AbstractSound stimuli excite cochlear hair cells by vibration of each hair bundle, which opens mechanotransducer (MT) channels. We have measured hair-bundle mechanics in isolated rat cochleas by stimulation with flexible glass fibers and simultaneous recording of the MT current. Both inner and outer hair-cell bundles exhibited force-displacement relationships with a nonlinearity that reflects a time-dependent reduction in stiffness. The nonlinearity was abolished, and hair-bundle stiffness increased, by maneuvers that diminished calcium influx through the MT channels: lowering extracellular calcium, blocking the MT current with dihydrostreptomycin, or depolarizing to positive potentials. To simulate the effects of Ca2+, we constructed a fin...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
Calcium ions (Ca2+) tune and control numerous diverse aspects of cochlear and vestibular physiologic...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
AbstractSound stimuli excite cochlear hair cells by vibration of each hair bundle, which opens mecha...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
SummaryAdaptation is a hallmark of hair cell mechanotransduction, extending the sensory hair bundle ...
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...
AbstractThe mechanically gated transduction channels of vertebrate hair cells tend to close in ∼1ms ...
AbstractThe mechanically gated transduction channels of vertebrate hair cells tend to close in ∼1ms ...
SummaryAdaptation is a hallmark of hair cell mechanotransduction, extending the sensory hair bundle ...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
Calcium ions (Ca2+) tune and control numerous diverse aspects of cochlear and vestibular physiologic...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
AbstractSound stimuli excite cochlear hair cells by vibration of each hair bundle, which opens mecha...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
SummaryAdaptation is a hallmark of hair cell mechanotransduction, extending the sensory hair bundle ...
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...
AbstractThe mechanically gated transduction channels of vertebrate hair cells tend to close in ∼1ms ...
AbstractThe mechanically gated transduction channels of vertebrate hair cells tend to close in ∼1ms ...
SummaryAdaptation is a hallmark of hair cell mechanotransduction, extending the sensory hair bundle ...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...
Calcium ions (Ca2+) tune and control numerous diverse aspects of cochlear and vestibular physiologic...
Mechanically activated transducer channels in cochlear outer hair cells (OHC's) transduce sound enco...