Mechanics of microtubule bundles in pillar cells from the inner ear.
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The spatial and temporal representation of a tone on the guinea pig basilar membrane.All Three Rows of Outer Hair Cells Are Required for Cochlear AmplificationSelective ablation of pillar and deiters' cells severely affects cochlear postnatal development and hearing in mice.Cytoskeletal changes in actin and microtubules underlie the developing surface mechanical properties of sensory and supporting cells in the mouse cochlea.In vivo outer hair cell length changes expose the active process in the cochlea.Force transmission in the organ of Corti micromachine.Measuring hearing organ vibration patterns with confocal microscopy and optical flow.A MULTISCALE MODEL OF THE ORGAN OF CORTICytoskeletal bundle mechanics.Sound-evoked radial strain in the hearing organ.Impedance analysis of the organ of corti with magnetically actuated probesThe doublecortin-related gene zyg-8 is a microtubule organizer in Caenorhabditis elegans neuronsComparing in vitro, in situ, and in vivo experimental data in a three-dimensional model of mammalian cochlear mechanicsTiming of cochlear feedback: spatial and temporal representation of a tone across the basilar membrane.Structure and mechanics of supporting cells in the guinea pig organ of CortiTubulin acetylation: responsible enzymes, biological functions and human diseases.Mechanical systems biology of C. elegans touch sensation.Anomalous flexural behaviors of microtubulesCdc42-dependent structural development of auditory supporting cells is required for wound healing at adulthood.The counterbend phenomenon in flagellar axonemes and cross-linked filament bundles.Computational modeling of axonal microtubule bundles under tension.Structure and mechanical characterization of DNA i-motif nanowires by molecular dynamics simulation.Microtubule teardrop patterns.Genetic defects in β-spectrin and tau sensitize C. elegans axons to movement-induced damage via torque-tension coupling.A microtubule bestiary: structural diversity in tubulin polymers.Data-driven reduced-order model of microtubule mechanics.The counterbend dynamics of cross-linked filament bundles and flagella.Adaptive Response of Actin Bundles under Mechanical Stress.Static length changes of cochlear outer hair cells can tune low-frequency hearing.Optomechanical proposal for monitoring microtubule mechanical vibrations.Hydrostatic measurement and finite element simulation of the compliance of the organ of Corti complex.
P2860
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P2860
Mechanics of microtubule bundles in pillar cells from the inner ear.
description
1997 nî lūn-bûn
@nan
1997年の論文
@ja
1997年論文
@yue
1997年論文
@zh-hant
1997年論文
@zh-hk
1997年論文
@zh-mo
1997年論文
@zh-tw
1997年论文
@wuu
1997年论文
@zh
1997年论文
@zh-cn
name
Mechanics of microtubule bundles in pillar cells from the inner ear.
@en
Mechanics of microtubule bundles in pillar cells from the inner ear.
@nl
type
label
Mechanics of microtubule bundles in pillar cells from the inner ear.
@en
Mechanics of microtubule bundles in pillar cells from the inner ear.
@nl
prefLabel
Mechanics of microtubule bundles in pillar cells from the inner ear.
@en
Mechanics of microtubule bundles in pillar cells from the inner ear.
@nl
P2860
P1433
P1476
Mechanics of microtubule bundles in pillar cells from the inner ear.
@en
P2093
J A Tolomeo
M C Holley
P2860
P304
P356
10.1016/S0006-3495(97)78255-9
P407
P577
1997-10-01T00:00:00Z