Spisni; Claudio Marabotti; Luigia De Fazio; Maria Chiara Valerii; Elena Cavazza; Stefano Brambilla; Klarida Hoxha; Antonio L'Abbate; Pasquale Longobardi
Journal:  Diving Hyperb Med       Date:  2017-03       Impact factor: 0.887

2.  A technical diving-related burns case: treatment in a remote location.

Authors:  Fiona C Sharp; Martin Dj Sayer
Journal:  Diving Hyperb Med       Date:  2017-06       Impact factor: 0.887

3.  Decompression illness in Finnish technical divers: a follow-up study on incidence and self-treatment.

Authors:  Laura J Tuominen; Sofia Sokolowski; Richard V Lundell; Anne K Räisänen-Sokolowski
Journal:  Diving Hyperb Med       Date:  2022-06-30       Impact factor: 1.228

4.  Diving Responses in Experienced Rebreather Divers: Short-Term Heart Rate Variability in Cold Water Diving.

Authors:  Richard V Lundell; Laura Tuominen; Tommi Ojanen; Kai Parkkola; Anne Räisänen-Sokolowski
Journal:  Front Physiol       Date:  2021-04-07       Impact factor: 4.566

5.  Physiology of repeated mixed gas 100-m wreck dives using a closed-circuit rebreather: a field bubble study.

Authors:  Costantino Balestra; François Guerrero; Pierre Lafère; Sigrid Theunissen; Peter Germonpré
Journal:  Eur J Appl Physiol       Date:  2021-11-28       Impact factor: 3.078

6.  The impact of different gas mixtures on inflammatory responses in advanced recreational divers.

Authors:  Monica Rocco; Luigi Maggi; Chiara Loffredo; Massimiliano Pelli; Pia Di Benedetto; Silvia Fiorelli; Maurizio Simmaco; Roberto Alberto De Blasi
Journal:  Diving Hyperb Med       Date:  2021-06-30       Impact factor: 1.228

  6 in total

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