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一种关于小号演奏者声道声学效应的方法学和初步研究。

A methodological and preliminary study on the acoustic effect of a trumpet player's vocal tract.

机构信息

Faculty of Design, Kyushu University, 4-9-1 Shiobaru, Fukuoka, 815-8540 Japan.

出版信息

J Acoust Soc Am. 2011 Jul;130(1):536-45. doi: 10.1121/1.3596471.

Abstract

A methodological study is presented to examine the acoustic role of the vocal tract in playing the trumpet. Preliminary results obtained for one professional player are also shown to demonstrate the effectiveness of the method. Images of the vocal tract with a resolution of 0.5 mm (2 mm in thickness) were recorded with magnetic resonance imaging to observe the tongue posture and estimate the vocal-tract area function during actual performance. The input impedance was then calculated for the player's air column including both the supra- and subglottal tracts using an acoustic tube model including the effect of wall losses. Finally, a time-domain blowing simulation by Adachi and Sato [J. Acoust. Soc. Am. 99, 1200-1209 (1996)] was performed with a model of the lips. In this simulation, the oscillating frequency of the lips was slightly affected by using different shapes of the vocal tract measured for the player. In particular, when the natural frequency of the lips was gradually increased, the transition to the higher mode occurred at different frequencies for different vocal-tract shapes. Furthermore, simulation results showed that the minimum blowing pressure required to attain the lip oscillation can be reduced by adjusting the vocal-tract shape properly.

摘要

本文提出了一种方法研究,旨在探讨声道在吹奏小号中的声学作用。同时还展示了一位专业演奏者的初步研究结果,以证明该方法的有效性。使用磁共振成像(MRI)记录了分辨率为 0.5 毫米(2 毫米厚)的声道图像,以观察实际演奏过程中的舌位和估计声道区域功能。然后,使用包括壁面损耗影响的声学管模型,计算了包括声门上和声门下区域的演奏者空气柱的输入阻抗。最后,通过使用嘴唇模型,对 Adachi 和 Sato [J. Acoust. Soc. Am. 99, 1200-1209 (1996)] 的时域吹气模拟进行了时间域吹气模拟。在该模拟中,使用为演奏者测量的不同声道形状略微影响了嘴唇的振动频率。特别是,当嘴唇的固有频率逐渐增加时,对于不同的声道形状,更高模式的过渡发生在不同的频率。此外,模拟结果表明,通过适当调整声道形状,可以降低达到嘴唇振动所需的最小吹气压力。

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