Impaired blood flow and oxygenation contribute to many ocular pathologies, including glaucoma. Here, a mathematical model is presented that combines an image-based heterogeneous representation of retinal arterioles with a compartmental description of capillaries and venules. The arteriolar model of the human retina is extrapolated from a previous mouse model based on confocal microscopy images. Every terminal arteriole is connected in series to compartments for capillaries and venules, yielding a hybrid model for predicting blood flow and oxygenation throughout the retinal microcirculation. A metabolic wall signal is calculated in each vessel according to blood and tissue oxygen levels. As expected, a higher average metabolic signal is gene...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...
The scientific community continues to accrue evidence that blood flow alterations and ischemic condi...
Impaired oxygen delivery and tissue perfusion have been identified as significant factors that contr...
Pathological changes in retinal microvasculature are known to be associated with systemic diseases s...
The retina is the ocular tissue responsible for the detection of light. Its extensive demand for oxy...
The retina is the ocular tissue responsible for the detection of light. Its extensive demand for oxy...
The eye is the only place in the human body where blood flow and systemic vascular features can be o...
Glaucoma is a multi-factorial ocular disease associated with death of retinal ganglion cells and irr...
The paper presents a method of development of a detailed network model to represent retinal capillar...
The human retina is supplied by two vascular systems: the highly vascular choroidal, situated behind...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
The human retina is supplied by two vascular systems: the highly vascular choroidal, situated behind...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...
The scientific community continues to accrue evidence that blood flow alterations and ischemic condi...
Impaired oxygen delivery and tissue perfusion have been identified as significant factors that contr...
Pathological changes in retinal microvasculature are known to be associated with systemic diseases s...
The retina is the ocular tissue responsible for the detection of light. Its extensive demand for oxy...
The retina is the ocular tissue responsible for the detection of light. Its extensive demand for oxy...
The eye is the only place in the human body where blood flow and systemic vascular features can be o...
Glaucoma is a multi-factorial ocular disease associated with death of retinal ganglion cells and irr...
The paper presents a method of development of a detailed network model to represent retinal capillar...
The human retina is supplied by two vascular systems: the highly vascular choroidal, situated behind...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
The human retina is supplied by two vascular systems: the highly vascular choroidal, situated behind...
The demand of non-invasive ocular screening is rapidly growing due to an increase of age related eye...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...