Stepp Cara E, Heaton James T, Hillman Robert E
Center for Laryngeal Surgery and Voice Rehabilitation, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.
Ann Otol Rhinol Laryngol. 2008 Aug;117(8):557-63. doi: 10.1177/000348940811700801.
The goal of this study was to determine whether speech breathing changes over time in laryngectomy patients who use an electrolarynx, to explore the potential of using respiratory signals to control an artificial voice source.
Respiratory patterns during serial speech tasks (counting, days of the week) with an electrolarynx were prospectively studied by inductance plethysmography in 6 individuals across their first 1 to 2 years after total laryngectomy, as well as in an additional 8 individuals who had had a laryngectomy at least 1 year earlier.
In contrast to normal speech that is only produced during exhalation, all individuals were found to engage in inhalation during speech production, and those studied longitudinally displayed increased occurrences of inhalation during speech production with time after laryngectomy. These trends appear to be stronger for individuals who used an electrolarynx as their primary means of oral communication rather than tracheoesophageal speech, possibly because of continued dependence on respiratory support for the production of tracheoesophageal speech.
Our results indicate that there are post-laryngectomy changes in the speech breathing behaviors of electrolarynx users. This has implications for designing improved electrolarynx communication systems, which could use signals derived from respiratory function as one of many potential physiologically based sources for more natural control of electrolarynx speech.
本研究的目的是确定使用电子喉的喉切除患者的言语呼吸是否随时间变化,以探索利用呼吸信号控制人工声源的潜力。
通过电感体积描记法,对6例全喉切除术后1至2年的患者以及另外8例至少在1年前接受喉切除术的患者,在使用电子喉进行系列言语任务(计数、说出一周中的日子)时的呼吸模式进行前瞻性研究。
与仅在呼气时产生的正常言语不同,所有个体在言语产生过程中均有吸气行为,并且纵向研究的个体在喉切除术后随着时间推移,言语产生过程中吸气的发生率增加。对于将电子喉作为主要口语交流方式而非食管气管语音的个体,这些趋势似乎更强,这可能是因为食管气管语音的产生持续依赖呼吸支持。
我们的结果表明,喉切除术后电子喉使用者的言语呼吸行为会发生变化。这对设计改进的电子喉通信系统具有启示意义,该系统可以将源自呼吸功能的信号作为众多潜在的基于生理的声源之一,用于更自然地控制电子喉语音。