Ivis Imaging System

The IVIS Imaging System is a noninvasive optical imaging platform that visualizes bioluminescent or fluorescent signals in living organisms, allowing researchers to track biological activity over time. In bioluminescence imaging, luciferase-expressing cells or microbes produce light after receiving a substrate, while fluorescence imaging measures emitted light from labeled targets after excitation; a sensitive camera captures these signals and maps their distribution. In medicine, IVIS supports studies of tumor growth, infection, gene expression, drug delivery, and treatment response in preclinical models. Repeated imaging can reveal longitudinal changes while reducing the need to sacrifice animals at each time point.

Ivis Imaging System - Related Videos

Research

JoVE Journal - Biology
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In vivo Bioluminescent Imaging of Mammary Tumors Using IVIS Spectrum

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Cited by 58 •

2009

Mammary tumor cells expressing luciferase are implanted subcutaneously in mice and visualized using optical imaging to monitor tumor growth and development non-invasively in a longitudinal study.

Research

JoVE Journal - Immunology and Infection

In Vivo Imaging Systems (IVIS) Detection of a Neuro-Invasive Encephalitic Virus

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Cited by 11 •

2012

Utilizing luciferase and in vivo imaging systems (IVIS) as a novel means to identify disease endpoints before clinical developments occur. IVIS has allowed us to visualize in real time the invasion of encephalitic viruses over multiple days, providing a more accurate disease model for future study. It has also allowed us to identify the potential protective features of antivirals and vaccines faster than currently utilized animal models. The capability to utilize individual animals over...

In vivo Imaging of Transgenic Leishmania Parasites in a Live Host

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Cited by 65 •

2010

An in vivo imaging system is used to generate quantitative measurements of murine infection with the Trypanosomatid protozoan Leishmania. This is a non-invasive and non-lethal method for detecting parasites expressing luciferase within many tissues throughout the course of chronic Leishmania spp. infection.

Using Luciferase to Image Bacterial Infections in Mice

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Cited by 22 •

2011

Methods for bioluminescence imaging of bacterial infections in living animals are decribed. Pathogens are modified to express luciferase allowing optical whole body imaging of infections in live animals. Animal models can be infected with luciferase expressing pathogens and the resulting course of disease visualized in real-time by bioluminescence imaging.

Advanced Animal Model of Colorectal Metastasis in Liver: Imaging Techniques and Properties of Metastatic Clones

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Cited by 6 •

2016

The ability of metastatic clones to colonize distant sites depends on their proliferation capacity and/or their ability to survive in the host microenvironment without significant proliferation. Here, we present an animal model that allows quantitative visualization of both types of liver colonization by metastatic clones.

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