Automated detection of respiratory phenotypes during sleep

H. Schneider, S. Patil, E. Gladmon, S. Haeussler, M. Wagner, P.L. Smith, A. Schwartz
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Abstract

We hypothesized that normal individuals can be distinguished on the basis of specific respiratory phenotypes during sleep that determine one's susceptibility to the development of obstructive sleep apnea. To test this hypothesis, methods have been developed to 1) rapidly assess baseline upper airway and respiratory timing characteristics and compensatory responses in these parameters to experimentally induced upper airway obstruction during sleep in normal individuals, and 2) automate the detection of the respiratory pattern and the presence of flow limitation during these experimentally induced upper airway obstructions. We demonstrated that: (1) marked variability in the responses to upper airway obstruction exist among normal individuals, and that (2) upper airway collapsibility (critical pressure) is modulated dynamically by a number of reflex neuromuscular responses triggered by breathing through an obstructed upper airway. Moreover, (3) our methods allowed us to assess the relative strength of compensatory neuromuscular responses to upper airway obstruction in normal individuals. Our findings indicate that the normal individual's susceptibility to the development of upper airway obstruction during sleep is determined by the passive upper airway properties and/or by a lack of vigorous compensatory neuromuscular responses.
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睡眠期间呼吸表型的自动检测
我们假设正常人可以根据睡眠中特定的呼吸表型来区分,这些表型决定了一个人对阻塞性睡眠呼吸暂停的易感性。为了验证这一假设,研究人员开发了以下方法:1)快速评估正常人睡眠期间实验诱导的上呼吸道阻塞的基线上呼吸道和呼吸时间特征以及这些参数的代偿反应;2)自动检测这些实验诱导的上呼吸道阻塞期间的呼吸模式和流量限制的存在。我们证明:(1)正常个体对上气道阻塞的反应存在显著的可变性,(2)上气道塌陷(临界压力)是由通过阻塞的上气道呼吸触发的一些反射神经肌肉反应动态调节的。此外,(3)我们的方法使我们能够评估正常人对上气道阻塞的代偿神经肌肉反应的相对强度。我们的发现表明正常个体的易感性在睡眠时上气道阻塞的发展是由被动上呼吸道属性和/或缺乏有力的补充神经肌肉反应。
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