The mammalian sense of hearing relies on two types of sensory cells: inner hair cells transmit the auditory stimulus to the brain, while outer hair cells mechanically modulate the stimulus through active feedback. Stimulation of a hair cell is mediated by displacements of its mechanosensitive hair bundle which protrudes from the apical surface of the cell into a narrow fluid-filled space between reticular lamina and tectorial membrane. While hair bundles of inner hair cells are of linear shape, those of outer hair cells exhibit a distinctive V-shape. The biophysical rationale behind this morphology, however, remains unknown. Here we use analytical and computational methods to study the fluid flow across rows of differently shaped hair bundl...
AbstractCurrent-displacement (I-X) and the force-displacement (F-X) relationships characterize hair-...
AbstractFor understanding the gating process of transduction channels in the inner ear it is essenti...
AbstractCochlear outer hair cells (OHCs) are involved in a mechanical feedback loop in which the fas...
As sensory cells, hair cells within the mammalian inner ear convert sounds into receptor potentials ...
Among the most striking and consistent morphological features of vertebrate hair cells is the geomet...
Hair cell mechanosensitivity resides in the sensory hair bundle, an apical protrusion of actin-fille...
This paper reviews current understanding and presents new results on some of the nonlinear processes...
We present a physical description of cochlear mechanics by examining the interaction between active ...
The aim of this work was to describe unique ultrastructural organization of the outer hair cell late...
The cochlea not only transduces sound-induced vibration into neural spikes, it also amplifies weak s...
The cochlea not only transduces sound-induced vibration into neural spikes, it also amplifies weak s...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
International audienceThe viscous liquid surrounding a hair bundle dissipates energy and dampens osc...
AbstractAccording to the generally accepted theory of mammalian cochlear mechanics, the fluid in the...
Outer hair cells (OHCs) of the mammalian cochlea behave like actuators: they feed energy into the co...
AbstractCurrent-displacement (I-X) and the force-displacement (F-X) relationships characterize hair-...
AbstractFor understanding the gating process of transduction channels in the inner ear it is essenti...
AbstractCochlear outer hair cells (OHCs) are involved in a mechanical feedback loop in which the fas...
As sensory cells, hair cells within the mammalian inner ear convert sounds into receptor potentials ...
Among the most striking and consistent morphological features of vertebrate hair cells is the geomet...
Hair cell mechanosensitivity resides in the sensory hair bundle, an apical protrusion of actin-fille...
This paper reviews current understanding and presents new results on some of the nonlinear processes...
We present a physical description of cochlear mechanics by examining the interaction between active ...
The aim of this work was to describe unique ultrastructural organization of the outer hair cell late...
The cochlea not only transduces sound-induced vibration into neural spikes, it also amplifies weak s...
The cochlea not only transduces sound-induced vibration into neural spikes, it also amplifies weak s...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
International audienceThe viscous liquid surrounding a hair bundle dissipates energy and dampens osc...
AbstractAccording to the generally accepted theory of mammalian cochlear mechanics, the fluid in the...
Outer hair cells (OHCs) of the mammalian cochlea behave like actuators: they feed energy into the co...
AbstractCurrent-displacement (I-X) and the force-displacement (F-X) relationships characterize hair-...
AbstractFor understanding the gating process of transduction channels in the inner ear it is essenti...
AbstractCochlear outer hair cells (OHCs) are involved in a mechanical feedback loop in which the fas...