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A STUDY ON THE CONTRIBUTION OF BODY VIBRATIONS TO THE VIBRATORY SENSATION INDUCED BY HIGH-LEVEL, COMPLEX LOW-FREQUENCY NOISE

机译:高水平,复杂低频噪声引起的人体振动对振动传感的贡献研究

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摘要

To investigate the contribution of body vibrations to the vibratory sensation induced by high-level, complex low-frequency noise, two experiments were conducted. In Experiment 1, eight male subjects were exposed to seven types of low-frequency noise stimuli: two pure tones [a 31.5-Hz, 100-dB (SPL) tone and a 50-Hz, 100-dB (SPL) tone] and five complex noises composed of the pure tones. For the complex noise stimuli, the sound pressure level of one tonal component was 100 dB (SPL) and that of another one was either 90, 95, or 100 dB (SPL). Vibration induced on the body surface was measured at five locations, and the correlation with the subjective rating of the vibratory sensation at each site of measurement was examined. In Experiment 2, the correlation between the body surface vibration and the vibratory sensation was similarly examined using seven types of noise stimuli composed of a 25-Hz tone and a 50-Hz tone. In both the experiments it was found that at the chest and the abdomen, the rating of the vibratory sensation was in close correlation with the vibration acceleration level (VAL) of the body surface vibration measured at each corresponding location. This was consistent with previous results and suggested that at the trunk of the body (the chest and the abdomen), the mechanoreception of body vibrations plays an important role in the experience of the vibratory sensation in persons exposed to high-level low-frequency noise. At the head, however, no close correlation was found between the rating of the vibratory sensation and the VAL of body surface vibration. This suggested that at the head, the perceptual mechanisms of vibration induced by high-level low-frequency noise were different from those in the trunk of the body.
机译:为了研究人体振动对高水平,复杂的低频噪声引起的振动感觉的贡献,进行了两个实验。在实验1中,八名男性受试者受到了7种类型的低频噪声刺激:两种纯音[31.5 Hz,100 dB(SPL)音和50 Hz,100 dB(SPL)音]和由纯音组成的五种复杂噪音。对于复杂的噪声刺激,一个音调分量的声压级为100 dB(SPL),而另一个音调分量的声压级为90、95或100 dB(SPL)。在五个位置上测量在人体表面上引起的振动,并检查与每个测量位置上的振动感觉的主观评价之间的相关性。在实验2中,使用由25Hz音调和50Hz音调组成的七种噪声刺激类似地检查了体表振动和振动感之间的相关性。在两个实验中都发现,在胸部和腹部,振动感觉的等级与在每个相应位置测得的身体表面振动的振动加速度水平(VAL)密切相关。这与以前的结果一致,表明在身体躯干(胸部和腹部),机械振动的机械感受接收在暴露于高水平低频噪声的人的振动感觉中起着重要作用。 。然而,在头部,振动感觉的等级与身体表面振动的VAL之间没有密切的相关性。这表明在头部,由高频低频噪声引起的振动的感知机制与身体躯干的感知机制不同。

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