Sodium Spike-in Procedure

The Sodium Spike-in Procedure is an experimental method that introduces a defined amount of sodium into a neural preparation to examine how changes in sodium availability affect neuronal function. Because sodium ions carry inward current through voltage-gated sodium channels, altering their concentration can change the electrochemical driving force, membrane depolarization, and action-potential generation. Researchers can use this approach alongside electrophysiological recording or sodium-sensitive imaging to assess neuronal excitability, ion regulation, and recovery after stimulation. The procedure supports studies of neural signaling and may help clarify how disrupted sodium homeostasis contributes to neurological dysfunction.

Sodium Spike-in Procedure - Related Videos

Research

JoVE EoE - Neurophysiology

Triggering a Closed-Loop Stimulation by Neuron Spiking Activity

0 Views •

2025

This video demonstrates the operation of closed-loop stimulation in a rat with a surgically implanted device to record neural activity. Neuronal signals are first recorded and analyzed. Template waveforms are then uploaded, and parameters are defined to trigger closed-loop stimulation.

Research

JoVE Journal - Immunology and Infection
Free Sample

Averaging of Viral Envelope Glycoprotein Spikes from Electron Cryotomography Reconstructions using Jsubtomo

0 Views •

Cited by 23 •

2014

An approach is presented for determining structures of viral membrane glycoprotein complexes using a combination of electron cryo-tomography and sub-tomogram averaging with the computational package Jsubtomo.

Visualizing Dose-Dependent Spike Protein Uptake with Quantum Dot Conjugates

0 Views •

2026

Source: Tran, B. N., et. al. High-throughput Confocal Imaging of Quantum Dot-Conjugated SARS-CoV-2 Spike Trimers to Track Binding and Endocytosis in HEK293T Cells. J. Vis. Exp. (2022)This video demonstrates the use of quantum dot–conjugated spike protein (QD-Spike) to visualize dose-dependent viral entry in ACE2-GFP–expressing cells. Confocal imaging captures the internalization of QD-Spike via receptor-mediated endocytosis, modeling early coronavirus entry.

Optical Recording of Suprathreshold Neural Activity with Single-cell and Single-spike Resolution

0 Views •

Cited by 1 •

2012

Understanding the function of the vertebrate central nervous system requires recordings from many neurons because cortical function arises on the level of populations of neurons. Here we describe an optical method to record suprathreshold neural activity with single-cell and single-spike resolution, dithered random-access scanning. This method records somatic fluorescence calcium signals from up to 100 neurons with high temporal resolution. A maximum-likelihood algorithm deconvolves the...

Testing Monosynaptic Connections Using Tetrodotoxin and Tetrodotoxin-Resistant Sodium Channels

0 Views •

2025

This video demonstrates testing monosynaptic connections using a transgenic fly. The fly has tetrodotoxin-resistant sodium channels and red light-activated channels in its presynaptic neurons, which are optogenetically excited to transmit signals to postsynaptic neurons.

View All Results

FAQs

Related Topics