about
Localization of inner hair cell mechanotransducer channels using high-speed calcium imaging.Consequences of Location-Dependent Organ of Corti Micro-Mechanics.Power dissipation in the subtectorial space of the mammalian cochlea is modulated by inner hair cell stereociliaMicrostructures in the organ of Corti help outer hair cells form traveling waves along the cochlear coil.Optimal electrical properties of outer hair cells ensure cochlear amplificationThe actions of calcium on hair bundle mechanics in mammalian cochlear hair cells.Mechanical properties and consequences of stereocilia and extracellular links in vestibular hair bundles.Underestimated sensitivity of mammalian cochlear hair cells due to splay between stereociliary columnsA virtual hair cell, I: addition of gating spring theory into a 3-D bundle mechanical model.Two passive mechanical conditions modulate power generation by the outer hair cells.Computational models of hair cell bundle mechanics: III. 3-D utricular bundles.Two-compartment passive frequency domain cochlea model allowing independent fluid coupling to the tectorial and basilar membranes.Hydrostatic measurement and finite element simulation of the compliance of the organ of Corti complex.Probing hair cell's mechano-transduction using two-tone suppression measurementsTonotopy in calcium homeostasis and vulnerability of cochlear hair cells.
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description
onderzoeker
@nl
researcher ORCID ID = 0000-0002-7477-5453
@en
name
Jong-Hoon Nam
@ast
Jong-Hoon Nam
@en
Jong-Hoon Nam
@es
Jong-Hoon Nam
@nl
type
label
Jong-Hoon Nam
@ast
Jong-Hoon Nam
@en
Jong-Hoon Nam
@es
Jong-Hoon Nam
@nl
prefLabel
Jong-Hoon Nam
@ast
Jong-Hoon Nam
@en
Jong-Hoon Nam
@es
Jong-Hoon Nam
@nl
P106
P1153
12797429000
P31
P496
0000-0002-7477-5453