Louisa Traser, Daniel Priegnitz, Fiona Stritt, Johannes Fischer, Michael Bock, Hanspeter Herzel, Dirk Mürbe, Bernhard Richter, Matthias Echternach, Mario Fleischer
Nonlinear phenomenon common in extreme and traditional singing involves often coupled oscillations of glottal and supraglottic structures. Four such phonatory mechanisms-undertone, distortion, growl, and rattle-differ in supraglottic involvement and frequency ratio between glottal and supraglottic oscillators. However, the contribution of vocal tract (VT) configurations remains insufficiently understood. Using static three-dimensional magnetic resonance imaging and acoustic analysis, we investigated VT shaping in a professional singer. The VT was used to calculate volume-velocity transfer functions and was segmented into seven sub-volumes for geometric analysis. Acoustic recordings provided fundamental frequencies and pitches. Undertone and distortion showed the most speech-like configurations, with ventricular and epilaryngeal volumes largely unaffected by the laryngeal elevation. Growl involved laryngeal lowering and tongue retraction, facilitating epiglottic-arytenoid approximation. Rattle exhibited increased pharyngeal constriction. Growl showed clustering of resonance peaks around 2000-4000 Hz (singer's formant region), and high rattle showed alignment of twice the pitch with the first resonance frequency, suggesting an enhanced source-filter interaction. For this singer, the VT configuration differed systematically across the four phonatory mechanisms. These hypothesis-generating observations underline the potential role of VT configuration of nonlinearities in phonation and motivate larger studies relevant to voice pedagogy and clinical practice involving supraglottic sound production.