Diffuse Luminescent Imaging Tomography

Diffuse Luminescent Imaging Tomography is a three-dimensional optical imaging technique that reconstructs the location and intensity of luminescent sources within scattering tissue, supporting noninvasive investigation of cancer biology. It detects light emitted from labeled cells or molecular probes at the tissue surface, models its diffusion through tissue, and solves an inverse problem to estimate the underlying source distribution. In cancer research, the method can localize and monitor tumor cells, gene expression, or therapeutic responses in living model systems over time. By providing spatial information from weak optical signals without ionizing radiation, it complements anatomical and molecular imaging approaches in preclinical studies.

Diffuse Luminescent Imaging Tomography - Related Videos

Research

JoVE Journal - Medicine
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Computed Tomography-guided Time-domain Diffuse Fluorescence Tomography in Small Animals for Localization of Cancer Biomarkers

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Cited by 18 •

2012

Diffuse fluorescence tomography offers a relatively low-cost and potentially high-throughout approach to preclinical in vivo tumor imaging. The methodology of optical data collection, calibration, and image reconstruction is presented for a computed tomography-guided non-contact time-domain system using fluorescent targeting of the tumor biomarker epidermal growth factor receptor in a mouse glioma model.

Research

JoVE Journal - Biology

Born Normalization for Fluorescence Optical Projection Tomography for Whole Heart Imaging

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Cited by 15 •

2009

We suggest a Born normalized approach for Optical Projection Tomography (BnOPT) that accounts for the absorption properties of imaged samples to obtain accurate and quantitative fluorescence tomographic reconstructions. We use the proposed algorithm to reconstruct the fluorescence molecular probe distribution within small animal organs.

Cerenkov Luminescence Imaging (CLI) for Cancer Therapy Monitoring

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Cited by 8 •

2012

Use of Cerenkov Luminescence Imaging (CLI) for monitoring preclinical cancer treatment is described here. This method takes advantage of Cerenkov Radiation (CR) and optical imaging (OI) to visualize radiolabeled probes and thus provides an alternative to PET in preclinical therapeutic monitoring and drug screening.

Mesoscopic Fluorescence Tomography for In-vivo Imaging of Developing Drosophila

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Cited by 9 •

2009

Mesoscopic fluorescence tomography operates beyond the penetration limits of tissue-sectioning fluorescence microscopy. The technique is based on multi-projection illumination and a photon transport description. We demonstrate in-vivo whole-body 3D visualization of the morphogenesis of GFP-expressing wing imaginal discs in Drosophila melanogaster.

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JoVE Journal - Neuroscience
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Diffusion Imaging in the Rat Cervical Spinal Cord

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Cited by 10 •

2015

The goal of this protocol is to obtain high-quality diffusion weighted magnetic resonance imaging (DWI) of the rat spinal cord for noninvasive characterization of tissue microstructure. This protocol describes optimizations of the MRI sequence, radiofrequency coil, and analysis methods to enable DWI images free from artifacts.

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