David C. Mountain
Affiliations: | Biomedical Engineering | Boston University, Boston, MA, United States |
Area:
Auditory systemWebsite:
http://www.bu.edu/hrc/research/laboratories/auditory-biophysics/Google:
"David Mountain"Mean distance: 16.77 (cluster 17)
Cross-listing: CSD Tree
Children
Sign in to add traineeRam Canakapalli Naidu | grad student | 2001 | Boston University |
Hideko Heidi Nakajima | grad student | 2002 | Boston University |
Socrates George Deligeorges | grad student | 2004 | Boston University |
Alvin Khan | grad student | 2008 | Boston University |
Dominic Aaron Mangiardi | grad student | 2008 | Boston University |
Ahmad Malih El Katerji | grad student | 2009 | Boston University |
Seth O. Newburg | grad student | 2009 | Boston University |
Brissi Franck Zagadou | grad student | 2010 | Boston University |
Kristen Teczar Loncich | grad student | 2014 | Boston College |
Wei-Li Diana Ma | post-doc | Boston University | |
Elizabeth S. Olson | post-doc | Boston University |
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Publications
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Zosuls A, Rupprecht LC, Mountain DC. (2021) Inner hair cell stereocilia displacement in response to focal stimulation of the basilar membrane in the ex vivo gerbil cochlea. Hearing Research. 412: 108372 |
Zagadou B, Barbone P, Mountain DC. (2020) Significance of the Microfluidic Flow Inside the Organ of Corti. Journal of Biomechanical Engineering |
Tubelli AA, Zosuls A, Ketten DR, et al. (2018) A model and experimental approach to the middle ear transfer function related to hearing in the humpback whale (). The Journal of the Acoustical Society of America. 144: 525 |
Zagadou BF, Barbone PE, Mountain DC. (2014) Elastic properties of organ of Corti tissues from point-stiffness measurement and inverse analysis. Journal of Biomechanics. 47: 1270-7 |
Cunningham KA, Mountain DC. (2014) Simulated masking of right whale sounds by shipping noise: incorporating a model of the auditory periphery. The Journal of the Acoustical Society of America. 135: 1632-40 |
Mountain D, Anderson D, Voysey G. (2013) The effects of sound in the marine environment (ESME) workbench: A simulation tool to predict the impact of anthropogenic sound on marine mammals Proceedings of Meetings On Acoustics. 19 |
Zosuls A, Kelley RM, Mountain D, et al. (2013) Generation of wind turbine noise signature for use in lab environment The Journal of the Acoustical Society of America. 133: 3419-3419 |
Tubelli AA, Zosuls A, Ketten DR, et al. (2012) A prediction of the minke whale (Balaenoptera acutorostrata) middle-ear transfer function. The Journal of the Acoustical Society of America. 132: 3263-72 |
Zagadou BF, Mountain DC. (2012) Analysis of the cochlear amplifier fluid pump hypothesis. Journal of the Association For Research in Otolaryngology : Jaro. 13: 185-97 |
Mountain DC, Anderson D, Brughera A. (2012) Using EarLab to study masking due to anthropogenic sound. Advances in Experimental Medicine and Biology. 730: 221-3 |