Selecting optimal air diving gradient factors for Belgian military divers: more conservative settings are not necessarily safer.

IF 0.8 4区 医学 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Sven De Ridder, Nathalie Pattyn, Xavier Neyt, Peter Germonpré
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引用次数: 0

Abstract

Introduction: In 2018, the Belgian Defence introduced a commercial off-the-shelf dive computer (Shearwater Perdix™) for use by its military divers. There were operational constraints when using its default gradient factors (GF). We aimed to provide guidelines for optimal GF selection.

Methods: The Defence and Civil Institute of Environmental Medicine (DCIEM) dive tables and the United States Navy (USN) air decompression tables are considered acceptably safe by the Belgian Navy Diving Unit. The decompression model used in the Shearwater Perdix (Bühlmann ZH-L16C algorithm with GF) was programmed in Python. Using a sequential search of the parameter space, the GF settings were optimised to produce decompression schedules as close as possible to those prescribed by the USN and DCIEM tables.

Results: All reference profiles are approached when GFLO is kept equal to 100 and only GFHI is reduced to a minimum of 75 to prolong shallower stop times. Using the Perdix default settings (GFLO = 30 and GFHI = 70) yields deeper initial stops, leading to increased supersaturation of the 'slower' tissues, which potentially leads to an increased DCS risk. However, Perdix software does not currently allow for the selection of our calculated optimal settings (by convention GFLO < GFHI). A sub-optimal solution would be a symmetrical GF setting between 75/75 and 95/95.

Conclusions: For non-repetitive air dives, the optimal GF setting is GFLO 100, with only the GFHI parameter lowered to increase safety. No evidence was found that using the default GF setting (30/70) would lead to a safer decompression for air dives as deep as 60 metres of seawater; rather the opposite. Belgian Navy divers have been advised against using the default GF settings of the Shearwater Perdix dive computer and instead adopt symmetrical GF settings which is currently the optimal achievable approach considering the software constraints.

为比利时军事潜水员选择最佳的空中潜水梯度因素:更保守的设置并不一定更安全。
简介:2018年,比利时国防部推出了一款商用现成潜水电脑(Shearwater Perdix™) 供其军事潜水员使用。使用其默认梯度因子(GF)时存在操作限制。我们旨在为最佳GF选择提供指导。方法:比利时海军潜水部队认为国防和民用环境医学研究所(DCIEM)的潜水台和美国海军(USN)的空气减压台是可接受的安全设备。Shearwater-Perdix(带GF的Bühlmann ZH-L16C算法)中使用的解压缩模型是用Python编程的。使用对参数空间的顺序搜索,对GF设置进行了优化,以产生尽可能接近USN和DCIEM表规定的解压缩时间表。结果:当GFLO保持等于100时,接近所有参考剖面,并且只有GFHI减少到最小75,以延长较浅的停止时间。使用Perdix默认设置(GFLO=30和GFHI=70)会产生更深的初始停止,导致“较慢”组织的过饱和增加,这可能导致DCS风险增加。然而,Perdix软件目前不允许选择我们计算的最佳设置(按照惯例,GFLO
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来源期刊
Diving and hyperbaric medicine
Diving and hyperbaric medicine 医学-公共卫生、环境卫生与职业卫生
CiteScore
1.70
自引率
22.20%
发文量
37
审稿时长
>12 weeks
期刊介绍: Diving and Hyperbaric Medicine (DHM) is the combined journal of the South Pacific Underwater Medicine Society (SPUMS) and the European Underwater and Baromedical Society (EUBS). It seeks to publish papers of high quality on all aspects of diving and hyperbaric medicine of interest to diving medical professionals, physicians of all specialties, scientists, members of the diving and hyperbaric industries, and divers. Manuscripts must be offered exclusively to Diving and Hyperbaric Medicine, unless clearly authenticated copyright exemption accompaniesthe manuscript. All manuscripts will be subject to peer review. Accepted contributions will also be subject to editing.
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