Effects of high oxygen tension on healthy volunteer microcirculation.

IF 0.8 4区 医学 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Diving and hyperbaric medicine Pub Date : 2022-12-20 DOI:10.28920/dhm52.4.260-270
Nicolas Cousin, Julien Goutay, Patrick Girardie, Raphaël Favory, Elodie Drumez, Daniel Mathieu, Julien Poissy, Erika Parmentier, Thibault Duburcq
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Abstract

Introduction: Previous studies have highlighted hyperoxia-induced microcirculation modifications, but few have focused on hyperbaric oxygen (HBO) effects. Our primary objective was to explore hyperbaric hyperoxia effects on the microcirculation of healthy volunteers and investigate whether these modifications are adaptative or not.

Methods: This single centre, open-label study included 15 healthy volunteers. Measurements were performed under five conditions: T0) baseline value (normobaric normoxia); T1) hyperbaric normoxia; T2) hyperbaric hyperoxia; T3) normobaric hyperoxia; T4) return to normobaric normoxia. Microcirculatory data were gathered via laser Doppler, near-infrared spectroscopy and transcutaneous oximetry (PtcO₂). Vascular-occlusion tests were performed at each step. We used transthoracic echocardiography and standard monitoring for haemodynamic investigation.

Results: Maximal alterations were observed under hyperbaric hyperoxia which led, in comparison with baseline, to arterial hypertension (mean arterial pressure 105 (SD 12) mmHg vs 95 (11), P < 0.001) and bradycardia (55 (7) beats·min⁻¹ vs 66 (8), P < 0.001) while cardiac output remained unchanged. Hyperbaric hyperoxia also led to microcirculatory vasoconstriction (rest flow 63 (74) vs 143 (73) perfusion units, P < 0.05) in response to increased PtcO₂ (104.0 (45.9) kPa vs 6.3 (2.4), P < 0.0001); and a decrease in laser Doppler parameters indicating vascular reserve (peak flow 125 (89) vs 233 (79) perfusion units, P < 0.05). Microvascular reactivity was preserved in every condition.

Conclusions: Hyperoxia significantly modifies healthy volunteer microcirculation especially during HBO exposure. The rise in PtcO₂ promotes an adaptative vasoconstrictive response to protect cellular integrity. Microvascular reactivity remains unaltered and vascular reserve is mobilised in proportion to the extent of the ischaemic stimulus.

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高氧张力对健康志愿者微循环的影响
简介:以前的研究强调了高氧引起的微循环改变,但很少有研究关注高压氧(HBO)的影响:以往的研究强调了高氧引起的微循环改变,但很少有研究关注高压氧(HBO)的影响。我们的主要目的是探索高压氧对健康志愿者微循环的影响,并研究这些改变是否具有适应性:这项单中心、开放标签研究包括 15 名健康志愿者。测量在五种条件下进行:T0)基线值(常压常氧);T1)高压常氧;T2)高压高氧;T3)常压高氧;T4)恢复到常压常氧。通过激光多普勒、近红外光谱和经皮血氧仪(PtcO₂)收集微循环数据。每个步骤都进行了血管闭塞测试。我们使用经胸超声心动图和标准监测仪进行血流动力学检查:结果:在高压氧状态下观察到的最大变化是,与基线相比,动脉高血压(平均动脉压 105 (SD 12) mmHg vs 95 (11),P < 0.001)和心动过缓(55 (7) 次/分钟-¹ vs 66 (8),P < 0.001),而心输出量保持不变。高压氧还导致微循环血管收缩(静息血流 63 (74) vs 143 (73) 个灌注单位,P < 0.05),以应对 PtcO₂ 的增加(104.0 (45.9) kPa vs 6.3 (2.4),P < 0.0001);以及表明血管储备的激光多普勒参数的下降(峰值血流 125 (89) vs 233 (79) 个灌注单位,P < 0.05)。结论:高氧显著改变了健康人的血管储备:结论:高氧明显改变了健康志愿者的微循环,尤其是在 HBO 暴露期间。PtcO₂的升高促进了适应性血管收缩反应,以保护细胞的完整性。微血管反应性保持不变,血管储备的调动与缺血刺激的程度成正比。
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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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