Brain Slice Recording

Brain slice recording is an ex vivo electrophysiological method that measures neuronal activity in thin sections of brain tissue while preserving local cellular connections. Researchers maintain the slice in oxygenated artificial cerebrospinal fluid and use electrodes, commonly through patch-clamp or extracellular recording, to monitor membrane potentials, synaptic currents, and network responses under controlled conditions. This approach enables precise investigation of synaptic transmission, intrinsic excitability, circuit organization, and the effects of drugs or stimulation in neuroscience. By combining experimentally controlled environments with partially preserved neural circuitry, brain slice recordings help link cellular mechanisms to circuit function and disease-related changes.

Brain Slice Recording - Related Videos

Research

JoVE Journal - Neuroscience

Whole-cell Patch-clamp Recordings in Brain Slices

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Cited by 60 •

2016

This protocol describes basic procedural steps for performing whole-cell patch-clamp recordings. This technique allows the study of the electrical behavior of neurons, and when performed in brain slices, allows the assessment of various neuronal functions from neurons that are still integrated in relatively well preserved brain circuits.

Recording Whole-Cell Currents with GABA Puffing in a Mouse Brain Slice

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2025

This video demonstrates the recording of whole-cell currents induced by gamma-aminobutyric acid, or GABA, in a mouse prefrontal cortical brain slice. Controlled delivery of GABA opens chloride channels in a postsynaptic neuron, generating inhibitory postsynaptic currents, or IPSCs. These IPSCs increase with higher GABA concentrations, reflecting GABA's inhibitory activity on synaptic transmission.

Patch-Clamp Recordings from the Dendrite of a Dopaminergic Neuron in a Brain Slice

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2025

This video demonstrates a technique for patch-clamp recording from the dendritic membrane surface. This helps to directly examine the electrical properties of dendrites and underlying voltage-gated ion channels in dopaminergic neurons.

Electrophysiological Recordings of Reprogrammed Neurons in a Mouse Brain Slice

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2025

This video demonstrates a protocol to evaluate the maturation and reprogramming of glial cells into neurons in a transfected mouse striatum slice. The experiment measures resting membrane potential and response to current injections using neuron-specific fluorescent markers and electrophysiological techniques. Voltage spikes during these measurements indicate successful neuronal maturation and reprogramming.

Optogenetic Stimulation and Electrophysiological Recording of Synaptic Events in Rat Brain Slices

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2025

This video demonstrates the procedure for studying synaptic efficiency in the lateral entorhinal cortex (LEC) by optogenetically stimulating medial prefrontal cortex (mPFC) axons and recording the responses of pyramidal neurons in the LEC. This method combines patch-clamp recordings with synaptic activation by light stimulation to study synaptic plasticity.

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