Summary: Patch-clamp and multi-electrode array electrophysiology techniques are used to measure dynamic functional properties of neurons. Whole-cell and cell-attached patch-clamp recordings in brain slices can be performed in voltage-clamp and current-clamp configuration to reveal cell-type-specific synaptic and cellular parameters governing neurotransmission. Multi-electrode array electrophysiology can provide spike activity recordings from multiple neurons, enabling larger sample sizes, and long-term recordings. We provide our guide to preparing acute rodent brain slices with example experiments and analyses intended for novice and expert electrophysiologists.For complete details on the use and execution of this protocol, please refer to ...
(1) A preparation is described which allows patch clamp recordings to be made on mammalian central n...
Experimental neuroscience is witnessing an increased interest in the development and application of ...
Containing ex vivo acute brain slice patch clamp electrophysiology data relating to Figure 2 and Tab...
We describe a novel brain slice system ‘SliceMaster’ that allows electrophysiological recordings fro...
Dataset includes patch-clamp recordings aim to characterize functionality of neurons belonging to mu...
Whole-cell patch clamp recordings of neuronal activity in vivo exhibit signal quality sufficient to ...
International audienceAlthough microglial cells are not electrically excitable, they express a large...
Procedures are described for recording postsynaptic currents from neurones in slices of rat brain us...
Procedures are described for recording postsynaptic currents from neurones in slices of rat brain us...
The patch-clamp technique allows investigation of the electrical excitability of neurons and the fun...
Our ability to probe the immense complexity of the brain, with its approximately 80 billion neurons,...
Patch clamp electrophysiology has transformed research in the life sciences over the last few decade...
The combination of patch clamp recordings from two (or more) synaptically coupled neurons (paired re...
Whole-cell patch-clamp electrophysiology of neurons is a gold-standard technique for high-fidelity a...
(1) A preparation is described which allows patch clamp recordings to be made on mammalian central n...
Experimental neuroscience is witnessing an increased interest in the development and application of ...
Containing ex vivo acute brain slice patch clamp electrophysiology data relating to Figure 2 and Tab...
We describe a novel brain slice system ‘SliceMaster’ that allows electrophysiological recordings fro...
Dataset includes patch-clamp recordings aim to characterize functionality of neurons belonging to mu...
Whole-cell patch clamp recordings of neuronal activity in vivo exhibit signal quality sufficient to ...
International audienceAlthough microglial cells are not electrically excitable, they express a large...
Procedures are described for recording postsynaptic currents from neurones in slices of rat brain us...
Procedures are described for recording postsynaptic currents from neurones in slices of rat brain us...
The patch-clamp technique allows investigation of the electrical excitability of neurons and the fun...
Our ability to probe the immense complexity of the brain, with its approximately 80 billion neurons,...
Patch clamp electrophysiology has transformed research in the life sciences over the last few decade...
The combination of patch clamp recordings from two (or more) synaptically coupled neurons (paired re...
Whole-cell patch-clamp electrophysiology of neurons is a gold-standard technique for high-fidelity a...
(1) A preparation is described which allows patch clamp recordings to be made on mammalian central n...
Experimental neuroscience is witnessing an increased interest in the development and application of ...
Containing ex vivo acute brain slice patch clamp electrophysiology data relating to Figure 2 and Tab...