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Extracellular matrix and inner ear development and function
Dominic Cosgrove
, Michael Anne Gratton
Department of Otolaryngology
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
›
peer-review
1
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Scopus citations
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Keyphrases
Extracellular Matrix
100%
Basement Membrane
100%
Inner Ear Development
100%
Inner Ear Function
100%
Cochlea
33%
Inner Ear
33%
Capillary
33%
Cellular Compartments
16%
Epithelium
16%
Ablation
16%
Directed Differentiation
16%
Outer Hair Cell
16%
Sudden Sensorineural Hearing Loss (SSNHL)
16%
Cochlear Function
16%
Mutant Mice
16%
Structural Change
16%
Functional Role
16%
Sensorineural
16%
Membrane Composition
16%
Physical Characteristics
16%
Sound Wave
16%
Tectorin
16%
Sensory Neural Hearing Loss
16%
Cytodifferentiation
16%
Dynamic Transition
16%
Tectorial Membrane
16%
Cochlear Amplifier
16%
Neural Energy
16%
Sensori-neural
16%
Structural Balance
16%
Medicine and Dentistry
Extracellular Matrix
100%
Basement Membrane
100%
Cochlea
100%
Capillary Basement Membrane
50%
Cell Differentiation
25%
Cellular Compartment
25%
Sensorineural Hearing Loss
25%
Outer Hair Cell
25%
Tectorial Membrane
25%
Neuroscience
Cochlea
100%
Extracellular Matrix
100%
Basement Membrane
100%
Capillary Basement Membrane
50%
Cellular Differentiation
25%
Sensorineural Hearing Loss
25%