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Effects of changing in the neck circumference during sleep on snoring sound characteristics

机译:在睡眠期间改变在颈围内的效果打鼾声音特征

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Rostral fluid shift during sleep from the lower body part into the neck can increase neck circumference (NC) and narrow the upper airway. Such narrowing in the upper airway may increase turbulence of airflow passing through the upper airway; thus, induce snoring. The objective of this study was to investigate the effects of changes in NC during sleep on snoring sound characteristics. Fifteen non-obese men slept supine, and their sleep was monitored by a regular polysomnography. Snoring sounds were recorded with a microphone attached to the neck. NC was measured before and after sleep with a measuring tape. Snoring sounds' average power was calculated in different frequency ranges of 100 - 4000 Hz, 100 - 150 Hz, 150 - 450 Hz, 450 - 600 Hz, 600 - 1200 Hz, 1200 - 1800 Hz, 1800 - 2500 Hz and 2500 - 4000 Hz. Statistical analysis showed that increases in NC after sleep were strongly correlated with higher average power of the snoring sounds in the frequency ranges of 100-4000 Hz (r=0.74, P=0.004), 100-150 Hz (r=0.70, P=0.008), 150-450 Hz (r=0.73, P=0.005), and 450 - 600 Hz (r= 0.65, P=0.025). These results encourage the use of snoring sound analysis for monitoring the effects of fluid accumulation in the neck in relation to sleep apnea.
机译:从下半身部分睡到颈部睡眠过程中的升流体偏移可以增加颈圆周(NC)并缩小上部气道。上呼吸道的这种缩小可能会增加通过上气道的气流的湍流;因此,诱导打鼾。本研究的目的是调查睡眠睡眠期间NC变化的影响。十五个非肥胖的男人睡觉仰卧,他们的睡眠被常规的多面体摄影监测。打鼾声音用颈部连接的麦克风录制。通过测量胶带睡眠前后测量NC。 Snoring Sounds'普通电力是计算in in不同的频率范围为100 - 4000 Hz,100 - 150 Hz,150 - 450 Hz,450 - 600 Hz,600 - 1200 Hz,1200 - 1800 Hz,1800 - 2500 Hz和2500 - 4000赫兹。统计分析表明,睡眠后NC的增加与频率范围的频率范围的较高平均力量强烈相关(r = 0.74,p = 0.004),100-150 Hz(r = 0.70,p = 0.008),150-450 Hz(r = 0.73,p = 0.005)和450-600Hz(r = 0.65,p = 0.025)。这些结果鼓励使用打鼾声音分析来监测与睡眠呼吸暂停相关的颈部中的流体积聚的影响。

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