Larval Viability

Larval viability is the capacity of animal larvae to survive, develop normally, and progress toward the next life stage, making it an important measure of biological health and reproductive success. It depends on physiological condition, energy reserves, and environmental factors such as temperature, oxygen, nutrition, salinity, and exposure to contaminants; researchers assess it through survival, movement, feeding, growth, and successful molting or metamorphosis. Measuring larval viability helps evaluate breeding and hatchery performance, monitor ecosystem conditions, and test the effects of pollutants or other stressors. These assessments also support conservation, aquaculture, and studies of early-life development.

Larval Viability - Related Videos

Education

JoVE Science Education - Basic Biology

Drosophila Larval IHC

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2023

Immunohistochemistry (IHC) is a technique used to visualize the presence and location of proteins within tissues. Drosophila larvae are particularly amenable to IHC because of the ease with which they can be processed for staining. Additionally, the larvae are transparent, meaning that some tissues can be visualized without the need for dissection. In IHC, proteins are ultimately detected with antibodies that specifically bind to “epitopes” within the protein of interest. In order to preserve...

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.

Visualization of Larval Segmental Nerves in 3rd Instar Drosophila Larval Preparations

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Cited by 13 •

2010

Drosophila melanogaster larvae provide an ideal model system to investigate the mechanisms of axonal transport within larval segmental nerves. Using this procedure, 3rd instar larvae carrying various mutations can be compared to wild type larvae.

Dissection of Larval Zebrafish Gonadal Tissue

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Cited by 6 •

2017

Here, we present a protocol for isolating gonadal tissue of larval zebrafish, which will facilitate investigations of zebrafish sex differentiation and maintenance.

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