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首页> 外文期刊>The Journal of the Acoustical Society of America >Sound pressure distribution within natural and artificial human ear canals: Forward stimulation
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Sound pressure distribution within natural and artificial human ear canals: Forward stimulation

机译:天然和人造人耳道内的声压分布:前向刺激

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摘要

This work is part of a study of the interaction of sound pressure in the ear canal (EC) with tympanic membrane (TM) surface displacement. Sound pressures were measured with 0.5-2 mm spacing at three locations within the shortened natural EC or an artificial EC in human temporal bones: near the TM surface, within the tympanic ring plane, and in a plane transverse to the long axis of the EC. Sound pressure was also measured at 2-mm intervals along the long EC axis. The sound field is described well by the size and direction of planar sound pressure gradients, the location and orientation of standing-wave nodal lines, and the location of longitudinal standing waves along the EC axis. Standing-wave nodal lines perpendicular to the long EC axis are present on the TM surface >11-16 kHz in the natural or artificial EC. The range of sound pressures was larger in the tympanic ring plane than at the TM surface or in the transverse EC plane. Longitudinal standing-wave patterns were stretched. The tympanic-ring sound field is a useful approximation of the TM sound field, and the artificial EC approximates the natural EC. (C) 2014 Acoustical Society of America.
机译:这项工作是研究耳道(EC)声压与鼓膜(TM)表面位移相互作用的一部分。在人类颞骨的缩短的天然EC或人造EC中的三个位置以0.5-2 mm的间隔测量声压:在TM表面附近,鼓膜环平面内以及在垂直于EC长轴的平面内。还沿着长EC轴以2 mm的间隔测量声压。通过平面声压梯度的大小和方向,驻波结线的位置和方向以及沿EC轴的纵向驻波的位置,可以很好地描述声场。在天然或人工EC中,TM表面上的垂直于长EC轴的驻波结线> 11-16 kHz。鼓膜环平面上的声压范围大于TM表面或横向EC平面上的声压范围。纵向驻波模式被拉伸。鼓环声场是TM声场的有用近似,而人工EC近似自然EC。 (C)2014美国声学学会。

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