Quantification of Porcine Vocal Fold Geometry
Tài liệu tham khảo
Smith, 1993, Voice problems after pediatric laryngotracheal reconstruction: videolaryngostroboscopic, acoustic, and perceptual assessment, Int J Pediatr Otorhinolaryngol, 25, 173, 10.1016/0165-5876(93)90051-4
Inagi, 1997, Correlation between vocal functions and glottal measurements in patients with unilateral vocal fold paralysis, Laryngoscope, 107, 782, 10.1097/00005537-199706000-00012
Berry, 1996, Bifurcations in excised larynx experiments, J Voice, 10, 129, 10.1016/S0892-1997(96)80039-7
Berry, 1996, Normal modes in a continuum model of vocal fold tissues, J Acoust Soc Am, 100, 3345, 10.1121/1.416975
Titze, 1979, A theoretical study of the effects of various laryngeal configurations on the acoustics of phonation, J Acoust Soc Am, 66, 60, 10.1121/1.382973
Bhattacharya, 2012, A canonical biomechanical vocal fold model, J Voice, 26, 535, 10.1016/j.jvoice.2011.09.001
Smith, 2012, Effect of inferior surface angle on the self-oscillation of a computational vocal fold model, J Acoust Soc Am, 131, 4062, 10.1121/1.3695403
Murray, 2012, Vibratory responses of synthetic, self-oscillating vocal fold models, J Acoust Soc Am, 132, 3428, 10.1121/1.4754551
Murray, 2014, A synthetic, self-oscillating vocal fold model platform for studying augmentation injection, J Voice, 28, 133, 10.1016/j.jvoice.2013.10.014
Pickup, 2010, Flow-induced vibratory response of idealized versus magnetic resonance imaging-based synthetic vocal fold models, J Acoust Soc Am, 128, EL124, 10.1121/1.3455876
Haji, 1992, Mechanical properties of the vocal fold. Stress-strain studies, Acta Otolaryngol, 112, 559, 10.3109/00016489209137440
Chan, 2008, A simple-shear rheometer for linear viscoelastic characterization of vocal fold tissues at phonatory frequencies, J Acoust Soc Am, 124, 1207, 10.1121/1.2946715
Chan, 2000, Viscoelastic shear properties of human vocal fold mucosa: theoretical characterization based on constitutive modeling, J Acoust Soc Am, 107, 565, 10.1121/1.428354
Chan, 2003, Effect of postmortem changes and freezing on the viscoelastic properties of vocal fold tissues, Ann Biomed Eng, 31, 482, 10.1114/1.1561287
Hess, 2006, Measurements of vocal fold elasticity using the linear skin rheometer, Folia Phoniatr Logop, 58, 207, 10.1159/000091734
Goodyer, 2007, The shear modulus of the human vocal fold, preliminary results from 20 larynxes, Eur Arch Otorhinolaryngol, 264, 45, 10.1007/s00405-006-0133-8
Goodyer, 2007, In vivo measurement of the shear modulus of the human vocal fold: interim results from eight patients, Eur Arch Otorhinolaryngol, 264, 631, 10.1007/s00405-006-0239-z
Chhetri, 2011, Measurement of Young's modulus of vocal folds by indentation, J Voice, 25, 1, 10.1016/j.jvoice.2009.09.005
Berry, 2001, Characterization of the medial surface of the vocal folds, Ann Otol Rhinol Laryngol, 110, 470, 10.1177/000348940111000514
Sidlof, 2008, Geometry of human vocal folds and glottal channel for mathematical and biomechanical modeling of voice production, J Biomech, 41, 985, 10.1016/j.jbiomech.2007.12.016
Agarwal, 2003, The false vocal folds: shape and size in frontal view during phonation based on laminagraphic tracings, J Voice, 17, 97, 10.1016/S0892-1997(03)00012-2
Bakhshaee, 2013, Three-dimensional reconstruction of human vocal folds and standard laryngeal cartilages using computed tomography scan data, J Voice, 27, 769, 10.1016/j.jvoice.2013.06.003
Oyamada, 2005, Asymmetry of the vocal folds in patients with vocal fold immobility, Arch Otolaryngol Head Neck Surg, 131, 399, 10.1001/archotol.131.5.399
Hiramatsu, 2008, Usefulness of three-dimensional computed tomography of the larynx for evaluation of unilateral vocal fold paralysis before and after treatment: technique and clinical applications, Eur Arch Otorhinolaryngol, 265, 725, 10.1007/s00405-007-0514-7
Gokcan, 2010, A computational study on the characteristics of airflow in bilateral abductor vocal fold immobility, Laryngoscope, 120, 1808, 10.1002/lary.21003
Johnson, 1997, Quantification of surgical margin shrinkage in the oral cavity, Head Neck, 19, 281, 10.1002/(SICI)1097-0347(199707)19:4<281::AID-HED6>3.0.CO;2-X
Kimura, 2003, Geometrical deformation of vocal fold tissues induced by formalin fixation, Laryngoscope, 113, 607, 10.1097/00005537-200304000-00005
Eckel, 1995, Morphometry of the larynx in horizontal sections, Am J Otolaryngol, 16, 40, 10.1016/0196-0709(95)90008-X
Tayama, 2002, Functional definitions of vocal fold geometry for laryngeal biomechanical modeling, Ann Otol Rhinol Laryngol, 111, 83, 10.1177/000348940211100114
Alipour, 2008, Phonatory characteristics of excised pig, sheep, and cow larynges, J Acoust Soc Am, 123, 4572, 10.1121/1.2908289
Alipour, 2013, Phonatory characteristics of the excised human larynx in comparison to other species, J Voice, 27, 441, 10.1016/j.jvoice.2013.03.013
Garrett, 2000, Comparative histology and vibration of the vocal folds: implications for experimental studies in microlaryngeal surgery, Laryngoscope, 110, 814, 10.1097/00005537-200005000-00011
Jiang, 2001, Comparison of the phonation-related structures among pig, dog, white-tailed deer, and human larynges, Ann Otol Rhinol Laryngol, 110, 1120, 10.1177/000348940111001207
Yushkevich, 2006, User-guided 3D active contour segmentation of anatomical structures: significantly improved efficiency and reliability, Neuroimage, 31, 1116, 10.1016/j.neuroimage.2006.01.015
Scherer, 2001, Intraglottal pressure profiles for a symmetric and oblique glottis with a divergence angle of 10 degrees, J Acoust Soc Am, 109, 1616, 10.1121/1.1333420