Neuronal Survival Tracking

Neuronal survival tracking is the longitudinal measurement of whether neurons remain alive over time, providing essential evidence about degeneration, protection, and recovery. Researchers follow identified neurons through repeated imaging, cell counts, or viability measurements, then use statistical methods to distinguish genuine survival patterns from measurement variability, sampling error, and loss to follow-up. In neuroscience, these data help quantify the effects of injury, disease, genetic changes, or experimental treatments and can reveal differences in survival rates between groups. Appropriate analysis of time-to-event data, censoring, and repeated observations strengthens conclusions about neuronal vulnerability and therapeutic benefit.

Neuronal Survival Tracking - Related Videos

Research

JoVE EoE - Neurophysiology

Simultaneous Eye Tracking and Single-Neuron Recording to Identify Target-Selective Neurons

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2025

The video demonstrates an assay to identify target-selective neurons via simultaneous eye-tracking and single-neuron recordings. A human participant is tasked with identifying a target object among an array of objects in a display, and the eye movement is tracked. Simultaneously, single neurons' firing rate is recorded via electrodes implanted in the brain. The data from both recordings are correlated to assess the presence of target-selective neurons.

Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis

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Cited by 32 •

2015

The term anastasis refers to the phenomenon in which dying cells reverse a cell suicide process at a late stage, repair themselves, and ultimately survive. Here we demonstrate protocols for detecting and tracking cells that undergo anastasis.

Monitoring Neuronal Survival via Longitudinal Fluorescence Microscopy

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Cited by 34 •

2019

Here, we present a protocol to monitor survival on a single-cell basis and identify variables that significantly predict cell death.

Tracking Axonal Transport of Organelles in Motor Neurons Using a Microfluidic Device

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2025

This video demonstrates a method for tracking axonal transport in motor neurons using a microfluidic chamber system. It involves culturing mouse embryonic spinal cord tissues in polymer-coated wells with nutrient medium to induce axonal growth. The movement of fluorescent dye-stained organelles in live imaging, confirms the bidirectional axonal transport.

Cellular Impedance-Based Survival Kinetics Assay to Assess Virus Survival

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2025

This video describes a cellular impedance-based technique to study the survival kinetics of viruses that induce cytopathic effects. The method measures the electrical impedance of virus-infected adherent cells pre-treated with saline.

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