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Central Nervous System Oxygen Toxicity and Hyperbaric Oxygen Seizures

机译:中枢神经系统氧气中毒和高压氧抽搐

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introduction: The use of hyperbaric oxygen (O2) as a therapeutic agent carries with it the risk of central nervous system (CNS) O2 toxicity. methods: To further the understanding of this risk and the nature of its molecular mechanism, a review was conducted on the literature from various fields. results: Numerous physiological changes are produced by increased partial pressures of oxygen (pO2), which may ultimately result in CNS O2 toxicity. The human body has several equilibrated safeguards that minimize effects of reactive species on neural networks, believed to play a primary role in CNS O2 toxicity. Increased partial pressure of oxygen (Po2) appears to saturate protective enzymes and unfavorably shift protective reactions in the direction of neural network overstimu-lation. Certain regions of the CNS appear more susceptible than others to these effects. Failure to decrease the elevated Po2 can result in a tonic-clonic seizure and death. Randomized, controlled studies in human populations would require a multicenter trial over a long period of time with numerous endpoints used to identify O2 toxicity. conclusions: The mounting scientific evidence and apparent increase in the number of hyperbaric O2 treatments demonstrate a need for further study in the near future.
机译:简介:使用高压氧(O2)作为治疗剂会带来中枢神经系统(CNS)O2毒性的风险。方法:为了进一步了解这种风险及其分子机制的性质,对各个领域的文献进行了综述。结果:氧分压(pO2)的增加会引起许多生理变化,最终可能导致CNS O2毒性。人体具有几种平衡的防护措施,可最大限度地减少反应物种对神经网络的影响,据信这在CNS O2毒性中起主要作用。升高的氧气分压(Po2)似乎会使保护酶饱和,并且不利地将保护反应移向神经网络过度刺激的方向。中枢神经系统的某些区域似乎比其他区域更容易受到这些影响。未能降低升高的Po2可能导致强直阵挛性癫痫发作和死亡。在人群中进行的随机对照研究需要长期的多中心试验,并使用大量终点来确定O2毒性。结论:越来越多的科学证据和高压氧治疗数量的明显增加表明在不久的将来需要进一步研究。

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