Intracellular sharp-electrode, whole-cell patch clamp and juxtacellular labeling methods have previously been developed for combined analysis of neuronal structure and function. We describe a novel electroporation technique for labeling neurons with Neurobiotin, using patch electrodes in a semi-loose seal configuration (R = 100-300 MOmega) with very small amplitude pulses (50 mV). The addition of 2% Neurobiotin to the intracellular solution in the patch electrode reduces the dielectric membrane breakdown voltage threshold by about threefold. The resulting pore formation allows for (1) the stable recording of spontaneous and light-evoked postsynaptic potentials without significant cytoplasmic washout and (2) the passage of dye without spillo...
Electrophysiological recordings of cells using the patch clamp technique have allowed for the identi...
High-resolution functional imaging of neural activity in vivo relies on appropriate labeling methods...
A new method is described which allows to image the steady-state distribution of membrane potential ...
Here we describe two Neurobiotin electroporation techniques for combined analysis of neuronal struct...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...
Here we describe an approach for making targeted patch−clamp recordings from single neurons in vivo,...
Electroporation creates transient pores in the plasma membrane to introduce macromolecules within a ...
To understand the working principles of the nervous system is key to figure out its electrical activ...
AbstractElectroporation creates transient pores in the plasma membrane to introduce macromolecules w...
The single-cell juxtacellular recording-labeling technique makes it possible to label the neuron rec...
Studies of subcellular Ca(2+) signaling rely on methods for labeling cells with fluorescent Ca(2+) i...
This paper describes a method of extracellular recording and subsequent electroporation with the sam...
High-resolution functional imaging of neural activity in vivo relies on appropriate labeling methods...
Transfection of cells by electroporation is a widely used and efficient method. Recently, it has bee...
Electrophysiological recordings of cells using the patch clamp technique have allowed for the identi...
High-resolution functional imaging of neural activity in vivo relies on appropriate labeling methods...
A new method is described which allows to image the steady-state distribution of membrane potential ...
Here we describe two Neurobiotin electroporation techniques for combined analysis of neuronal struct...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...
Here we describe an approach for making targeted patch−clamp recordings from single neurons in vivo,...
Electroporation creates transient pores in the plasma membrane to introduce macromolecules within a ...
To understand the working principles of the nervous system is key to figure out its electrical activ...
AbstractElectroporation creates transient pores in the plasma membrane to introduce macromolecules w...
The single-cell juxtacellular recording-labeling technique makes it possible to label the neuron rec...
Studies of subcellular Ca(2+) signaling rely on methods for labeling cells with fluorescent Ca(2+) i...
This paper describes a method of extracellular recording and subsequent electroporation with the sam...
High-resolution functional imaging of neural activity in vivo relies on appropriate labeling methods...
Transfection of cells by electroporation is a widely used and efficient method. Recently, it has bee...
Electrophysiological recordings of cells using the patch clamp technique have allowed for the identi...
High-resolution functional imaging of neural activity in vivo relies on appropriate labeling methods...
A new method is described which allows to image the steady-state distribution of membrane potential ...