Background: The lateral line system in zebrafish is composed of a series of organs called neuromasts, which are distributed over the body surface. Neuromasts contain clusters of hair cells, surrounded by accessory cells. Results: In this report we describe zebrafish prox1 mRNA expression in the migrating primordium and in the neuromasts of the posterior lateral line. Furthermore, using an antibody against Prox1 we characterize expression of the protein in different cell types within neuromasts, and we show distribution among the supporting cells and hair cells. Conclusion: Functional analysis using antisense morpholinos indicates that prox1 activity is crucial for the hair cells to differentiate properly and acquire functionality, while h...
Hair cells transmit mechanical information by converting deflection of the hair bundle into synaptic...
The proper wiring of the vertebrate brain represents an extraordinary developmental challenge, requi...
AbstractControl of directional axon growth is fundamental to correct wiring in the nervous system, a...
Background: The lateral line system in zebrafish is composed of a series of organs called neuromast...
In teleost, the lateral line is a sensory organ composed of neuromasts containing hair cells, expres...
SummaryThe lateral line organ is a mechanosensory organ of fish and amphibians that detects changes ...
Embryonic prox1 expression pattern and functional analyses in the CNS and lateral line of zebrafish ...
AbstractOur senses of hearing and balance rely on the function of specialized receptor neurons calle...
AbstractThe lateral line system comprises an array of mechanosensory organs, the neuromasts, distrib...
Artículo de publicación ISIBackground: Development of the posterior lateral line (PLL) system in zeb...
AbstractThe lateral line is a placodally derived mechanosensory organ in anamniotes that detects the...
Hair cells are mechanosensory receptors responsible for transducing auditory and vestibular informat...
Thesis (Ph.D.)--University of Washington, 2015Hair cells are required for hearing and balance. Hair ...
Publicación ISIMechanosensory hair cells are essential for audition in vertebrates, and in many spec...
The lateral line system comprises an array of mechanosensory organs, the neuromasts, distributed ove...
Hair cells transmit mechanical information by converting deflection of the hair bundle into synaptic...
The proper wiring of the vertebrate brain represents an extraordinary developmental challenge, requi...
AbstractControl of directional axon growth is fundamental to correct wiring in the nervous system, a...
Background: The lateral line system in zebrafish is composed of a series of organs called neuromast...
In teleost, the lateral line is a sensory organ composed of neuromasts containing hair cells, expres...
SummaryThe lateral line organ is a mechanosensory organ of fish and amphibians that detects changes ...
Embryonic prox1 expression pattern and functional analyses in the CNS and lateral line of zebrafish ...
AbstractOur senses of hearing and balance rely on the function of specialized receptor neurons calle...
AbstractThe lateral line system comprises an array of mechanosensory organs, the neuromasts, distrib...
Artículo de publicación ISIBackground: Development of the posterior lateral line (PLL) system in zeb...
AbstractThe lateral line is a placodally derived mechanosensory organ in anamniotes that detects the...
Hair cells are mechanosensory receptors responsible for transducing auditory and vestibular informat...
Thesis (Ph.D.)--University of Washington, 2015Hair cells are required for hearing and balance. Hair ...
Publicación ISIMechanosensory hair cells are essential for audition in vertebrates, and in many spec...
The lateral line system comprises an array of mechanosensory organs, the neuromasts, distributed ove...
Hair cells transmit mechanical information by converting deflection of the hair bundle into synaptic...
The proper wiring of the vertebrate brain represents an extraordinary developmental challenge, requi...
AbstractControl of directional axon growth is fundamental to correct wiring in the nervous system, a...