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Biophysical Journal|November 18, 2009
Effectiveness of hair bundle motility as the cochlear amplifierBora Sul, Kuni H IwasaBiophysical Journal|August 18, 2010
Gating of two mechanoelectrical transducer channels associated with a single tip linkBora Sul, Kuni H IwasaThe Journal of the Acoustical Society of America|July 17, 2009
Amplifying effect of a release mechanism for fast adaptation in the hair bundleBora Sul, Kuni H IwasaThe Journal of the Acoustical Society of America|December 3, 2008
Effect of the cochlear microphonic on the limiting frequency of the mammalian earKuni H Iwasa, Bora SulBiophysical Journal|July 10, 2012
How close should the outer hair cell RC roll-off frequency be to the characteristic frequency?Mark Ospeck, Kuni H IwasaBiophysical Journal|June 17, 2010
Sensitivity of prestin-based membrane motor to membrane thicknessJie Fang, Chisako Izumi, Kuni H IwasaBiophysical Journal|June 7, 2011
Membrane thickness sensitivity of prestin orthologs: the evolution of a piezoelectric proteinChisako Izumi, Jonathan E Bird, Kuni H IwasaBiophysical Journal|February 28, 2002
Piezoelectric reciprocal relationship of the membrane motor in the cochlear outer hair cellXiao-xia Dong, Mark Ospeck, Kuni H IwasaBiophysical Journal|January 28, 2003
Limiting frequency of the cochlear amplifier based on electromotility of outer hair cellsMark Ospeck, Xiao-xia Dong, Kuni H IwasaThe Journal of General Physiology|November 3, 2019
Outer hair cell electromotility is low-pass filtered relative to the molecular conformational changes that produce nonlinear capacitanceJoseph Santos-Sacchi, Kuni H Iwasa, Winston TanPageof 3