Select epithelial regions of the bovine inner ear were established and maintained in cell culture. Marginal cells from the stria vascularis and dark cells from the posterior wall of the utricle were isolated, dissociated and placed in culture medium. Within 24 h, cellular islands of hexagonal-shaped, epithelial-like cells from both the stria vascularis and posterior utricular wall were readily identifiable by inverted light microscopy. Ultrastructural examination of both the cultured stria marginal cells and utricular dark cells revealed that both cell types had numerous microvilli on their apical surfaces and interdigitating infoldings of their basolateral surfaces. Apical tight junctional complexes were present between apposing cells. The...
International audienceThe inner ear of mammals contains the vestib-ular apparatus which is involved ...
This protocol describes a three-dimensional culture method for generating inner ear sensory epitheli...
While inner ear disorders are common, our ability to intervene and recover their sensory function is...
For the advanced study of the cell and molecular biology of middle ear mucosa, an in vitro cell cult...
Primary culture of capillary endothelial cells from the spiral ligament and stria vascularis of bovi...
Methods for isolation and culture of microvascular endothelial cells of the inner ear were devised t...
The sensory epithelia of the mammalian inner ear consist of a highly precise pattern of sensory hair...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
Recent technical advances now permit the serial culture of normal human middle ear epithelial (NHMEE...
This protocol describes a culture system in which inner-ear sensory tissue is produced from mouse em...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
The embryonic mouse inner ear was used as a model with which to study ototoxicity and tissue interac...
In eutherian mammals, the organ responsible for the transduction of sound waves into nerve impulses ...
Indiana University-Purdue University Indianapolis (IUPUI)Inner ear development requires the complex ...
The hair cells of the sensory epithelium in the inner ear are among the most precisely organized cel...
International audienceThe inner ear of mammals contains the vestib-ular apparatus which is involved ...
This protocol describes a three-dimensional culture method for generating inner ear sensory epitheli...
While inner ear disorders are common, our ability to intervene and recover their sensory function is...
For the advanced study of the cell and molecular biology of middle ear mucosa, an in vitro cell cult...
Primary culture of capillary endothelial cells from the spiral ligament and stria vascularis of bovi...
Methods for isolation and culture of microvascular endothelial cells of the inner ear were devised t...
The sensory epithelia of the mammalian inner ear consist of a highly precise pattern of sensory hair...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
Recent technical advances now permit the serial culture of normal human middle ear epithelial (NHMEE...
This protocol describes a culture system in which inner-ear sensory tissue is produced from mouse em...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
The embryonic mouse inner ear was used as a model with which to study ototoxicity and tissue interac...
In eutherian mammals, the organ responsible for the transduction of sound waves into nerve impulses ...
Indiana University-Purdue University Indianapolis (IUPUI)Inner ear development requires the complex ...
The hair cells of the sensory epithelium in the inner ear are among the most precisely organized cel...
International audienceThe inner ear of mammals contains the vestib-ular apparatus which is involved ...
This protocol describes a three-dimensional culture method for generating inner ear sensory epitheli...
While inner ear disorders are common, our ability to intervene and recover their sensory function is...