Tumor Vasculature Quantification

Tumor vasculature quantification is the measurement and analysis of blood vessel structure and distribution within tumors, providing insights into how cancers obtain oxygen and nutrients. Researchers use histological staining or imaging to identify vessels and calculate features such as vessel density, diameter, branching, spatial organization, and perfusion-related patterns. These measurements help characterize abnormal tumor angiogenesis, compare vascular changes across tumor types or treatment conditions, and evaluate responses to antiangiogenic therapy. In cancer research, quantitative vascular data also support studies of tumor growth, hypoxia, metastasis, and drug delivery, making vascular analysis an important tool for linking tissue architecture with disease progression and therapeutic outcomes.

Tumor Vasculature Quantification - Related Videos

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JoVE Journal - Medicine
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Intravital Microscopy of Tumor-associated Vasculature Using Advanced Dorsal Skinfold Window Chambers on Transgenic Fluorescent Mice

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Cited by 32 •

2018

This protocol describes the intravital imaging of transgenic mice expressing cell-specific fluorescent markers. Intravital imaging provides a non-invasive method for high-resolution observations in living animals using implantable windows through which the microscopic visualization of processes is possible. This method is especially useful to study longitudinal processes.

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JoVE Journal - Medicine

Quantification of Diabetes-induced Adherent Leukocytes in Retinal Vasculature

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2025

We demonstrate a method to label the walls of the retinal vasculature and adherent leukocytes. These adherent leukocytes can then be counted under a fluorescence microscope as a parameter of inflammation or the response of that inflammation to therapies.

Monitoring Functionality and Morphology of Vasculature Recruited by Factors Secreted by Fast-growing Tumor-generating Cells

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Cited by 7 •

2014

We describe a matrigel plug assay to illustrate angiogenic potential of a pool of factors secreted by cancer cells using two complementary imaging modalities, ultrasound and endomicroscopy. The matrigel, an extracellular matrix (ECM)-mimic gel, is utilized to introduce the host (mouse) with angiogenic factors secreted to the conditioned media...

The Drosophila Imaginal Disc Tumor Model: Visualization and Quantification of Gene Expression and Tumor Invasiveness Using Genetic Mosaics

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Cited by 11 •

2016

This protocol demonstrates how to generate fluorescently marked, genetically defined clonal tumors in the Drosophila eye/antennal imaginal discs (EAD). It describes how to dissect the EAD and brain from the third instar larvae and how to process them to visualize and quantify gene expression changes and tumor invasiveness.

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JoVE Journal - Medicine
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Imaging and Quantification of the Hepatic Vasculature of Mice Using Ultrafast Doppler Ultrasound

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2024

Ultrafast Doppler ultrasound (UFUS) with high spatial resolution (100 μm) and sensitivity represents a suitable noninvasive imaging modality for obtaining a comprehensive qualitative overview of the hepatic vasculature. UFUS also facilitates quantitative measurements of the microvasculature, aiming to enhance our understanding of vascular disease mechanisms.

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