doi:10.3791/2351 (2010). Larval zebrafish represent the first vertebrate model system to allow simultaneous patch clamp recording from a spinal motor-neuron and target muscle. This is a direct consequence of the accessibility to both cell types and ability to visually distinguish the single segmental CaP motor-neuron on the basis of morphology and location. This video demonstrates the microscopic methods used to identify a CaP motor-neuron and target muscle cells as well as the methodologies for recording from each cell type. Identification of the CaP motor-neuron type is confirmed by either dye filling or by the biophysical features such as action potential waveform and cell input resistance. Motor-neuron recordings routinely last for one ...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Xenopus laevis tadpoles have been an excellent, simple vertebrate model for studying the basic organ...
A central goal of modern neuroscience is to obtain a mechanistic understanding of higher brain funct...
We describe a preparation for obtaining patch-clamp recordings from identified embryonic spinal cord...
In this video, we describe the electrophysiological methods for recording synaptic transmission at t...
The goal of this work was two-fold: 1) To apply serial block-face electron microscopy (SBEM) to the ...
Zebrafish larvae provide models of muscle development, muscle disease and muscle-related chemical to...
Whole-cell patch-clamp recordings provide exceptional access to spiking and synaptic neural activity...
Patch clamp electrophysiology has transformed research in the life sciences over the last few decade...
Among vertebrates, startle responses are a ubiquitous method for alerting, and avoiding or escaping ...
Much information about the coupling of presynaptic ionic currents with the release of neurotransmitt...
The primary purpose of this experiment is to demonstrate primary sensory neurons conveying informati...
The nervous system directly controls the muscles of the body, and thus, the behavior of the animal. ...
Patch clamp analyses of the voltage-gated channels in sensory hair cells isolated from a variety of ...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Xenopus laevis tadpoles have been an excellent, simple vertebrate model for studying the basic organ...
A central goal of modern neuroscience is to obtain a mechanistic understanding of higher brain funct...
We describe a preparation for obtaining patch-clamp recordings from identified embryonic spinal cord...
In this video, we describe the electrophysiological methods for recording synaptic transmission at t...
The goal of this work was two-fold: 1) To apply serial block-face electron microscopy (SBEM) to the ...
Zebrafish larvae provide models of muscle development, muscle disease and muscle-related chemical to...
Whole-cell patch-clamp recordings provide exceptional access to spiking and synaptic neural activity...
Patch clamp electrophysiology has transformed research in the life sciences over the last few decade...
Among vertebrates, startle responses are a ubiquitous method for alerting, and avoiding or escaping ...
Much information about the coupling of presynaptic ionic currents with the release of neurotransmitt...
The primary purpose of this experiment is to demonstrate primary sensory neurons conveying informati...
The nervous system directly controls the muscles of the body, and thus, the behavior of the animal. ...
Patch clamp analyses of the voltage-gated channels in sensory hair cells isolated from a variety of ...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Xenopus laevis tadpoles have been an excellent, simple vertebrate model for studying the basic organ...
A central goal of modern neuroscience is to obtain a mechanistic understanding of higher brain funct...