Chen Wei-Rong, Stern Michael C, Whalen D H, Derrick Donald, Carignan Christopher, Best Catherine T, Tiede Mark K
Child Study Center, Yale University, New Haven, 06511, CT, USA.
Department of Linguistics, Yale University, New Haven, 06511, CT, USA.
J Phon. 2024 Jul;105. doi: 10.1016/j.wocn.2024.101339. Epub 2024 Jun 10.
Ultrasound imaging of the tongue is biased by the probe movements relative to the speaker's head. Two common remedies are restricting or algorithmically compensating for such movements, each with its own challenges. We describe these challenges in details and evaluate an open-source, adjustable probe stabilizer for ultrasound (ALPHUS), specifically designed to address these challenges by restricting uncorrectable probe movements while allowing for correctable ones (e.g., jaw opening) to facilitate naturalness. The stabilizer is highly modular and adaptable to different users (e.g., adults and children) and different research/clinical needs (e.g., imaging in both midsagittal and coronal orientations). The results of three experiments show that probe movement over uncorrectable degrees of freedom was negligible, while movement over correctable degrees of freedom that could be compensated through post-processing alignment was relatively large, indicating unconstrained articulation over parameters relevant for natural speech. Results also showed that probe movements as small as 5 mm or 2 degrees can neutralize phonemic contrasts in ultrasound tongue positions. This demonstrates that while stabilized but uncorrected ultrasound imaging can provide reliable tongue shape information (e.g., curvature or complexity), accurate tongue position (e.g., height or backness) with respect to vocal tract hard structure needs correction for probe displacement relative to the head.
相对于说话者头部的探头移动会使舌头的超声成像产生偏差。两种常见的补救方法是限制此类移动或通过算法进行补偿,每种方法都有其自身的挑战。我们详细描述了这些挑战,并评估了一种用于超声的开源、可调节探头稳定器(ALPHUS),该稳定器专门设计用于通过限制不可校正的探头移动,同时允许可校正的移动(例如张口)以促进自然度来应对这些挑战。该稳定器具有高度模块化,适用于不同用户(例如成人和儿童)以及不同的研究/临床需求(例如矢状面和冠状面成像)。三个实验的结果表明,在不可校正的自由度上探头移动可忽略不计,而在可通过后处理对齐进行补偿的可校正自由度上的移动相对较大,这表明在与自然语音相关的参数上存在不受约束的发音。结果还表明,小至5毫米或2度的探头移动就能消除超声舌位中的音位对比。这表明,虽然稳定但未校正的超声成像可以提供可靠的舌形信息(例如曲率或复杂度),但相对于声道硬结构的准确舌位(例如高度或后缩程度)需要针对探头相对于头部的位移进行校正。