AI Article Synopsis

  • Alterations in retinal blood flow are linked to ocular diseases and visual dysfunction, making their quantification important for understanding retinal pathologies.
  • Intravital video microscopy allows researchers to measure the diameters and velocities of retinal blood vessels, enabling calculations of arteriolar and venular blood flow rates.
  • The techniques described include eye preparation for microscopy, infusion of fluorescent tracers, and video analysis for real-time measurement of retinal blood flow in mice and rats.

Article Abstract

Alterations in retinal blood flow can contribute to, or be a consequence of, ocular disease and visual dysfunction. Therefore, quantitation of altered perfusion can aid research into the mechanisms of retinal pathologies. Intravital video microscopy of fluorescent tracers can be used to measure vascular diameters and bloodstream velocities of the retinal vasculature, specifically the arterioles branching from the central retinal artery and of the venules leading into the central retinal vein. Blood flow rates can be calculated from the diameters and velocities, with the summation of arteriolar flow, and separately venular flow, providing values of total retinal blood flow. This paper and associated video describe the methods for applying this technique to mice, which includes 1) the preparation of the eye for intravital microscopy of the anesthetized animal, 2) the intravenous infusion of fluorescent microspheres to measure bloodstream velocity, 3) the intravenous infusion of a high molecular weight fluorescent dextran, to aid the microscopic visualization of the retinal microvasculature, 4) the use of a digital microscope camera to obtain videos of the perfused retina, and 5) the use of image processing software to analyze the video. The same techniques can be used for measuring retinal blood flow rates in rats.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4076985PMC
http://dx.doi.org/10.3791/51110DOI Listing

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