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首页> 外文期刊>Auris, nasus, larynx >Vocal efficiency in tracheoesophageal phonation.
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Vocal efficiency in tracheoesophageal phonation.

机译:气管食管发声的人声效率。

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摘要

OBJECTIVE: Voice rehabilitation after total laryngectomy is challenging. In order to investigate and understand the function of the neoglottis sophisticated measurements need to be made. During voice production, aerodynamic energy is transformed into sound energy. In non-laryngectomized patients, the voice production efficiency is called the vocal efficiency. Vocal efficiency is an indication of how efficient the transformation of energy takes place. Vocal efficiency is calculated by dividing the output sound power by the aerodynamic power. PATIENTS AND METHODS: In a group of eight laryngectomees with tracheoesophageal voice, we measured aerodynamic and acoustic quantities and calculated vocal efficiency. We used a computer setup with airflow transducers, pressure transducers, mikrotip transducers and sound intensity measurement to allow calculation of the needed parameters. RESULTS: The tables show the results of the power used and produced in various phonatory tasks. Relatively high levels of aerodynamic power are interpreted as increased effort to speak. CONCLUSION: The aerodynamic power is an indication of the effort needed for voice generation. The efficiency of TE-voice production is lower compared to laryngeal voice production but does show an increase when sound intensity increases, a known phenomenon in healthy laryngeal voice production.
机译:目的:全喉切除术后的语音康复具有挑战性。为了研究和理解声门功能,需要进行复杂的测量。在发声过程中,空气动力学能量转化为声音能量。在非喉切除患者中,声音产生效率称为声音效率。人声效率是能量转换发生效率的指标。通过将输出声功率除以空气动力来计算人声效率。患者和方法:在一组八个具有气管食管声音的喉切除术中,我们测量了空气动力学和声学数量并计算了声效。我们使用了带有气流传感器,压力传感器,Mikrotip传感器和声音强度测量的计算机设置,以计算所需的参数。结果:这些表显示了在各种语音任务中使用和产生的力量的结果。相对较高的空气动力被解释为说话时增加的努力。结论:空气动力表明了产生声音所需的努力。与嗓音产生相比,TE语音的产生效率较低,但是当声音强度增加时,它的确显示出增加的声音,这是健康喉音产生中的已知现象。

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