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Predicting retinal tissue oxygenation using an image-based theoretical model

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Publication:669049
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DOI10.1016/j.mbs.2018.08.005zbMath1409.92075OpenAlexW2888154765WikidataQ91158833 ScholiaQ91158833MaRDI QIDQ669049

Alon Harris, Brendan C. Fry, Spencer Whiteman, Ehren Brant Coburn, Julia C. Arciero, Brent A. Siesky

Publication date: 20 March 2019

Published in: Mathematical Biosciences (Search for Journal in Brave)

Full work available at URL: http://hdl.handle.net/1805/17517


zbMATH Keywords

Green's functionsmicrocirculationmathematical modelretinaglaucomaoxygenation


Mathematics Subject Classification ID

Physiological flow (92C35)


Related Items (3)

Metabolic blood flow regulation in a hybrid model of the human retinal microcirculation ⋮ Blood flow regulation and oxygen transport in a heterogeneous model of the mouse retina ⋮ A new Michaelis-Menten equation valid everywhere multi-scale dynamics prevails



Cites Work

  • Computational analysis of blood flow in the retinal arteries and veins using fundus image
  • A Green's function method for simulation of time-dependent solute transport and reaction in realistic microvascular geometries
  • Iterative Methods for Solving Partial Difference Equations of Elliptic Type




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