Animal Model Selection

Animal Model Selection is the process of choosing a nonhuman species, strain, or genetic model that best represents the biological question under investigation. Researchers compare characteristics such as anatomy, physiology, genetics, disease phenotype, life cycle, and environmental requirements, while also considering animal welfare, reproducibility, cost, and ethical constraints. In biology, careful selection helps ensure that experimental results address the intended mechanism and can be interpreted reliably across studies. Appropriate models support research in development, disease mechanisms, pharmacology, toxicology, and genetics, while improving translational relevance and guiding the responsible design of experiments.

Animal Model Selection - Related Videos

Research

JoVE Journal - Biology

Computer-Generated Animal Model Stimuli

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Cited by 8 •

2007

Computer-generated stimuli using the Jacky dragon as a model.

Research

JoVE Journal - Immunology and Infection
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Animal Model of Implant-Associated Infections in Mice

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2025

The present protocol describes a mouse model employing subcutaneous dorsal implantation to investigate implant-associated infections, enabling comprehensive investigation of pathophysiological mechanisms and supporting the development of diagnostic criteria with targeted therapeutic strategies.

Research

JoVE Journal - Medicine
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An Isolated Working Heart System for Large Animal Models

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Cited by 22 •

2014

Most studies involving the Langendorff apparatus use small animal models due to the increased complexity of systems for larger mammals. We describe a Langendorff system for large animal models that allows for use across a range of species, including humans, and relatively easy data acquisition.

Kidney Procurement in a Preclinical Large Animal Model

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2025

Here, we present a protocol that details a surgical model for kidney procurement in a preclinical swine model for subsequent machine perfusion or transplantation.

Research

JoVE Journal - Medicine
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Bioluminescence Imaging of an Immunocompetent Animal Model for Glioblastoma

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Cited by 13 •

2016

GL261 glioma cells provide a useful immunocompetent animal model of glioblastoma. The goals of this protocol are to demonstrate proper techniques for monitoring intracranial tumor growth using in vivo bioluminescence imaging, and to verify the utility of luciferase-modified GL261 cells for studying tumor immunology and immunotherapeutic approaches for treating glioblastoma.

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