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Ocular Fluid Dynamics = Anatomy, Phy...
~
Harris, Alon.
Ocular Fluid Dynamics = Anatomy, Physiology, Imaging Techniques, and Mathematical Modeling /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Ocular Fluid Dynamics/ edited by Giovanna Guidoboni, Alon Harris, Riccardo Sacco.
Reminder of title:
Anatomy, Physiology, Imaging Techniques, and Mathematical Modeling /
other author:
Guidoboni, Giovanna.
Description:
XIV, 612 p. 177 illus., 140 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Mathematical models. -
Online resource:
https://doi.org/10.1007/978-3-030-25886-3
ISBN:
9783030258863
Ocular Fluid Dynamics = Anatomy, Physiology, Imaging Techniques, and Mathematical Modeling /
Ocular Fluid Dynamics
Anatomy, Physiology, Imaging Techniques, and Mathematical Modeling /[electronic resource] :edited by Giovanna Guidoboni, Alon Harris, Riccardo Sacco. - 1st ed. 2019. - XIV, 612 p. 177 illus., 140 illus. in color.online resource. - Modeling and Simulation in Science, Engineering and Technology,2164-3679. - Modeling and Simulation in Science, Engineering and Technology,.
Part I. Introduction -- Mathematical and physical modeling principles of complex biological systems -- Part II. Blood -- Vascular Anatomy and Physiology of the Eye -- Pathological Consequences of Vascular Hemodynamic Alterations in the Eye -- Measurement of geometrical and functional parameters related to ocular blood flow -- Mathematical modeling of blood flow in the eye -- Part III. Aqueous Humor -- Changes in Parameters of Aqueous Humor Dynamics Throughout Life -- Aqueous Humor Dynamics and its Influence on Glaucoma -- Approaches to Aqueous Humor Outflow Imaging.
The chapters in this contributed volume showcase current theoretical approaches in the modeling of ocular fluid dynamics in health and disease. By including chapters written by experts from a variety of fields, this volume will help foster a genuinely collaborative spirit between clinical and research scientists. It vividly illustrates the advantages of clinical and experimental methods, data-driven modeling, and physically-based modeling, while also detailing the limitations of each approach. Blood, aqueous humor, vitreous humor, tear film, and cerebrospinal fluid each have a section dedicated to their anatomy and physiology, pathological conditions, imaging techniques, and mathematical modeling. Because each fluid receives a thorough analysis from experts in their respective fields, this volume stands out among the existing ophthalmology literature. Ocular Fluid Dynamics is ideal for current and future graduate students in applied mathematics and ophthalmology who wish to explore the field by investigating open questions, experimental technologies, and mathematical models. It will also be a valuable resource for researchers in mathematics, engineering, physics, computer science, chemistry, ophthalmology, and more.
ISBN: 9783030258863
Standard No.: 10.1007/978-3-030-25886-3doiSubjects--Topical Terms:
527886
Mathematical models.
LC Class. No.: TA342-343
Dewey Class. No.: 003.3
Ocular Fluid Dynamics = Anatomy, Physiology, Imaging Techniques, and Mathematical Modeling /
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Part I. Introduction -- Mathematical and physical modeling principles of complex biological systems -- Part II. Blood -- Vascular Anatomy and Physiology of the Eye -- Pathological Consequences of Vascular Hemodynamic Alterations in the Eye -- Measurement of geometrical and functional parameters related to ocular blood flow -- Mathematical modeling of blood flow in the eye -- Part III. Aqueous Humor -- Changes in Parameters of Aqueous Humor Dynamics Throughout Life -- Aqueous Humor Dynamics and its Influence on Glaucoma -- Approaches to Aqueous Humor Outflow Imaging.
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The chapters in this contributed volume showcase current theoretical approaches in the modeling of ocular fluid dynamics in health and disease. By including chapters written by experts from a variety of fields, this volume will help foster a genuinely collaborative spirit between clinical and research scientists. It vividly illustrates the advantages of clinical and experimental methods, data-driven modeling, and physically-based modeling, while also detailing the limitations of each approach. Blood, aqueous humor, vitreous humor, tear film, and cerebrospinal fluid each have a section dedicated to their anatomy and physiology, pathological conditions, imaging techniques, and mathematical modeling. Because each fluid receives a thorough analysis from experts in their respective fields, this volume stands out among the existing ophthalmology literature. Ocular Fluid Dynamics is ideal for current and future graduate students in applied mathematics and ophthalmology who wish to explore the field by investigating open questions, experimental technologies, and mathematical models. It will also be a valuable resource for researchers in mathematics, engineering, physics, computer science, chemistry, ophthalmology, and more.
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