The outer hair cells (OHCs) of the cochlea have an electromotility mechanism, based on conformational changes of voltage-sensitive "motor" proteins in the lateral plasma membrane. The translocation of electrical charges across the membrane that accompanies electromotility imparts a voltage dependency to the membrane capacitance. We used capacitance measurements to investigate whether electromotility may be influenced by different manipulations known to affect intracellular Ca2+ or Ca2+-dependent protein phosphorylation. Application of acetylcholine (ACh) to the synaptic pole of isolated OHCs evoked a Ca2+-activated apamin-sensitive outward K+ current. It also enhanced electromotility, probably because of a phosphorylation-dependent decrease...
AbstractOuter hair cells amplify and improve the frequency selectivity of sound within the mammalian...
We used a high-performance fluorescence imaging system to visualize rapid changes in intracellular f...
Mechanically sensitive hair cells of the auditory and vestibular systems use Ca2+ to control adaptat...
The outer hair cells (OHCs) of the cochlea have an electromotility mechanism, based on conformationa...
Two Ca2+-dependent mechanisms have been proposed to regulate the mechanical properties of outer hair...
Two Ca2+-dependent mechanisms have been proposed to regulate the mechanical properties of outer hair...
The unique electromotility of the outer hair cell (OHC) is believed to promote sharpening of the pas...
AbstractThe electrically evoked somatic motility of outer hair cells (OHC), briefly termed OHC elect...
The outer hair cells (OHCs) of the cochlea are the source of much of our exquisite auditory sensitiv...
Membrane potential controls the length of cochlear outer hair cells (OHCs). Ion channels in the plas...
AbstractThe electrically evoked somatic motility of outer hair cells (OHC), briefly termed OHC elect...
The mammalian outer hair cell (OHC) functions not only as sensory receptor, but also as mechanical e...
The unique electromotility of the outer hair cell (OHC) is believed to promote sharpening of the pas...
The mammalian outer hair cell (OHC) functions not only as sensory receptor, but also as mechanical e...
AbstractOuter hair cells amplify and improve the frequency selectivity of sound within the mammalian...
AbstractOuter hair cells amplify and improve the frequency selectivity of sound within the mammalian...
We used a high-performance fluorescence imaging system to visualize rapid changes in intracellular f...
Mechanically sensitive hair cells of the auditory and vestibular systems use Ca2+ to control adaptat...
The outer hair cells (OHCs) of the cochlea have an electromotility mechanism, based on conformationa...
Two Ca2+-dependent mechanisms have been proposed to regulate the mechanical properties of outer hair...
Two Ca2+-dependent mechanisms have been proposed to regulate the mechanical properties of outer hair...
The unique electromotility of the outer hair cell (OHC) is believed to promote sharpening of the pas...
AbstractThe electrically evoked somatic motility of outer hair cells (OHC), briefly termed OHC elect...
The outer hair cells (OHCs) of the cochlea are the source of much of our exquisite auditory sensitiv...
Membrane potential controls the length of cochlear outer hair cells (OHCs). Ion channels in the plas...
AbstractThe electrically evoked somatic motility of outer hair cells (OHC), briefly termed OHC elect...
The mammalian outer hair cell (OHC) functions not only as sensory receptor, but also as mechanical e...
The unique electromotility of the outer hair cell (OHC) is believed to promote sharpening of the pas...
The mammalian outer hair cell (OHC) functions not only as sensory receptor, but also as mechanical e...
AbstractOuter hair cells amplify and improve the frequency selectivity of sound within the mammalian...
AbstractOuter hair cells amplify and improve the frequency selectivity of sound within the mammalian...
We used a high-performance fluorescence imaging system to visualize rapid changes in intracellular f...
Mechanically sensitive hair cells of the auditory and vestibular systems use Ca2+ to control adaptat...