The inner ear is a complex organ containing highly specialised cell types and structures that are critical for sensing sound and movement. In vivo, the inner ear is difficult to study due to the osseous nature of the otic capsule and its encapsulation within an intricate bony labyrinth. As such, mammalian inner ear explants are an invaluable tool for the study and manipulation of the complex intercellular connections, structures, and cell types within this specialised organ. The greatest strength of this technique is that the complete organ of Corti, or peripheral vestibular organs including hair cells, supporting cells and accompanying neurons, is maintained in its in situ form. The greatest weakness of in vitro hair cell preparations is t...
The sensory epithelia of the mammalian inner ear consist of a highly precise pattern of sensory hair...
Sensorineural hearing loss is the most common sensory deficit in humans. Despite the global scale of...
International audienceThe generation of replacement inner ear hair cells (HCs) remains a challenge a...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
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 ...
In all mammals, the sensory epithelium for audition is located along the spiraling organ of Corti th...
Background: Culturing otospheres from dissociated organ of Corti is an appropriate starting point ai...
This protocol describes a culture system in which inner-ear sensory tissue is produced from mouse em...
This protocol describes a three-dimensional culture method for generating inner ear sensory epitheli...
A practical consideration in the development of cellular therapy technology for the inner ear is the...
Summary: Neonatal mouse cochlear duct cells can proliferate and grow in vitro into inner ear organoi...
While inner ear disorders are common, our ability to intervene and recover their sensory function is...
The sensory epithelia of the mammalian inner ear consist of a highly precise pattern of sensory hair...
Sensorineural hearing loss is the most common sensory deficit in humans. Despite the global scale of...
International audienceThe generation of replacement inner ear hair cells (HCs) remains a challenge a...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
The inner ear is a complex organ containing highly specialised cell types and structures that are cr...
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 ...
In all mammals, the sensory epithelium for audition is located along the spiraling organ of Corti th...
Background: Culturing otospheres from dissociated organ of Corti is an appropriate starting point ai...
This protocol describes a culture system in which inner-ear sensory tissue is produced from mouse em...
This protocol describes a three-dimensional culture method for generating inner ear sensory epitheli...
A practical consideration in the development of cellular therapy technology for the inner ear is the...
Summary: Neonatal mouse cochlear duct cells can proliferate and grow in vitro into inner ear organoi...
While inner ear disorders are common, our ability to intervene and recover their sensory function is...
The sensory epithelia of the mammalian inner ear consist of a highly precise pattern of sensory hair...
Sensorineural hearing loss is the most common sensory deficit in humans. Despite the global scale of...
International audienceThe generation of replacement inner ear hair cells (HCs) remains a challenge a...