Epicardial Fluorescence Measurement

Epicardial fluorescence measurement is an optical method for assessing fluorescent signals from the epicardium, the outer surface of the heart, during medical or cardiovascular research. After a fluorescent dye or probe reaches cardiac tissue, illumination at an excitation wavelength causes emitted light to be collected and quantified, with signal intensity or distribution reflecting the probe’s location, concentration, or local physiological state. This approach can provide spatial and time-dependent information about cardiac tissue without relying solely on visual inspection. It supports studies of myocardial perfusion, tissue viability, vascular function, and fluorescence-guided procedures, while enabling quantitative evaluation of cardiac responses under experimental or clinical conditions.

Epicardial Fluorescence Measurement - Related Videos

Research

JoVE Journal - Developmental Biology

Epicardial Outgrowth Culture Assay and Ex Vivo Assessment of Epicardial-derived Cell Migration

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Cited by 9 •

2016

Here, we describe methods for isolating primary mouse epicardial cells by an outgrowth culture assay and assessing the functional migration of epicardial-derived cells (EPDC) using an ex vivo heart culture system. These protocols are suitable for identifying genetic and chemical modulators of epicardial epithelial-to-mesenchymal transition (EMT) and motility.

In Vitro Culture of Epicardial Cells From Mouse Embryonic Heart

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Cited by 13 •

2016

The epicardium is an essential source of multipotent cardiovascular progenitor cells and paracrine factors that are required for cardiovascular development and regeneration. We describe here a method to culture mouse embryonic epicardial cells.

High-Resolution Endocardial and Epicardial Optical Mapping in a Sheep Model of Stretch-Induced Atrial Fibrillation

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Cited by 20 •

2011

This report provides a detailed description of the methodology and results of simultaneous endocardial and epicardial optical mapping of electrical excitation in the intact left atrium of a Langendorff-perfused sheep heart during stretch-induced atrial fibrillation.

Measuring Phagosome pH by Ratiometric Fluorescence Microscopy

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Cited by 26 •

2015

Phagosomal pH influences phagosome maturation, oxidant production, phagosomal killing as well as antigen presentation. Here we describe a ratiometric method for measuring time-course and endpoint pH changes in individual phagosomes in living phagocytes using fluorescence microscopy.

In Situ Measurement of Vacuum Window Birefringence using 25Mg+ Fluorescence

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2020

Presented here is a method to measure the birefringence of vacuum windows by maximizing the fluorescence counts emitted by Doppler cooled 25Mg+ ions in an ion trap. The birefringence of vacuum windows will change the polarization states of the laser, which can be compensated by changing the azimuthal angles of external wave plates.

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