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首页> 外文期刊>Journal of Sound and Vibration >CARDIAC REACTIVITY TO TRAFFIC NOISE DURING SLEEP IN MAN
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CARDIAC REACTIVITY TO TRAFFIC NOISE DURING SLEEP IN MAN

机译:人体睡眠时对交通噪声的心脏反应性

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摘要

A relation between stimulus characteristics of traffic noise and cardiac response mechanisms during sleep was studied in 12 subjects, living along a highway with a high traffic density. Two experimental conditions were created inside the bedroom with (1) a normal sound level and (2) a reduced sound level. The indoor sound levels were reduced by means of acoustical double glazing of the windows facing the motorway with high traffic density. Ten nights were recorded per subject in each condition. Evoked Cardiac Responses (ECR) were observed due to peaks in the indoor recorded sound level signal in both conditions. The lowering of the sound level by sound insulation did not reduce the magnitude or the absolute level of the cardiac responses to the peaks in the traffic noise. This may be related to the fact that the sound insulation decreased the mean sound level, but not the number of sound peaks, thus indicating that the double glazing sound insulation was not optimal. Cardiac acceleration due to traffic noise stimuli did not decrease with time over the ten nights with high sound level. A relation was found between the magnitude of the ECR and the slope and the duration of the peaks in the sound level signal of the traffic noise as recorded in the bedroom. Our results provide evidence that ''cardiac arousal'' in response to traffic noise persists even during sleep. The cardiac reactivity was sensitive to changes in stimulus characteristics. Thus traffic noise can disturb sleep even without waking the subjects. [References: 26]
机译:研究了生活在交通密度高的高速公路上的12位受试者的交通噪声刺激特性与睡眠期间心脏反应机制之间的关系。在卧室内创建了两个实验条件,其中(1)正常声级和(2)降低声级。面对高速公路的车窗,通过高隔音密度的双层隔音玻璃,可降低室内声音水平。在每种情况下,每个受试者记录了十个晚上。在两种情况下,由于室内记录的声级信号出现峰值,因此引起了诱发的心脏反应(ECR)。通过隔音降低声音水平不会降低心脏对交通噪声峰值的反应的幅度或绝对水平。这可能与以下事实有关:隔音降低了平均声音水平,但没有降低声音峰值的数量,因此表明双层玻璃隔音不是最佳的。在高声级的十个晚上,由于交通噪声刺激而导致的心脏加速并未随时间降低。发现在卧室中记录到的ECR的幅度和斜率与交通噪声的声级信号中的峰值持续时间之间存在关系。我们的结果提供了证据,表明即使在睡眠期间,对交通噪音的“心脏唤醒”仍然存在。心脏反应性对刺激特征的变化敏感。因此,即使不唤醒主体,交通噪声也会干扰睡眠。 [参考:26]

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