传感器尺寸对声带接触压力实验测量精度的影响

Zhaoyan Zhang
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引用次数: 0

摘要

声带在发音过程中会反复受到碰撞。由此产生的接触压力通常被认为是声带损伤的重要原因,也是许多实验研究的重点。在这项研究中,对发音过程中的声带接触模式和接触压力进行了数值研究。结果表明,声带接触一般发生在内侧表面的水平条纹内,首先出现在内侧下表面,然后向上传播。由于声带接触的局部性和移动性,有限尺寸的传感器可能会大大低估声带接触压力的峰值,尤其是横向刚度较低的声带。这种低估也使得在声门内压力波形中识别接触压力峰值变得困难。这些结果表明,以往实验研究中报告的声带接触压力可能大大低估了实际值。建议在今后的实验中使用直径不大于 0.4 毫米的接触压力传感器,以确保充分准确地测量发音时的声带接触压力峰值。
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The influence of sensor size on experimental measurement accuracy of vocal fold contact pressure.

The vocal folds experience repeated collision during phonation. The resulting contact pressure is often considered to play an important role in vocal fold injury, and has been the focus of many experimental studies. In this study, vocal fold contact pattern and contact pressure during phonation were numerically investigated. The results show that vocal fold contact in general occurs within a horizontal strip on the medial surface, first appearing at the inferior medial surface and propagating upward. Because of the localized and travelling nature of vocal fold contact, sensors of a finite size may significantly underestimate the peak vocal fold contact pressure, particularly for vocal folds of low transverse stiffness. This underestimation also makes it difficult to identify the contact pressure peak in the intraglottal pressure waveform. These results showed that the vocal fold contact pressure reported in previous experimental studies may have significantly underestimated the actual values. It is recommended that contact pressure sensors with a diameter no greater than 0.4 mm are used in future experiments to ensure adequate accuracy in measuring the peak vocal fold contact pressure during phonation.

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