Cochlear hair cells and the stria vascularis are critical for normal hearing. Hair cells transduce mechanical stimuli into electrical signals, whereas the stria is responsible for generating the endocochlear potential (EP), which is the driving force for hair cell mechanotransduction. We questioned whether hair cells and the stria interdepend for survival by using two mouse models. Atoh1 conditional knockout mice, which lose all hair cells within four weeks after birth, were used to determine whether the absence of hair cells would affect function and survival of stria. We showed that stria morphology and EP remained normal for long time despite a complete loss of all hair cells. We then used a mouse model that has an abnormal stria morphol...
Intrinsically generated neural activity propagates through the developing auditory system to promote...
Both outer hair cells (OHCs) and inner hair cells (IHCs) survive and mature in 3 days old rat organ ...
The deafness (dn) and Beethoven (Bth) mutant mice are models for profound congenital deafness (DFNB7...
AbstractIn the cochlea, sensory transduction depends on the endocochlear potential (EP) and the uniq...
The adult mammalian cochlea lacks regenerative capacity, which is the main reason for the permanence...
BACKGROUND: Following the loss of hair cells from the mammalian cochlea, the sensory epithelium repa...
<div><h3>Background</h3><p>Following the loss of hair cells from the mammalian cochlea, the sensory ...
The mammalian auditory sensory epithelium, the organ of Corti, is composed of hair cells and support...
The stria vascularis generates the endocochlear potential and is involved in processes that underlie...
The stria vascularis generates the endocochlear potential and is involved in processes that underlie...
Intrinsically generated neural activity propagates through the developing auditory system to promote...
The senses of hearing and balance depend upon hair cells, the sensory receptors of the inner ear. Ha...
In the mammalian cochlea, hair cell death is irreversible. New work shows that stem cells might exis...
Mammalian auditory hair cells (HCs) are inserted into a well structured environment of supporting ce...
The mammalian auditory sensory epithelium, the organ of Corti, is composed of hair cells and support...
Intrinsically generated neural activity propagates through the developing auditory system to promote...
Both outer hair cells (OHCs) and inner hair cells (IHCs) survive and mature in 3 days old rat organ ...
The deafness (dn) and Beethoven (Bth) mutant mice are models for profound congenital deafness (DFNB7...
AbstractIn the cochlea, sensory transduction depends on the endocochlear potential (EP) and the uniq...
The adult mammalian cochlea lacks regenerative capacity, which is the main reason for the permanence...
BACKGROUND: Following the loss of hair cells from the mammalian cochlea, the sensory epithelium repa...
<div><h3>Background</h3><p>Following the loss of hair cells from the mammalian cochlea, the sensory ...
The mammalian auditory sensory epithelium, the organ of Corti, is composed of hair cells and support...
The stria vascularis generates the endocochlear potential and is involved in processes that underlie...
The stria vascularis generates the endocochlear potential and is involved in processes that underlie...
Intrinsically generated neural activity propagates through the developing auditory system to promote...
The senses of hearing and balance depend upon hair cells, the sensory receptors of the inner ear. Ha...
In the mammalian cochlea, hair cell death is irreversible. New work shows that stem cells might exis...
Mammalian auditory hair cells (HCs) are inserted into a well structured environment of supporting ce...
The mammalian auditory sensory epithelium, the organ of Corti, is composed of hair cells and support...
Intrinsically generated neural activity propagates through the developing auditory system to promote...
Both outer hair cells (OHCs) and inner hair cells (IHCs) survive and mature in 3 days old rat organ ...
The deafness (dn) and Beethoven (Bth) mutant mice are models for profound congenital deafness (DFNB7...