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极端海拔高度睡眠期间周期性呼吸与觉醒的动态变化

Dynamics of periodic breathing and arousal during sleep at extreme altitude.

作者信息

Khoo M C, Anholm J D, Ko S W, Downey R, Powles A C, Sutton J R, Houston C S

机构信息

Biomedical Engineering Dept., University of Southern California, Los Angeles, USA.

出版信息

Respir Physiol. 1996 Jan;103(1):33-43. doi: 10.1016/0034-5687(95)00057-7.

Abstract

To determine whether nocturnal periodic breathing (PB) at altitude is due primarily to unstable control of ventilation or the inability to maintain stable sleep states, we performed visual and computer analyses of the electroencephalographic and respiratory records of healthy volunteers at simulated altitudes of 4572, 6100 and 7620 m. Transient arousals were associated with < 52% of the apneas identified; thus, the PB cycle was not always associated with transient arousal. Following the termination of oxygen breathing, the reinitiation of PB was not dependent on the occurrence of arousal as the primary event. The transition from apnea to breathing preceded the appearance of arousal by approximately 1 to 4 sec. Ventilatory drive in the breaths immediately following arousal was significantly larger than corresponding control breaths, matched for SaO2. Our findings suggest that altitude-induced PB is unlikely to result from primary fluctuations in state. Arousals promote the development of PB with apnea and help to sustain these episodes, but are not necessary for their initiation.

摘要

为了确定高原夜间周期性呼吸(PB)主要是由于通气控制不稳定还是无法维持稳定的睡眠状态,我们对健康志愿者在模拟海拔4572米、6100米和7620米高度时的脑电图和呼吸记录进行了视觉和计算机分析。短暂觉醒与所识别的呼吸暂停中不到52%相关;因此,PB周期并不总是与短暂觉醒相关。在停止吸氧后,PB的重新启动并不依赖于作为主要事件的觉醒的发生。从呼吸暂停到呼吸的转变比觉醒的出现早大约1至4秒。觉醒后紧接着的呼吸中的通气驱动明显大于相应的对照呼吸,这些对照呼吸的血氧饱和度(SaO2)相匹配。我们的研究结果表明,高原诱导的PB不太可能源于状态的原发性波动。觉醒促进了伴有呼吸暂停的PB的发展,并有助于维持这些发作,但对于其启动并非必需。

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