Kuni H. Iwasa
Affiliations: | National Institutes of Health, Bethesda, MD |
Area:
hair cellsWebsite:
http://www.nidcd.nih.gov/research/scientists/iwasak.aspGoogle:
"Kuni Iwasa"Mean distance: 15.99 (cluster 17)
Parents
Sign in to add mentorIchiji Tasaki | post-doc | 1979-1982 | NIH |
Gerald Ehrenstein | post-doc | 1981-1984 | NIH |
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Publications
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Santos-Sacchi J, Iwasa KH, Tan W. (2019) Outer hair cell electromotility is low-pass filtered relative to the molecular conformational changes that produce nonlinear capacitance. The Journal of General Physiology |
Iwasa KH. (2017) Negative membrane capacitance of outer hair cells: electromechanical coupling near resonance. Scientific Reports. 7: 12118 |
Izumi C, Bird JE, Iwasa KH. (2011) Membrane thickness sensitivity of prestin orthologs: the evolution of a piezoelectric protein. Biophysical Journal. 100: 2614-22 |
Izumi C, Bird JE, Iwasa KH. (2011) Membrane Thickness Dependence of Non-Mammalian Prestins Biophysical Journal. 100: 637a |
Sul B, Iwasa KH. (2010) Gating of two mechanoelectrical transducer channels associated with a single tip link. Biophysical Journal. 99: 1027-33 |
Fang J, Izumi C, Iwasa KH. (2010) Sensitivity of prestin-based membrane motor to membrane thickness. Biophysical Journal. 98: 2831-8 |
Sinha GP, Sabri F, Dimitriadis EK, et al. (2010) Organization of membrane motor in outer hair cells: an atomic force microscopic study. Pflã¼Gers Archiv : European Journal of Physiology. 459: 427-39 |
Sul B, Iwasa KH. (2010) Effect of Having Two Identical Channels Per Tip-Link in Hair Bundles Biophysical Journal. 98: 509a |
Sul B, Iwasa KH. (2009) Effectiveness of hair bundle motility as the cochlear amplifier. Biophysical Journal. 97: 2653-63 |
Sul B, Iwasa KH. (2009) Amplifying effect of a release mechanism for fast adaptation in the hair bundle. The Journal of the Acoustical Society of America. 126: 4-6 |