Exercise Science and the Vocalist

Journal of Voice - Tập 35 - Trang 376-385 - 2021
Aaron M. Johnson1, Mary J. Sandage2
1New York University Voice Center, Department of Otolaryngology – Head and Neck Surgery, New York University School of Medicine, New York, New York
2Department of Communication Disorders, Auburn University, Auburn, Alabama

Tài liệu tham khảo

McArdle, 2006 Bompa, 2009 Sandage, 2017, Muscle bioenergetic considerations for intrinsic laryngeal skeletal muscle physiology, J Speech Lang Hear Res, 60, 1254, 10.1044/2016_JSLHR-S-16-0192 Brooks, 2005 Smith, 2017, Elementary school teachers' vocal dose: muscle bioenergetics and training implications, J Speech Lang Hear Res, 60, 1831, 10.1044/2016_JSLHR-S-16-0193 Morrow, 2011, Comparison of voice-use profiles between elementary classroom and music teachers, J Voice, 25, 367, 10.1016/j.jvoice.2009.11.006 Titze, 2007, Voicing and silence periods in daily and weekly vocalizations of teachers, J Acoust Soc Am, 121, 469, 10.1121/1.2390676 Tellis, 2011, In vivo oxygen consumption and hemoglobin levels in human thyroarytenoid muscle, Laryngoscope, 121, 2429, 10.1002/lary.22225 Nanjundeswaran, 2017, Metabolic mechanisms of vocal fatigue, J Voice, 31, 10.1016/j.jvoice.2016.09.014 2006, Skeletal Muscle: Form and Function Enoka, 2016, Translating fatigue to human performance, Med Sci Sports Exerc, 48, 2228, 10.1249/MSS.0000000000000929 Nanjundeswaran, 2015, Vocal Fatigue Index (VFI): development and validation, J Voice, 29, 433, 10.1016/j.jvoice.2014.09.012 Phyland, 2013, Development and preliminary validation of the EASE: a tool to measure perceived singing voice function, J Voice, 27, 454, 10.1016/j.jvoice.2013.01.019 Welham, 2003, Vocal fatigue: current knowledge and future directions, J Voice, 17, 21, 10.1016/S0892-1997(03)00033-X Powers, 2014 Moon, 1997, Anatomy and physiology of normal and disordered velopharyngeal function for speech Sandage, 2019, Training considerations for recital performance: framing vocal dose in a fatigue resistance training model, J Sing, 75, 395 Lenell, 2019, A tutorial of the effects of sex hormones on laryngeal senescence and neuromuscular response to exercise, J Speech Lang Hear Res, 62, 602, 10.1044/2018_JSLHR-S-18-0179 Sciote, 2003, Specialized cranial muscles: how different are they from limb and abdominal muscles?, Cells Tissues Organs, 174, 73, 10.1159/000070576 Menezes, 2016, Respiratory muscle training increases respiratory muscle strength and reduces respiratory complications after stroke: a systematic review, J Physiother, 62, 138, 10.1016/j.jphys.2016.05.014 Sapienza, 2008, Respiratory muscle strength training applications, Curr Opin Otolaryngol Head Neck Surg, 16, 216, 10.1097/MOO.0b013e3282fe96bd Desjardins, 2019, The impact of respiratory exercises on voice outcomes: a systematic review of the literature, J Voice Scherer, 2000, Respiratory muscle endurance training in chronic obstructive pulmonary disease: impact on exercise capacity, dyspnea, and quality of life, Am J Respir Crit Care Med, 162, 1709, 10.1164/ajrccm.162.5.9912026 Mador, 2005, Effect of respiratory muscle endurance training in patients with COPD undergoing pulmonary rehabilitation, Chest, 128, 1216, 10.1378/chest.128.3.1216 Park, 2016, Comparison of maximal tongue strength and tongue strength used during swallowing in relation to age in healthy adults, J Phys Ther Sci, 28, 442, 10.1589/jpts.28.442 Potter, 2019, Tongue strength in children with and without speech sound disorders, Am J Speech Lang Pathol, 28, 612, 10.1044/2018_AJSLP-18-0023 Weismer, 2006, Philosophy of research in motor speech disorders, Clin Linguist Phon, 20, 315, 10.1080/02699200400024806 Bunton, 2018, Articulation and resonance, 391 Adams, 2013, A systematic review and meta-analysis of measurements of tongue and hand strength and endurance using the Iowa Oral Performance Instrument (IOPI), Dysphagia, 28, 350, 10.1007/s00455-013-9451-3 Yeates, 2008, Improvements in tongue strength and pressure-generation precision following a tongue-pressure training protocol in older individuals with dysphagia: three case reports, Clin Interv Aging, 3, 735, 10.2147/CIA.S3825 Rogus-Pulia, 2016, Effects of device-facilitated isometric progressive resistance oropharyngeal therapy on swallowing and health-related outcomes in older adults with dysphagia, J Am Geriatr Soc, 64, 417, 10.1111/jgs.13933 VanRavenhorst-Bell, 2018, A comparative study: tongue muscle performance in weightlifters and runners, Physiol Rep, 6, e13923, 10.14814/phy2.13923 Oates, 2014, Treatment of dysphonia in older people: the role of the speech therapist, Curr Opin Otolaryngol Head Neck Surg, 22, 477, 10.1097/MOO.0000000000000109 Lu, 2013, Efficacy of intensive phonatory-respiratory treatment (LSVT) for presbyphonia: two case reports, J Voice, 27, 786, 10.1016/j.jvoice.2013.06.006 Sauder, 2010, Vocal function exercises for presbylaryngis: a multidimensional assessment of treatment outcomes, Ann Otol Rhinol Laryngol, 119, 460, 10.1177/000348941011900706 Ziegler, 2014, Preliminary data on two voice therapy interventions in the treatment of presbyphonia, Laryngoscope, 124, 1869, 10.1002/lary.24548 Johnson, 2016, Basic science: the foundation of evidence-based voice therapy, Perspectives of the ASHA Special Interest Groups, 1, 7, 10.1044/persp1.SIG3.7 Tarasiuk, 1991, Effect of chronic resistive loading on inspiratory muscles in rats, J Appl Physiol (1985), 70, 216, 10.1152/jappl.1991.70.1.216 Akabas, 1989, Metabolic and functional adaptation of the diaphragm to training with resistive loads, J Appl Physiol (1985), 66, 529, 10.1152/jappl.1989.66.2.529 Connor, 2013, Tongue muscle plasticity following hypoglossal nerve stimulation in aged rats, Muscle Nerve, 47, 230, 10.1002/mus.23499 Johnson, 2011, Effects of electrical stimulation on neuromuscular junction morphology in the aging rat tongue, Muscle Nerve, 43, 203, 10.1002/mus.21819 Connor, 2009, Effect of tongue exercise on protrusive force and muscle fiber area in aging rats, J Speech Lang Hear Res, 52, 732, 10.1044/1092-4388(2008/08-0105) Cullins, 2018, Differential impact of tongue exercise on intrinsic lingual muscles, Laryngoscope, 128, 2245, 10.1002/lary.27044 McMullen, 2011, Chronic stimulation-induced changes in the rodent thyroarytenoid muscle, J Speech Lang Hear Res, 54, 845, 10.1044/1092-4388(2010/10-0127) Karbiener, 2016, Reversing age related changes of the laryngeal muscles by chronic electrostimulation of the recurrent laryngeal nerve, PLoS One, 11, 10.1371/journal.pone.0167367 Riede, 2011, Subglottal pressure, tracheal airflow, and intrinsic laryngeal muscle activity during rat ultrasound vocalization, J Neurophysiol, 106, 2580, 10.1152/jn.00478.2011 Riede, 2017, Laryngeal airway reconstruction indicates that rodent ultrasonic vocalizations are produced by an edge-tone mechanism, R Soc Open Sci, 4, 10.1098/rsos.170976 Johnson, 2013, Vocal training mitigates age-related changes within the vocal mechanism in old rats, J Gerontol A Biol Sci Med Sci, 68, 1458, 10.1093/gerona/glt044 Lenell, 2019, Laryngeal neuromuscular response to short- and long-term vocalization training in young male rats, J Speech Lang Hear Res, 62, 247, 10.1044/2018_JSLHR-S-18-0316 Hixon, 1973, Kinematics of the chest wall during speech production: volume displacements of the rib cage, abdomen, and lung, J Speech Hear Res, 16, 78, 10.1044/jshr.1601.78 Watson, 1985, Respiratory kinematics in classical (opera) singers, J Speech Hear Res, 28, 104, 10.1044/jshr.2801.104 Hoit, 1988, Abdominal muscle activity during speech production, J Appl Physiol (1985), 65, 2656, 10.1152/jappl.1988.65.6.2656