Effects of Pre-dive Ketone Food Products on Latency to Central Nervous System Oxygen Toxicity
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 15
- 试验地点
- 2
- 主要终点
- Change in serum acetoacetate levels.
研究概览
简要总结
The purpose of this study is to understand how ketogenic food products affect oxygen toxicity in undersea divers. Oxygen toxicity affecting the central nervous system, mainly the brain, is a result of breathing higher than normal oxygen levels at elevated pressures as can be seen in SCUBA diving or inside a hyperbaric (pressure) chamber. This is a condition that may cause a wide variety of symptoms such as: vision disturbances, ear-ringing, nausea, twitching, irritability, dizziness, and potentially loss of consciousness or seizure. Because nutritional ketosis has been used to reduce or eliminate seizures in humans, it may be beneficial to reduce oxygen toxicity as well. The investigators hope this study will provide a help to develop practical and useful methods for improving the safety of undersea Navy divers, warfighters and submariners.
详细描述
Central nervous system (CNS) oxygen toxicity continues to be a risk for military divers and constrains their operations. Manifestations of this condition range from nausea, twitching, and tinnitus to seizures and unresponsiveness, and the latter may lead to death by drowning. The NAVY has a need for better methods to prevent or delay the onset of CNS oxygen toxicity (CNSOT) and to safely expand the scope of diving operations. It is the broad objective of this study to generate information that will enhance warfighter safety and performance in relevant NAVY operations by reducing the risk of CNS oxygen toxicity.
It is known that nutritional ketosis through a diet with a high fat-to-carbohydrate ratio (ketogenic diet) can reduce the frequency and severity of epileptic seizures in humans, and a recent animal study has shown that dietary ketosis also delays the onset of CNSOT. In recent years, ketone ester food products ketone esters have been made commercially available which may elevate circulating ketone levels. The investigators aim to investigate whether ketosis from commercially available ketogenic food products prior to a dive will delay the onset of CNSOT.
The first aim of this study will be to determine the effect of ketone food product ingestion on serum ketone levels, and document any relevant side effects. Post-ingestion ketone levels will be trended for 3 different ketone food product regimens in 15 total subjects. Data will be used to select the optimal ketone food product strategy to investigate in the second aim which will be registered separately.
研究设计
- 研究类型
- Interventional
- 分配方式
- Non Randomized
- 干预模型
- Sequential
- 主要目的
- Prevention
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 39 Years(Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Males & females between 18 and 39 years old.
- •Predicted (Phase 1) VO2max ≥ 30 ml/kg/min (female) or 35 ml/kg/min (male).
- •BMI ≤ 30.0 unless VO2max and baseline exercise profile is deemed appropriate for the study by the PI.
排除标准
- •Prolonged QTc on initial ECG
- •Currently pregnant or attempting to become pregnant.
- •Have a medical history of:
- •Smoking history deemed significant by PI
- •Known significant electrolyte disorders
- •Coronary artery disease
- •Cardiac arrhythmia deemed significant by PI
- •Lung disease
- •Hypertension
- •Exercise intolerance or inability to meet inclusion requirements
- •Psychiatric disorder deemed significant by PI
- •Previous pneumothorax or pneumomediastinum
- •Hypo- or hyperglycemia
- •Inability to equalize middle ear spaces during hyperbaric compression
- •Claustrophobia
- •Regularly take any medications which may alter heart rate, blood pressure, neurotransmitter function, alter seizure threshold, mood or affect per PI discretion.
- •Any other condition limiting ability to perform exercise testing or dive profile as determined by the investigators.
结局指标
主要结局
Change in serum acetoacetate levels.
时间窗: over 6 hours
Assess serum ketone levels over the course of 6 hours after the ingestion of ketone food products.
Change in acetone levels
时间窗: over 6 hours
Change in beta hydroxybutyrate levels
时间窗: over 6 hours
次要结局
- Tolerability of ketone food product ingestion measured by adverse events(24 hours)
