Red blood cells in retinal vascular disorders
File(s)Agrawaletal.pdf (1.5 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Microvascular circulation plays a vital role in regulating physiological functions, such as vascular resistance, and maintaining organ health. Pathologies such as hypertension, diabetes, or hematologic diseases affect the microcirculation posing a significant risk to human health. The retinal vasculature provides a unique window for non-invasive visualisation of the human circulation in vivo and retinal vascular image analysis has been established to predict the development of both clinical and subclinical cardiovascular, metabolic, renal and retinal disease in epidemiologic studies.
Blood viscosity which was otherwise thought to play a negligible role in determining blood flow based on Poiseuille's law up to the 1970s has now been shown to play an equally if not a more important role in controlling microcirculation and quantifying blood flow. Understanding the hemodynamics/rheology of the microcirculation and its changes in diseased states remains a challenging task; this is due to the particulate nature of blood, the mechanical properties of the cells (such as deformability and aggregability) and the complex architecture of the microvasculature.
In our review, we have tried to postulate a possible role of red blood cell (RBC) biomechanical properties and laid down future framework for research related to hemorrheological aspects of blood in patients with retinal vascular disorders.
Blood viscosity which was otherwise thought to play a negligible role in determining blood flow based on Poiseuille's law up to the 1970s has now been shown to play an equally if not a more important role in controlling microcirculation and quantifying blood flow. Understanding the hemodynamics/rheology of the microcirculation and its changes in diseased states remains a challenging task; this is due to the particulate nature of blood, the mechanical properties of the cells (such as deformability and aggregability) and the complex architecture of the microvasculature.
In our review, we have tried to postulate a possible role of red blood cell (RBC) biomechanical properties and laid down future framework for research related to hemorrheological aspects of blood in patients with retinal vascular disorders.
Date Issued
2016-01
Date Acceptance
2015-10-26
Citation
Blood Cells, Molecules, and Diseases, 2016, 56 (1), pp.53-61
ISSN
1079-9796
Publisher
Elsevier
Start Page
53
End Page
61
Journal / Book Title
Blood Cells, Molecules, and Diseases
Volume
56
Issue
1
Copyright Statement
© 2015 Elsevier Inc. All rights reserved. This manuscript is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/
Subjects
Science & Technology
Life Sciences & Biomedicine
Hematology
Blood flow
RBC
Hemorheological disorders
Rheology
RBC deformability
Retinal vascular disorders
ERYTHROCYTE DEFORMABILITY
DISTRIBUTION WIDTH
BEHCETS-DISEASE
IN-VIVO
SICKLE ERYTHROCYTES
POLYCYTHEMIA-VERA
ENDOTHELIAL-CELLS
OPTICAL TWEEZERS
RBC AGGREGATION
VEIN OCCLUSION
Animals
Erythrocyte Deformability
Erythrocytes
Hemorheology
Humans
Retina
Retinal Diseases
Retinal Vessels
Vascular Diseases
1103 Clinical Sciences
Immunology
Notes
publisher: Elsevier articletitle: Red blood cells in retinal vascular disorders journaltitle: Blood Cells, Molecules, and Diseases articlelink: http://dx.doi.org/10.1016/j.bcmd.2015.10.003 content_type: article copyright: Copyright © 2015 Elsevier Inc. All rights reserved.
Publication Status
Published
Date Publish Online
2015-10-26