Slice Viability

Slice viability is the capacity of an excised tissue slice to retain living cells and functional physiology outside the organism. In neuroscience, researchers preserve acute or organotypic brain slices in oxygenated artificial cerebrospinal fluid with controlled temperature, pH, nutrients, and ion balance while monitoring morphology, metabolism, and electrophysiological responses. These conditions limit hypoxia, energy failure, and disruption of synaptic signaling, allowing neuronal circuits to remain suitable for measurement. Reliable slice viability supports studies of synaptic transmission, neuronal excitability, plasticity, disease mechanisms, and drug effects, providing a controlled bridge between cellular experiments and intact brain function.

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Research

JoVE Journal - Biology

Viability Assays for Cells in Culture

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Cited by 39 •

2014

Therapeutic compounds are often first examined in vitro with viability assays. Blind cell counts by a human observer can be highly sensitive to small changes in cell number but do not assess function. Computerized viability assays, as described here, can assess both structure and function in an objective manner.

Counting and Determining the Viability of Cultured Cells

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Cited by 19 •

2008

Determining the number of cells in culture is important in standardization of culture conditions and in performing accurate quantitation experiments. In this video, we demonstrate how cells are counted using a hemacytometer.

Fluorescence-Based Viability Assessment of Oral Anaerobic Bacteria

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2026

Source: Calatayud Arroyo, M., et al. Assessing the Viability of a Synthetic Bacterial Consortium on the In Vitro Gut Host-microbe Interface. J. Vis. Exp. (2018)The video demonstrates a method to evaluate the viability of anaerobic oral bacteria using fluorescent dyes and flow cytometry. It begins with culturing bacteria in oxygen-free broth, followed by resuspending a single colony from a blood agar plate. After incubation and dilution, the culture is stained with membrane-permeable and...

Viability of Bioprinted Cellular Constructs Using a Three Dispenser Cartesian Printer

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Cited by 6 •

2015

A Cartesian bioprinter was designed and fabricated to allow multi-material deposition in precise, reproducible geometries, while also allowing control of environmental factors. Utilizing the three-dimensional bioprinter, complex and viable constructs may be printed and easily reproduced.

Imaging Cell Viability on Non-transparent Scaffolds — Using the Example of a Novel Knitted Titanium Implant

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Cited by 6 •

2016

Here we present a fluorophore based imaging technique to detect cell viability on a non-transparent titanium scaffold as well as to detect glimpses of the scaffold impurities. This protocol troubleshoots the drawback of imaging cell-cell or cell-metal interactions on non-transparent scaffolds.

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