Herbst Christian T, Lohscheller Jörg, Švec Jan G, Henrich Nathalie, Weissengruber Gerald, Fitch W Tecumseh
Voice Research Laboratory, Department of Biophysics, Faculty of Science, Palacký University Olomouc, tr. 17. Listopadu 12, 771 46 Olomouc, Czech Republic.
J Exp Biol. 2014 Mar 15;217(Pt 6):955-63. doi: 10.1242/jeb.093203.
Previous research has suggested that the peaks in the first derivative (dEGG) of the electroglottographic (EGG) signal are good approximate indicators of the events of glottal opening and closing. These findings were based on high-speed video (HSV) recordings with frame rates 10 times lower than the sampling frequencies of the corresponding EGG data. The present study attempts to corroborate these previous findings, utilizing super-HSV recordings. The HSV and EGG recordings (sampled at 27 and 44 kHz, respectively) of an excised canine larynx phonation were synchronized by an external TTL signal to within 0.037 ms. Data were analyzed by means of glottovibrograms, digital kymograms, the glottal area waveform and the vocal fold contact length (VFCL), a new parameter representing the time-varying degree of 'zippering' closure along the anterior-posterior (A-P) glottal axis. The temporal offsets between glottal events (depicted in the HSV recordings) and dEGG peaks in the opening and closing phase of glottal vibration ranged from 0.02 to 0.61 ms, amounting to 0.24-10.88% of the respective glottal cycle durations. All dEGG double peaks coincided with vibratory A-P phase differences. In two out of the three analyzed video sequences, peaks in the first derivative of the VFCL coincided with dEGG peaks, again co-occurring with A-P phase differences. The findings suggest that dEGG peaks do not always coincide with the events of glottal closure and initial opening. Vocal fold contacting and de-contacting do not occur at infinitesimally small instants of time, but extend over a certain interval, particularly under the influence of A-P phase differences.
先前的研究表明,电声门图(EGG)信号一阶导数(dEGG)中的峰值是声门开闭事件的良好近似指标。这些发现基于高速视频(HSV)记录,其帧率比相应EGG数据的采样频率低10倍。本研究试图利用超高速HSV记录来证实这些先前的发现。通过外部TTL信号将切除的犬喉发声的HSV和EGG记录(分别以27 kHz和44 kHz采样)同步到0.037 ms以内。通过声门振动图、数字记波图、声门面积波形和声带接触长度(VFCL)对数据进行分析,VFCL是一个新参数,代表沿前后(A-P)声门轴的“拉链式”闭合随时间变化的程度。声门事件(在HSV记录中描绘)与声门振动开闭阶段dEGG峰值之间的时间偏移范围为0.02至0.61 ms,分别占各自声门周期持续时间的0.24 - 10.88%。所有dEGG双峰均与振动的A-P相位差一致。在三个分析的视频序列中的两个中,VFCL一阶导数中的峰值与dEGG峰值一致,同样与A-P相位差同时出现。研究结果表明,dEGG峰值并不总是与声门闭合和初始开启事件一致。声带接触和脱离接触并非发生在无限小的瞬间,而是在一定间隔内发生,特别是在A-P相位差的影响下。