International audienceEpithelial cells acquire diverse shapes relating to their different functions. This is particularly relevant for the cochlear outer hair cells (OHCs), whose apical and basolateral shapes accommodate the functioning of these cells as mechano-electrical and electromechanical transducers, respectively. We uncovered a circumferential shape transition of the apical junctional complex (AJC) of OHCs, which occurs during the early postnatal period in the mouse, prior to hearing onset. Geometric analysis of the OHC apical circumference using immunostaining of the AJC protein ZO1 and Fourier-interpolated contour detection characterizes this transition as a switch from a rounded-hexagon to a non-convex circumference delineating t...
AbstractThe outer hair cell (OHC) of the mammalian inner ear exhibits an unusual form of somatic mot...
The mammalian sense of hearing relies on two types of sensory cells: inner hair cells transmit the a...
International audienceThe ribbon synapses of auditory inner hair cells (IHCs) undergo morphological ...
International audienceEpithelial cells acquire diverse shapes relating to their different functions....
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
The field of cochlear mechanics has been undergoing a revolution due to recent findings made possibl...
International audienceThe precise architecture of hair bundles, the arrays of mechanosensitive micro...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
International audienceOuter hair cell (OHC) stereocilia bundle deflection opens mechanoelectrical tr...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
International audienceThe function of outer hair cells (OHCs), the mechanical actuators of the cochl...
Outer Hair Cells (OHCs) in the mammalian cochlea display a unique type of voltage-induced mechanical...
International audienceWithin the mammalian cochlea, sensory hair cells and supporting cells are alig...
Outer hair cells (OHCs) of the mammalian cochlea behave like actuators: they feed energy into the co...
AbstractThe outer hair cell (OHC) of the mammalian inner ear exhibits an unusual form of somatic mot...
The mammalian sense of hearing relies on two types of sensory cells: inner hair cells transmit the a...
International audienceThe ribbon synapses of auditory inner hair cells (IHCs) undergo morphological ...
International audienceEpithelial cells acquire diverse shapes relating to their different functions....
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
The field of cochlear mechanics has been undergoing a revolution due to recent findings made possibl...
International audienceThe precise architecture of hair bundles, the arrays of mechanosensitive micro...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
International audienceOuter hair cell (OHC) stereocilia bundle deflection opens mechanoelectrical tr...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
International audienceThe function of outer hair cells (OHCs), the mechanical actuators of the cochl...
Outer Hair Cells (OHCs) in the mammalian cochlea display a unique type of voltage-induced mechanical...
International audienceWithin the mammalian cochlea, sensory hair cells and supporting cells are alig...
Outer hair cells (OHCs) of the mammalian cochlea behave like actuators: they feed energy into the co...
AbstractThe outer hair cell (OHC) of the mammalian inner ear exhibits an unusual form of somatic mot...
The mammalian sense of hearing relies on two types of sensory cells: inner hair cells transmit the a...
International audienceThe ribbon synapses of auditory inner hair cells (IHCs) undergo morphological ...