Lamb Model

The Lamb Model is a large-animal research model that uses lambs to study human disease, development, physiology, and medical treatments under controlled experimental conditions. Because lambs undergo measurable fetal and neonatal changes, researchers can perform defined interventions, monitor organ function over time, and compare physiological outcomes with clinically relevant measurements. This model supports investigations of fetal surgery, premature birth, respiratory disorders, cardiovascular function, and neonatal care, while enabling evaluation of devices, procedures, and therapeutics before human studies. Its size and developmental characteristics also allow surgical access and repeated sampling that may be difficult in smaller laboratory animals.

Lamb Model - Related Videos

Research

JoVE Journal - Immunology and Infection
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Following Cell-fate in E. coli After Infection by Phage Lambda

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Cited by 20 •

2011

This article describes the procedure for preparing a fluorescently-labeled version of bacteriophage lambda, infection of E. coli bacteria, following the infection outcome under the microscope, and analysis of infection results.

Research

JoVE Journal - Immunology and Infection

The Lambda Select cII Mutation Detection System

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Cited by 3 •

2018

We describe a detailed protocol for the Lambda Select cII mutation assay in cultured cells of transgenic rodents or the corresponding animals treated with a chemical/physical agent of interest. This approach has been widely used for mutagenicity testing of carcinogens in mammalian cells.

Generation of a Murine Model with a Central Nervous System Infection

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2025

This video demonstrates the generation of a mouse model with a CNS infection. A suckling pup is injected with the virus both intracranially and intraperitoneally. The virus spreads, infecting the CNS causing neuronal cell death and inflammation. The pup is assessed for symptoms of infection as the disease progresses.

Research

JoVE Journal - Biology
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In Vivo Modeling of the Morbid Human Genome using Danio rerio

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Cited by 66 •

2013

Here, we present a systematic approach for developing physiologically relevant, sensitive and specific in vivo assays for interpreting variation in human pathology. Transient genetic manipulation via microinjection of WT and mutant human mRNA and morpholino (MO) antisense oligonucleotides harness the tractability of the developing zebrafish embryo to rapidly assay pathogenic mutations, especially, but not exclusively, in the context of human developmental disorders.

Establishing a Focal Demyelination Mouse Model via a Two-Point Injection of Lysophosphatidylcholine

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2025

This video demonstrates the generation of a focal demyelination mouse model using a two-point Lysophosphatidylcholine (LPC) injection. The skull of an anesthetized mouse is exposed. The injection coordinates are determined, and a hole is drilled to enable LPC injections at targeted sites. LPC induces focal demyelination of neurons via inflammation, while a two-point injection ensures its sustainability.

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