Tonehole

Research

Open-Access Research

161 highly cited open-access papers on clarinet, flute, saxophone and reed acoustics, wind pedagogy and musicians' health.

Clarinet acoustics

  1. Toward a Neural Basis of Music Perception – A Review and Updated Model Stefan Koelsch · Frontiers in Psychology · 2011 · cited 457×
  2. Joint DOA and multi-pitch estimation based on subspace techniques Johan Xi Zhang, Mads Græsbøll Christensen, Søren Holdt Jensen, Marc Moonen · EURASIP Journal on Advances in Signal Processing · 2012 · cited 387×
  3. Predictability and Uncertainty in the Pleasure of Music: A Reward for Learning? Benjamin P. Gold, Marcus Thomas Pearce, Ernest Mas Herrero, Alain Dagher et al. · Journal of Neuroscience · 2019 · cited 262×
  4. Green’s-function reaction dynamics: A particle-based approach for simulating biochemical networks in time and space Jeroen Sebastiaan van Zon, Pieter Rein ten Wolde · The Journal of Chemical Physics · 2005 · cited 261×
  5. An Overview on Networked Music Performance Technologies Cristina Rottondi, Chris Chafe, Claudio Allocchio, Augusto Sarti · IEEE Access · 2016 · cited 203×
  6. Numerical computation of nonlinear normal modes in mechanical engineering Ludovic Renson, Gaëtan Kerschen, Bruno Cochelin · Journal of Sound and Vibration · 2015 · cited 181×
  7. Chroma Toolbox: Matlab Implementations For Extracting Variants Of Chroma-Based Audio Features. Meinard Müller, Sebastian Ewert · Open access · 2011 · cited 178×
  8. Noise induced hearing loss and other hearing complaints among musicians of symphony orchestras E.J.M. Jansen, Hiske W. Helleman, Wouter Albert Dreschler, Jan A. P. M. de Laat · International Archives of Occupational and Environmental Health · 2008 · cited 172×
  9. Deep Audio-visual Learning: A Survey Hao Zhu, Mandi Luo, Rui Wang, Aihua Zheng et al. · Machine Intelligence Research · 2021 · cited 169×
  10. A common perceptual space for harmonic and percussive timbres Stephen Lakatos · Perception & Psychophysics · 2000 · cited 160×
  11. Acoustic exaggeration of size in birds via tracheal elongation: comparative and theoretical analyses W. Tecumseh Fitch · Journal of Zoology · 1999 · cited 158×
  12. Go-with-the-Flow: Tracking, Analysis and Sonification of Movement and Breathing to Build Confidence in Activity Despite Chronic Pain Aneesha Singh, Stefano Piana, Davide Pollarolo, Gualtiero Volpe et al. · Human-Computer Interaction · 2015 · cited 149×
  13. Musical Instrument Timbres Classification with Spectral Features Giulio Agostini, Maurizio Longari, Emanuele Pollastri · EURASIP Journal on Advances in Signal Processing · 2003 · cited 141×
  14. Neural Source-Filter Waveform Models for Statistical Parametric Speech Synthesis Xin Wang, Shinji Takaki, Junichi Yamagishi · IEEE/ACM Transactions on Audio Speech and Language Processing · 2019 · cited 133×
  15. Shock waves in trombones Avraham Hirschberg, Joël Gilbert, Régis Msallam, A. P. J. Wijnands · The Journal of the Acoustical Society of America · 1996 · cited 131×
  16. Perspectives on the Contribution of Timbre to Musical Structure Stephen E. McAdams · Computer Music Journal · 1999 · cited 127×
  17. Music in Our Ears: The Biological Bases of Musical Timbre Perception Kailash Patil, Daniel Pressnitzer, Shihab Shamma, Mounya Elhilali · PLoS Computational Biology · 2012 · cited 126×
  18. Review of Ultrasonic Ranging Methods and Their Current Challenges Zurong Qiu, Yaohuan Lu, Zhen Qiu · Micromachines · 2022 · cited 112×
  19. The nonlinear physics of musical instruments N. H. Fletcher · Reports on Progress in Physics · 1999 · cited 109×
  20. Detecting deviations from metronomic timing in music: Effects of perceptual structure on the mental timekeeper Bruno H. Repp · Perception & Psychophysics · 1999 · cited 97×

Saxophone

  1. Toward a Neural Basis of Music Perception – A Review and Updated Model Stefan Koelsch · Frontiers in Psychology · 2011 · cited 457×
  2. Melody Extraction From Polyphonic Music Signals Using Pitch Contour Characteristics Justin Salamon, Emília Gómez · IEEE Transactions on Audio Speech and Language Processing · 2012 · cited 440×
  3. Natural fiber reinforced polymer composites: history, types, advantages, and applications Kamrun Nahar Keya, Nasrin Afroz Kona, Farjana A. Koly, Kazi M Maraz et al. · Materials Engineering Research · 2019 · cited 309×
  4. Green’s-function reaction dynamics: A particle-based approach for simulating biochemical networks in time and space Jeroen Sebastiaan van Zon, Pieter Rein ten Wolde · The Journal of Chemical Physics · 2005 · cited 261×
  5. Overview of the KTH rule system for musical performance Anders Friberg, Roberto Bresin, Johan Sundberg · Advances in Cognitive Psychology · 2006 · cited 224×
  6. Mobile virtual reality for musical genre learning in primary education Edoardo Degli Innocenti, Michele Geronazzo, Diego Vescovi, Rolf Nordahl et al. · Computers & Education · 2019 · cited 175×
  7. A common perceptual space for harmonic and percussive timbres Stephen Lakatos · Perception & Psychophysics · 2000 · cited 160×
  8. The basis of musical consonance as revealed by congenital amusia Marion Cousineau, Josh H. McDermott, Isabelle Peretz · Proceedings of the National Academy of Sciences · 2012 · cited 152×
  9. Musical Instrument Timbres Classification with Spectral Features Giulio Agostini, Maurizio Longari, Emanuele Pollastri · EURASIP Journal on Advances in Signal Processing · 2003 · cited 141×
  10. Music in Our Ears: The Biological Bases of Musical Timbre Perception Kailash Patil, Daniel Pressnitzer, Shihab Shamma, Mounya Elhilali · PLoS Computational Biology · 2012 · cited 126×
  11. A criterion-related validity test of selected indicators of musical sophistication using expert ratings Joy E Ollen · OhioLink ETD Center (Ohio Library and Information Network) · 2006 · cited 122×
  12. A Temporal Hierarchy for Conspecific Vocalization Discrimination in Humans Marzia De Lucia, Stéphanie Clarke, Micah M. Murray · Journal of Neuroscience · 2010 · cited 110×
  13. The nonlinear physics of musical instruments N. H. Fletcher · Reports on Progress in Physics · 1999 · cited 109×
  14. Smarter Than Genius? Human Evaluation Of Music Recommender Systems. Luke Barrington, Reid Oda, Gert R. G. Lanckriet · Open access · 2009 · cited 108×
  15. Multiple Scale Music Segmentation Using Rhythm, Timbre, and Harmony Kristoffer Jensen · EURASIP Journal on Advances in Signal Processing · 2006 · cited 92×
  16. Generality and specificity in the effects of musical expertise on perception and cognition Daniel Carey, Stuart Rosen, Saloni Krishnan, Marcus Thomas Pearce et al. · Cognition · 2015 · cited 91×
  17. Enhanced perception of various linguistic features by musicians: A cross-linguistic study Makiko Sadakata, Kaoru Sekiyama · Acta Psychologica · 2011 · cited 88×
  18. Research in music and artificial intelligence Curtis Roads · ACM Computing Surveys · 1985 · cited 82×
  19. Vocal tract resonances in speech, singing, and playing musical instruments Joe Wolfe, Maëva Garnier, John R. Lindsay Smith · HFSP journal · 2008 · cited 75×
  20. Seeing Music? What musicians need to know about vision Michael Schutz · Empirical Musicology Review · 2008 · cited 72×

Reeds & mouthpieces

  1. Transformation and microinjection Thomas Evans · WormBook · 2006 · cited 326×
  2. The History of Therapeutic Aerosols: A Chronological Review Stephen W. Stein, Charles G. Thiel · Journal of Aerosol Medicine and Pulmonary Drug Delivery · 2016 · cited 309×
  3. Green’s-function reaction dynamics: A particle-based approach for simulating biochemical networks in time and space Jeroen Sebastiaan van Zon, Pieter Rein ten Wolde · The Journal of Chemical Physics · 2005 · cited 261×
  4. Haptic wearables as sensory replacement, sensory augmentation and trainer – a review Peter Bradley Shull, Dana D. Damian · Journal of NeuroEngineering and Rehabilitation · 2015 · cited 248×
  5. Numerical computation of nonlinear normal modes in mechanical engineering Ludovic Renson, Gaëtan Kerschen, Bruno Cochelin · Journal of Sound and Vibration · 2015 · cited 181×
  6. The nonlinear physics of musical instruments N. H. Fletcher · Reports on Progress in Physics · 1999 · cited 109×
  7. Positive expiratory pressure therapy versus other airway clearance techniques for bronchiectasis Annemarie Louise Lee, Angela T. Burge, Anne Elizabeth Holland · Cochrane Database of Systematic Reviews · 2017 · cited 95×
  8. Vocal tract resonances in speech, singing, and playing musical instruments Joe Wolfe, Maëva Garnier, John R. Lindsay Smith · HFSP journal · 2008 · cited 75×
  9. Is there a rationale for pulmonary rehabilitation following successful chemotherapy for tuberculosis? Marcela Verónica Muñoz-Torrico, Adrián Rendón, Rosella Centis, Lia D’Ambrosio et al. · Jornal Brasileiro de Pneumologia · 2016 · cited 67×
  10. Air Flow and Sound Generation in Musical Wind Instruments N. H. Fletcher · Annual Review of Fluid Mechanics · 1979 · cited 65×
  11. Sound Source Mechanics and Musical Timbre Perception: Evidence From Previous Studies Bruno L. Giordano, Stephen E. McAdams · Music Perception An Interdisciplinary Journal · 2010 · cited 57×
  12. Airway-Clearance Techniques in Children and Adolescents with Chronic Suppurative Lung Disease and Bronchiectasis Annemarie Louise Lee, Brenda Button, Esta‐Lee Tannenbaum · Frontiers in Pediatrics · 2017 · cited 53×
  13. Infrasonic tremor wavefield of the Pu`u `Ō`ō crater complex and lava tube system, Hawaii, in April 2007 Robin S. Matoza, David Fee, Milton Garcés · Journal of Geophysical Research Atmospheres · 2010 · cited 49×
  14. Estimation of Clarinet Reed Parameters by Inverse Modelling Vasileios Chatziioannou, Maarten van Walstijn · Acta acustica united with Acustica · 2012 · cited 44×
  15. Physiotherapists’ use of airway clearance techniques during an acute exacerbation of bronchiectasis: a survey study Jennifer Phillips, Annemarie Louise Lee, Rodney Pope, Wayne Anthony Hing · Archives of Physiotherapy · 2021 · cited 41×
  16. Quantification and Analysis of Laryngeal Closure From Endoscopic Videos Jianyu Lin, Emil S. Walsted, Vibeke Backer, James H. Hull et al. · IEEE Transactions on Biomedical Engineering · 2018 · cited 36×
  17. Combined particle image velocimetry/digital image correlation for load estimation Peng Zhang, Sean D. Peterson, Maurizio Porfiri · Experimental Thermal and Fluid Science · 2018 · cited 33×
  18. Oscillation threshold of a clarinet model: A numerical continuation approach Sami Karkar, Christophe Vergez, Bruno Cochelin · The Journal of the Acoustical Society of America · 2012 · cited 33×
  19. The difference between standing and sitting in 3 different seat inclinations on abdominal muscle activity and chest and abdominal expansion in woodwind and brass musicians Bronwen Jane Ackermann, Nicholas O’Dwyer, Mark Halaki · Frontiers in Psychology · 2014 · cited 32×
  20. Evaluating musical instruments D. Murray Campbell · Physics Today · 2014 · cited 31×

Woodwind acoustics

  1. Green’s-function reaction dynamics: A particle-based approach for simulating biochemical networks in time and space Jeroen Sebastiaan van Zon, Pieter Rein ten Wolde · The Journal of Chemical Physics · 2005 · cited 261×
  2. The nonlinear physics of musical instruments N. H. Fletcher · Reports on Progress in Physics · 1999 · cited 109×
  3. The acoustics of the violin: a review Jim Woodhouse · Reports on Progress in Physics · 2014 · cited 88×
  4. Affective Resonance: On the Uses and Abuses of Music In and For Philosophy Robin M. James · PhaenEx · 2012 · cited 83×
  5. Vocal tract resonances in speech, singing, and playing musical instruments Joe Wolfe, Maëva Garnier, John R. Lindsay Smith · HFSP journal · 2008 · cited 75×
  6. Air Flow and Sound Generation in Musical Wind Instruments N. H. Fletcher · Annual Review of Fluid Mechanics · 1979 · cited 65×
  7. Calculation of the 𝓐 term of magnetic circular dichroism based on time dependent-density functional theory I. Formulation and implementation Michael Seth, Tom Ziegler, Arup Banerjee, Jochen Autschbach et al. · The Journal of Chemical Physics · 2004 · cited 59×
  8. Effects of nonlinear sound propagation on the characteristic timbres of brass instruments Arnold Myers, Robert W. Pyle, Joël Gilbert, D. Murray Campbell et al. · The Journal of the Acoustical Society of America · 2012 · cited 56×
  9. Excitation mechanisms in woodwind and brass instruments Neville H. Fletcher · ANU Open Research (Australian National University) · 1979 · cited 55×
  10. The effect of the reed resonance on woodwind tone production Stephen C. Thompson · The Journal of the Acoustical Society of America · 1979 · cited 42×
  11. The Man and Machine Robot Orchestra at Logos Laura Maes, Godfried‐Willem Raes, Troy Rogers · Computer Music Journal · 2011 · cited 40×
  12. Oscillation threshold of a clarinet model: A numerical continuation approach Sami Karkar, Christophe Vergez, Bruno Cochelin · The Journal of the Acoustical Society of America · 2012 · cited 33×
  13. Evaluating musical instruments D. Murray Campbell · Physics Today · 2014 · cited 31×
  14. Open Areas of Vibrating Lips in Trombone Playing Seona Bromage, Murray S. Campbell, Joël Gilbert · Acta acustica united with Acustica · 2010 · cited 29×
  15. Vibrotactile Presentation of Musical Notes to the Glabrous Skin for Adults with Normal Hearing or a Hearing Impairment: Thresholds, Dynamic Range and High-Frequency Perception Carl Hopkins, Saúl Maté-Cid, Robert Fulford, Gary Seiffert et al. · PLoS ONE · 2016 · cited 23×
  16. Evolution of Tonal Organization in Music Optimizes Neural Mechanisms in Symbolic Encoding of Perceptual Reality. Part-2: Ancient to Seventeenth Century Aleksey Nikolsky · Frontiers in Psychology · 2016 · cited 23×
  17. Efficiency, accuracy, and stability issues in discrete-time simulations of single reed wind instruments Federico Avanzini, Davide Rocchesso · The Journal of the Acoustical Society of America · 2002 · cited 21×
  18. A Physical Model of a Single-Reed Wind Instrument, Including Actions of the Player Éric Ducasse · Computer Music Journal · 2003 · cited 19×
  19. Production and perception of legato, portato, and staccato articulation in saxophone playing Alex Hofmann, Werner Goebl · Frontiers in Psychology · 2014 · cited 18×
  20. A methodological and preliminary study on the acoustic effect of a trumpet player’s vocal tract Tokihiko Kaburagi, Naoyuki Yamada, Takashi Fukui, Eriko Minamiya · The Journal of the Acoustical Society of America · 2011 · cited 15×

Flute acoustics

  1. Green’s-function reaction dynamics: A particle-based approach for simulating biochemical networks in time and space Jeroen Sebastiaan van Zon, Pieter Rein ten Wolde · The Journal of Chemical Physics · 2005 · cited 261×
  2. Turbulent boundary layer trailing-edge noise: Theory, computation, experiment, and application Seongkyu Lee, Lorna J. Ayton, Franck Bertagnolio, Stéphane Moreau et al. · Progress in Aerospace Sciences · 2021 · cited 207×
  3. Magnetohydrodynamic Oscillations in the Solar Corona and Earth’s Magnetosphere: Towards Consolidated Understanding Valery M. Nakariakov, В. А. Пилипенко, Balázs Heilig, Petr Jelínek et al. · Space Science Reviews · 2016 · cited 205×
  4. The Mars 2020 Perseverance Rover Mast Camera Zoom (Mastcam-Z) Multispectral, Stereoscopic Imaging Investigation James F. Bell III, J. N. Maki, Greg L. Mehall, M. A. Ravine et al. · Space Science Reviews · 2021 · cited 178×
  5. Attenuation of sound in a low Mach Number nozzle flow Michael S. Howe · Journal of Fluid Mechanics · 1979 · cited 164×
  6. A common perceptual space for harmonic and percussive timbres Stephen Lakatos · Perception & Psychophysics · 2000 · cited 160×
  7. The nonlinear physics of musical instruments N. H. Fletcher · Reports on Progress in Physics · 1999 · cited 109×
  8. Vocal tract resonances in speech, singing, and playing musical instruments Joe Wolfe, Maëva Garnier, John R. Lindsay Smith · HFSP journal · 2008 · cited 75×
  9. Air Flow and Sound Generation in Musical Wind Instruments N. H. Fletcher · Annual Review of Fluid Mechanics · 1979 · cited 65×
  10. Jet formation and jet velocity fluctuations in a flue organ pipe M. P. Verge, B. Fabre, W. E. A. Mahu, Avraham Hirschberg et al. · The Journal of the Acoustical Society of America · 1994 · cited 63×
  11. Computation of the sound generated by isotropic turbulence Sudipto Sarkar, M. Yousuff Hussaini · NASA Technical Reports Server (NASA) · 1993 · cited 61×
  12. Evidence of biphonation and source–filter interactions in the bugles of male North American wapiti (Cervus canadensis) David Reby, Megan T. Wyman, Roland Frey, Daniela Passilongo et al. · Journal of Experimental Biology · 2016 · cited 60×
  13. Calculation of the 𝓐 term of magnetic circular dichroism based on time dependent-density functional theory I. Formulation and implementation Michael Seth, Tom Ziegler, Arup Banerjee, Jochen Autschbach et al. · The Journal of Chemical Physics · 2004 · cited 59×
  14. Sound Source Mechanics and Musical Timbre Perception: Evidence From Previous Studies Bruno L. Giordano, Stephen E. McAdams · Music Perception An Interdisciplinary Journal · 2010 · cited 57×
  15. Flow and Noise Control: Review and Assessment of Future Directions Russell H. Thomas, Meelan M. Choudhari, R. D. Joslin · NASA Technical Reports Server (NASA) · 2002 · cited 56×
  16. Infrasonic tremor wavefield of the Pu`u `Ō`ō crater complex and lava tube system, Hawaii, in April 2007 Robin S. Matoza, David Fee, Milton Garcés · Journal of Geophysical Research Atmospheres · 2010 · cited 49×
  17. Soundscape in Times of Change: Case Study of a City Neighbourhood During the COVID-19 Lockdown Sara Lenzi, Juan Sádaba, PerMagnus Lindborg · Frontiers in Psychology · 2021 · cited 49×
  18. Smart machining: Monitoring of CFRP milling using AE and IR Thiago Luiz Lara Oliveira, Rédouane Zitoune, Antônio Carlos Ancelotti, Sebastião Simões da Cunha · Composite Structures · 2020 · cited 44×
  19. Glottal behavior in the high soprano range and the transition to the whistle register Maëva Garnier, Nathalie Henrich Bernardoni, Lise Crevier‐Buchman, Coralie Vincent et al. · The Journal of the Acoustical Society of America · 2012 · cited 33×
  20. Sound level measurements in music practice rooms. Susan L. Phillips · NC Digital Online Collection of Knowledge and Scholarship (The University of North Carolina at Greensboro) · 2008 · cited 33×

Wind-instrument pedagogy

  1. Perceived Enablers and Barriers to Optimal Health among Music Students: A Qualitative Study in the Music Conservatoire Setting Rosie Perkins, Helen Reid, Liliana S. Araújo, Terry W. Clark et al. · Frontiers in Psychology · 2017 · cited 144×
  2. A generative model of teachers’ thinking on musical creativity Oscar Odenå, Graham Frederick Welch · Psychology of Music · 2009 · cited 92×
  3. The influence of teachers' backgrounds on their perceptions of musical creativity: A qualitative study with secondary school music teachers Oscar Odenå, Graham Frederick Welch · Research Studies in Music Education · 2007 · cited 85×
  4. The construction of meaning within free improvising groups: A qualitative psychological investigation. Graeme Wilson, Raymond MacDonald · Psychology of Aesthetics Creativity and the Arts · 2017 · cited 78×
  5. Music Self-Efficacy for Performance: An Explanatory Model Based on Social Support Francisco Javier Zarza Alzugaray, Óscar Casanova, Gary Edward McPherson, Santos Orejudo Hernández · Frontiers in Psychology · 2020 · cited 77×
  6. The Improvisational State of Mind: A Multidisciplinary Study of an Improvisatory Approach to Classical Music Repertoire Performance David Dolan, Henrik Jeldtoft Jensen, Pedro A. M. Mediano, Miguel Molina-Solana et al. · Frontiers in Psychology · 2018 · cited 74×
  7. Isolation in studio music teaching: The secret garden Kim Burwell, Gemma Carey, Dawn Bennett · Arts and Humanities in Higher Education · 2017 · cited 72×
  8. Automatic Assessment of Tone Quality in Violin Music Performance Sergio Giraldo, George Waddell, Ignasi Nou, Ariadna Ortega et al. · Frontiers in Psychology · 2019 · cited 70×
  9. Practitioners' views on cross‐community music education projects in Northern Ireland: Alienation, socio‐economic factors and educational potential Oscar Odenå · British Educational Research Journal · 2009 · cited 64×
  10. Focal dystonia in musicians: From phenomenology to therapy Hans‐Christian Jabusch, ECKART O. ALTENMÜLLER · Advances in Cognitive Psychology · 2006 · cited 64×
  11. Integrating Computational Thinking with a Music Education Context Judith M. Bell, Tim Bell · Informatics in Education · 2018 · cited 61×
  12. At-Risk Elementary School Children with One Year of Classroom Music Instruction Are Better at Keeping a Beat Jessica Slater, Adam Taylor Tierney, Nina Kraus · PLoS ONE · 2013 · cited 61×
  13. Imitating Sounds: A Cognitive Approach to Understanding Vocal Imitation Eduardo Mercado, James T. Mantell, Peter Q. Pfordresher · Comparative Cognition & Behavior Reviews · 2014 · cited 55×
  14. Processes and Experiences of Creative Cognition in Seven Western Classical Composers Andrea Schiavio, Nikki Moran, Dylan van der Schyff, Michele Biasutti et al. · Musicae Scientiae · 2020 · cited 54×
  15. Exploring teachers’ and pupils’ behaviour in online and face-to-face instrumental lessons Andrew King, Helen M. Prior, Caroline Waddington‐Jones · Music Education Research · 2019 · cited 54×
  16. Investigating pianists' individuality in the performance of five timbral nuances through patterns of articulation, touch, dynamics, and pedaling Michel Bernays, Caroline Traube · Frontiers in Psychology · 2014 · cited 54×
  17. Young Musicians' Learning of Expressive Performance: The Importance of Dialogic Teaching and Modeling Henrique Meissner, Renee Timmers · Frontiers in Education · 2020 · cited 43×
  18. Understanding (dis)abilities through children’s literature Stephanie A. Kurtts, Karen W. Gavigan · Education Libraries · 2017 · cited 43×
  19. Conservatory Musicians’ Temporal Organization and Self-Regulation Processes in Preparing for a Music Exam Roberta Antonini Philippe, Céline Kosirnik, Noémi Vuichoud, Terry W. Clark et al. · Frontiers in Psychology · 2020 · cited 40×
  20. Formal-informal musical learning, sex and musicians' personalities Dawn Rose, Alice Jones Bartoli, Pamela F. Heaton · Personality and Individual Differences · 2018 · cited 40×

Double reeds

  1. The nonlinear physics of musical instruments N. H. Fletcher · Reports on Progress in Physics · 1999 · cited 109×
  2. Vocal tract resonances in speech, singing, and playing musical instruments Joe Wolfe, Maëva Garnier, John R. Lindsay Smith · HFSP journal · 2008 · cited 75×
  3. Air Flow and Sound Generation in Musical Wind Instruments N. H. Fletcher · Annual Review of Fluid Mechanics · 1979 · cited 65×
  4. Calculation of the 𝓐 term of magnetic circular dichroism based on time dependent-density functional theory I. Formulation and implementation Michael Seth, Tom Ziegler, Arup Banerjee, Jochen Autschbach et al. · The Journal of Chemical Physics · 2004 · cited 59×
  5. Sound Source Mechanics and Musical Timbre Perception: Evidence From Previous Studies Bruno L. Giordano, Stephen E. McAdams · Music Perception An Interdisciplinary Journal · 2010 · cited 57×
  6. Excitation mechanisms in woodwind and brass instruments Neville H. Fletcher · ANU Open Research (Australian National University) · 1979 · cited 55×
  7. A Taxonomy of Orchestral Grouping Effects Derived from Principles of Auditory Perception Stephen E. McAdams, Meghan Goodchild, Kit Soden · Music Theory Online · 2022 · cited 43×
  8. The effect of the reed resonance on woodwind tone production Stephen C. Thompson · The Journal of the Acoustical Society of America · 1979 · cited 42×
  9. Student′s music exposure: Full-day personal dose measurements SusanL Phillips, Nilesh J. Washnik, Sandra Teglas · Noise and Health · 2016 · cited 37×
  10. The difference between standing and sitting in 3 different seat inclinations on abdominal muscle activity and chest and abdominal expansion in woodwind and brass musicians Bronwen Jane Ackermann, Nicholas O’Dwyer, Mark Halaki · Frontiers in Psychology · 2014 · cited 32×
  11. Open Areas of Vibrating Lips in Trombone Playing Seona Bromage, Murray S. Campbell, Joël Gilbert · Acta acustica united with Acustica · 2010 · cited 29×
  12. Instrument Timbre Enhances Perceptual Segregation in Orchestral Music Manda Fischer, Kit Soden, Etienne Thoret, Marcel Montrey et al. · Music Perception An Interdisciplinary Journal · 2021 · cited 27×
  13. Acoustical correlates of perceptual blend in timbre dyads and triads Sven-Amin Lembke, Kyra Parker, Eugene Narmour, Stephen E. McAdams · Musicae Scientiae · 2017 · cited 26×
  14. A neurally inspired musical instrument classification system based upon the sound onset Michael J. Newton, Leslie S. Smith · The Journal of the Acoustical Society of America · 2012 · cited 23×
  15. Characterization of aerosol plumes from singing and playing wind instruments associated with the risk of airborne virus transmission Lingzhe Wang, Tong Lin, Hevander Da Costa, Shengwei Zhu et al. · Indoor Air · 2022 · cited 20×
  16. Analysis of Tonguing and Blowing Actions During Clarinet Performance Montserrat Pàmies-Vilà, Alex Hofmann, Vasileios Chatziioannou · Frontiers in Psychology · 2018 · cited 17×
  17. An Interview with Max Mathews Tae Hong Park · Computer Music Journal · 2009 · cited 17×
  18. Time–frequency scattering accurately models auditory similarities between instrumental playing techniques Vincent Lostanlen, Christian El-Hajj, Mathias Rossignol, Grégoire Lafay et al. · EURASIP Journal on Audio Speech and Music Processing · 2021 · cited 11×
  19. Variations in timbre qualia with register and dynamics in the oboe and French horn Lindsey Reymore · Empirical Musicology Review · 2023 · cited 9×
  20. Voicelikeness of musical instruments: A literature review of acoustical, psychological and expressiveness perspectives Emery Schubert, Joe Wolfe · Musicae Scientiae · 2016 · cited 9×

Musicians' health

  1. Playing-related Musculoskeletal Problems in Children Learning Instrumental Music: The Association Between Problem Location and Gender, Age, and Music Exposure Factors Sonia Ranelli, Leon Melville Straker, Anne Smith · Medical Problems of Performing Artists · 2011 · cited 69×
  2. Acute onset dystonic camptocormia caused by lenticular lesions Anette V. Nieves, Janis M. Miyasaki, Anthony E. Lang · Movement Disorders · 2001 · cited 65×
  3. Evidence for Enhanced Interoceptive Accuracy in Professional Musicians Katharina Lea Schirmer-Mokwa, Pouyan Rafiei Fard, Anna María Zamorano, Sebastian Finkel et al. · Frontiers in Behavioral Neuroscience · 2015 · cited 54×
  4. Have musicians’ musculoskeletal symptoms been thoroughly addressed? A systematic mapping review Jessica Stanhope, Rebecca L. Tooher, Dino Pisaniello, Philip M. Weinstein · International Journal of Occupational Medicine and Environmental Health · 2019 · cited 42×
  5. The lived experience of professional musicians with playing-related injuries: A phenomenological inquiry Christine A. Guptill · PubMed · 2011 · cited 36×
  6. How do we assess musicians’ musculoskeletal symptoms?: a review of outcomes and tools used Jessica Stanhope, Dino Pisaniello, Rebecca L. Tooher, Philip M. Weinstein · Industrial Health · 2018 · cited 33×
  7. Wind Instrumentalists and Temporomandibular Disorder: From Diagnosis to Treatment Miguel Pais Clemente, Joaquim Mendes, André Moreira, Ricardo Vardasca et al. · Dentistry Journal · 2018 · cited 30×
  8. Focal dystonia in musicians R. Aránguiz, Pedro Chaná‐Cuevas, Débora Gomes de Alburquerque, M. León · Neurología (English Edition) · 2011 · cited 28×
  9. The Dystonias Christopher D. Stephen · CONTINUUM Lifelong Learning in Neurology · 2022 · cited 25×
  10. Life satisfaction of musicians with focal dystonia A. Lee, C. Eich, Christos I. Ioannou, ECKART O. ALTENMÜLLER · Occupational Medicine · 2015 · cited 24×
  11. Playing-Related Injuries and Posture Among Saxophonists Chelsea Shanoff, Kyurim Kang, Christine A. Guptill, Michael H. Thaut · Medical Problems of Performing Artists · 2019 · cited 18×
  12. Basic Timing Abilities Stay Intact in Patients with Musician's Dystonia Maria Christine van der Steen, Floris T. van Vugt, Peter Erik Keller, ECKART O. ALTENMÜLLER · PLoS ONE · 2014 · cited 18×
  13. Ocorrência de sinais e sintomas de disfunção temporomandibular em músicos José Stechman‐Neto, Claudyane de Almeida, Eliete Rodrigues Bradasch, Lílian Cássia Bórnia Jacob-Corteletti et al. · Revista da Sociedade Brasileira de Fonoaudiologia · 2009 · cited 16×
  14. Divergent oral cavity motor strategies between healthy elite and dystonic horn players Peter W. Iltis, Jens Frahm, Dirk Voit, Arun Antony Joseph et al. · Journal of Clinical Movement Disorders · 2015 · cited 14×
  15. Botulinum Toxin Physiology in Focal Hand and Cranial Dystonia Barbara Illowsky Karp · Toxins · 2012 · cited 14×
  16. Dystonia in Performing Artists: Beyond Focal Hand Dystonia Somdattaa Ray, Pramod Kumar Pal · Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques · 2021 · cited 13×
  17. Treating the musician rather than the symptom: The holistic tools employed by current practices to attend to the non-motor problems of musicians with task-specific focal dystonia Anna Détári · Frontiers in Psychology · 2023 · cited 12×
  18. Wind Instrumentalist Embouchure and the Applied Forces on the Perioral Structures Miguel Pais Clemente, André Moreira, Joaquim Mendes, Afonso Pinhão Ferreira et al. · The Open Dentistry Journal · 2019 · cited 12×
  19. Clinical and Epidemiological Correlates of Task-Specific Dystonia in a Large Cohort of Brazilian Music Players Rita Cristina M. R. Moura, Patrícia de Carvalho Aguiar, Graziela Bortz, Henrique Ballalai Ferraz · Frontiers in Neurology · 2017 · cited 12×
  20. Glottic configuration in wind instrument players Cláudia Alessandra Eckley · Brazilian Journal of Otorhinolaryngology · 2006 · cited 11×

Metadata from OpenAlex (CC0). Only open-access papers are listed; links go to the free full text where available.