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Ketogenic diet for high partial pressure oxygen diving

机译:生酮饮食用于高分压氧气潜水

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Introduction: A ketogenic diet (KD) may decrease central nervous system oxygen toxicity symptoms in divers, and in view of this implication a feasibility/ toxicity pilot study was performed to demonstrate tolerance of KD while performing normal diving profiles. The exact mechanism of neuroprotection from the KD remains unknown; however, evidence to support the efficacy of the KD in reducing seizures is present in epilepsy and oxygen toxicity studies, and may provide valuable insight in diving activities. Methods: Three divers (two males and one female ages 32-45 with a history of deep diving and high pO 2 exposure) on the KD made dives to varying depths in Hawaii using fully closed-circuit MK-15 and Inspiration rebreathers. These rebreathers have an electronically controlled set point, allowing the divers to monitor and control the oxygen level in the breathing loop, which can be varied manually by the divers. Oxygen level was varied during descent, bottom depth and ascent (decompression). Divers fasted for 12-18 hours before diet initiation. The ketosis level was verified by urinating on a Ketostix (reagent strips for urinalysis). Results/Summary: Ketosis was achieved and was easily monitored with Ketostix in the simulated operational environment. The KD did not interfere with the diving mission; no seizure activity or signs or symptoms of CNS toxicity were observed, and there were no adverse effects noted by the divers while on the KD.
机译:简介:生酮饮食(KD)可能会减轻潜水员的中枢神经系统氧中毒症状,鉴于这种影响,进行了可行性/毒性试验研究,以证明KD在正常潜水过程中的耐受性。 KD的神经保护的确切机制尚不清楚;然而,在癫痫和氧中毒研究中已有支持KD减少癫痫发作功效的证据,并且可能为潜水活动提供有价值的见解。方法:在KD上,三名潜水员(两名男性,一名女性,年龄32-45,具有深潜和高pO 2暴露史)使用完全闭路MK-15和Inspiration循环呼吸器在夏威夷进行了不同深度的潜水。这些循环呼吸器具有电子控制的设定点,使潜水员可以监视和控制呼吸回路中的氧气水平,潜水员可以手动改变氧气水平。在下降,底部深度和上升(减压)过程中,氧气含量有所变化。潜水员在饮食开始前禁食12-18小时。酮症水平通过在Ketostix(用于尿液分析的试剂条)上排尿来验证。结果/总结:在模拟的操作环境中,已经实现了酮症并且可以使用Ketostix对其进行轻松监控。 KD没有干扰潜水任务;没有观察到癫痫发作活动或中枢神经系统毒性的体征或症状,并且潜水员在KD上没有发现不良反应。

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