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Effect of Canal Depth on Sound Pressure Level Distribution in Human Bilateral Ears

机译:管道深度对人双侧耳声压水平分布的影响

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This study was to measure the sound pressure level distribution by ear canal resonance in the human left and right external auditory canals (EAC). The gain for different stimulus frequencies was analyzed at four different measuring depths (0.5 cm, 1.0 cm, 1.5 cm and 2.0 cm) from the entrance of the ear canal bilaterally. Comparative evaluation showed that the gain for different stimulus frequencies at a depth of 2.0 cm was consistent with the results of Dillon's study. In addition, the gain for the right EAC at 4000 Hz was larger than that of the left EAC by 1.2 dB at 0.5 cm, 1.8 dB at 1.0 cm, and 0.8 dB at 1.5 cm. This seems to suggest that gain at 4000 Hz is more affected by depth in the right EAC than in the left EAC. This study further found that the gain at the stimulus frequency of 4000 Hz was more affected by the depth than at 2000 Hz for the bilateral ear canals respectively. These gain differences between the right and left ears were statistically significant (p<0.05) at any of four measuring depths. The findings of this study may have an understanding of gain distribution to have implications for microphone placement of custom-made bilateral hearing aids (i.e. ITC or CIC) as these are placed at different depths within the ear canal.
机译:本研究是测量人左和右外耳道(EAC)中耳道谐振的声压水平分布。在双侧耳道入口处分析不同刺激频率的增益,分析了四种不同的测量深度(0.5cm,1.0cm,1.5cm和2.0cm)。比较评估表明,不同刺激频率的增益在2.0厘米的深度下与狄龙研究的结果一致。此外,4000Hz的右翼EAC的增益大于左EAC的0.5厘米,1.0cm,1.0厘米,1.5厘米,0.8dB为1.5厘米。这似乎表明,4000 Hz的增益受到右翼EAC中的深度的影响比左翼EAC更受影响。本研究进一步发现,4000Hz刺激频率的增益分别对两侧耳运河分别对2000 Hz的深度影响更大。右侧和左耳之间的这些增益差异在四个测量深度中的任何一个中有统计学意义(P <0.05)。该研究的发现可以理解增益分布,以对定制的双边助听器(即ITC或CIC)的麦克风放置具有影响,因为它们被放置在耳道内的不同深度。

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