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Biomechanics of Laryngeal Tissue
Fluid Flow in Respiratory Airways
Control of Vocal Intensity and Efficiency
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acoustic activity airflow amplitude average become body breathing called cartilage Chapter close constant continuous contraction cover curve cycle described direction discussed disorders effective elastic energy Equation example female fibers Figure flow fluid force formant function fundamental frequency given glottal glottis greater harmonic human important increase intensity Journal of Voice larynx later length less lines loud lower lung pressure male mass maximum mean measured mechanical medium mode motion move movement muscle needed normal Note occur oscillation particles pattern peak percent period phase phonation physical physiologic pitch positive Press produce pulse range reflection relation resonance result shape shown shows singers singing soprano sound space spectrum speech stress surface term thyroarytenoid muscle tion tissue Titze tube unit usually variable vibration vocal fold vocal tract voice volume vowel wave waveform