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Development of a Dynamic Rubber Prosthesis for Voice Restoration following Laryngectomy.

机译:喉切除术后用于语音恢复的动态橡胶假体的开发。

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摘要

Loss of speech is one important factor which contributes to a decrease of life quality for patients who undergo larynx removal following for example advanced laryngeal cancer. Several devices such as the electrolarynx and the tracheo-esophageal valve prosthesis (without oscillation) have been commercialized in order to restore speech. However, such voice restoration prosthesis are still limited for certain patients. The development of a new device using a valve of variable resistance entrained by a linear electromechanical transducer was investigated as a way to produce speech for patients with total laryngectomy (ablation of vocal folds). The concept was to undertake the design of a varying air flow resistance valve, built around existing Blom-Singer valves. The oscillating valve features a spherical head making it possible to block the opening in the wall between the trachea and the esophagus in a sinusoidal periodic fashion. A physical model of the vocal tract was built and used for preliminary in-vitro verification studies. The relationship between pressure and flow rate through the valve was determined from pressure measurements. The orifice discharge coefficient of the orifice was then calculated and the parameters of a variable resistor model were identified. Radiated sound pressure produced from the change in flow rate at the valve orifice was then compared to the original voice output to assess the accuracy of the design prototype. Results showed that the forced oscillating valve prosthesis model has lower power efficiency but can produce better sound quality than the electrolarynx.
机译:失语是导致例如在晚期喉癌之后接受喉切除的患者的生活质量下降的重要因素。为了恢复语音,已经将诸如电喉和气管-食管瓣膜假体(无振荡)之类的几种设备商业化。但是,这种声音恢复假体仍然对某些患者是有限的。研究了使用由线性机电换能器夹带的可变电阻的阀门开发的新设备,作为为全喉切除术(声带消融)患者产生语音的一种方法。其概念是承担围绕现有Blom-Singer阀构建的可变气流阻力阀的设计。该振荡阀具有球形头,使得可以以正弦周期的方式阻塞气管和食道之间的壁中的开口。建立了声道的物理模型,并将其用于初步的体外验证研究。通过压力测量确定压力与通过阀的流速之间的关系。然后计算孔口的孔口排放系数,并确定可变电阻器模型的参数。然后将阀孔流量变化产生的辐射声压与原始语音输出进行比较,以评估设计原型的准确性。结果表明,强制振荡瓣膜假体模型具有比电喉更低的功率效率,但是可以产生更好的声音质量。

著录项

  • 作者

    Khoueir, Raja.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Health Sciences Speech Pathology.;Engineering Mechanical.;Engineering Biomedical.
  • 学位 M.Eng.
  • 年度 2009
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:46

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