语音的伴随效应:音调,声音和形式如何适应同时发生的扰乱
Li-Hsin Ning1, Tak-Cheung Hui2
1Department of English, National Taiwan Normal University, Taipei City.
Journal of speech, language, and hearing research : JSLHR
|January 26, 2026
概括
语音运动控制在音调,声音强度和形式 (F1) 中结合在一起. 结果揭示了系统的协同发音,音高扰动产生了最大的影响,影响了语音生产模型.
科学领域:
- 语音运动控制 语音运动控制
- 声学语音学的声音学
- 审计反 审计反 审计反
背景情况:
- 伴随的效果描述了语音运动控制尺寸如何相互调整.
- 了解跨维的合对于语音制作模型至关重要.
研究的目的:
- 研究语音运动控制中的伴随效应.
- 检查音调,声音强度和第一个形式 (F1) 与同时听觉反干扰的共同表达.
- 评估转移方向可预测性在跨维响应中的作用.
主要方法:
- 46名普通话母语使用者产生了持续的元音,有听觉反转移.
- 在三个维度中的两个维度 (音调,声音强度,F1) 应用了同时的变化.
- 量化了响应比例和行为特征;统计建模确定了显著的响应.
主要成果:
- 证实了强大的伴随性效应,具有高的跨维度响应率 (95-96%).
- 基调响应是最快和最大的;F1响应是最慢和最小的.
- 在特定条件下调制相反反应的变化可预测性 (音调-大声度,大声度-F1).
结论:
- 语音电机系统的音调,声音强度和形式是合的,而不是独立的.
- 现有的语音模型需要扩展,以纳入跨维的合.
- 音高扰乱突显了语音运动系统内的高度易感性.
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