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Quantitative approaches to microcirc...
~
Linninger, Andreas.
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Quantitative approaches to microcirculation = mathematical models, computational methods and data analysis /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Quantitative approaches to microcirculation/ edited by Andreas Linninger, Kent-Andre Mardal, Paolo Zunino.
Reminder of title:
mathematical models, computational methods and data analysis /
other author:
Linninger, Andreas.
Published:
Cham :Springer Nature Switzerland : : 2024.,
Description:
ix, 219 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
- Mathematical Models of the Cerebral Microcirculation in Health and Pathophysiology -- A computational model of the tumor microenvironment applied to fractionated radiotherapy -- Microvascular modeling for medical imaging and toxicity assessment -- Finite element software and performance for network models with multipliers -- A Fast-Fourier Preconditioned Schur Complement Method for the Simulation of Cerebrocortical Oxygen Supply -- Robust Preconditioning of Mixed-Dimensional PDEs on 3{cedil}{9D}{92}{85}-1{cedil}{9D}{92}{85} domains coupled with Lagrange Multipliers -- Numerical approaches for multiphase microfluids -- Application of the Zenger correction to an elliptic PDE with Dirac source term.
Contained By:
Springer Nature eBook
Subject:
Microcirculation - Simulation methods. -
Online resource:
https://doi.org/10.1007/978-3-031-58519-7
ISBN:
9783031585197
Quantitative approaches to microcirculation = mathematical models, computational methods and data analysis /
Quantitative approaches to microcirculation
mathematical models, computational methods and data analysis /[electronic resource] :edited by Andreas Linninger, Kent-Andre Mardal, Paolo Zunino. - Cham :Springer Nature Switzerland :2024. - ix, 219 p. :ill. (some col.), digital ;24 cm. - SEMA SIMAI Springer series,v. 362199-305X ;. - SEMA SIMAI Springer series ;v. 36..
- Mathematical Models of the Cerebral Microcirculation in Health and Pathophysiology -- A computational model of the tumor microenvironment applied to fractionated radiotherapy -- Microvascular modeling for medical imaging and toxicity assessment -- Finite element software and performance for network models with multipliers -- A Fast-Fourier Preconditioned Schur Complement Method for the Simulation of Cerebrocortical Oxygen Supply -- Robust Preconditioning of Mixed-Dimensional PDEs on 3{cedil}{9D}{92}{85}-1{cedil}{9D}{92}{85} domains coupled with Lagrange Multipliers -- Numerical approaches for multiphase microfluids -- Application of the Zenger correction to an elliptic PDE with Dirac source term.
Microcirculation is a key area of interest within the realms of biology and medicine. As a vital discipline, microcirculatory biology forms a significant part of established medical fields like cardiovascular medicine and oncology, and is increasingly relevant in emerging fields such as neuroscience. With its multifaceted nature, the study of microcirculation has evolved from basic observations and experiments to embrace cutting-edge imaging technologies, quantitative methods, and the power of data science. This volume brings together a series of insightful chapters that highlight the latest trends in modeling microcirculation. It casts a spotlight on the vital role of microcirculation in brain function modeling and the innovative applications of microvascular models in oncology. Readers will be introduced to state-of-the-art methodologies of microcirculation modeling. A key focus is on mixed-dimensional models, mathematical methods adept at describing complex interactions within lower dimensional manifolds. Each chapter thoughtfully navigates the mathematical, computational, and practical challenges of these approaches, underscoring their effectiveness in capturing the essence of microcirculation. This book offers a window into the latest advancements and methodologies that are shaping the future of this vital field.
ISBN: 9783031585197
Standard No.: 10.1007/978-3-031-58519-7doiSubjects--Topical Terms:
3723271
Microcirculation
--Simulation methods.
LC Class. No.: QP106.6
Dewey Class. No.: 612.13
Quantitative approaches to microcirculation = mathematical models, computational methods and data analysis /
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Microcirculation is a key area of interest within the realms of biology and medicine. As a vital discipline, microcirculatory biology forms a significant part of established medical fields like cardiovascular medicine and oncology, and is increasingly relevant in emerging fields such as neuroscience. With its multifaceted nature, the study of microcirculation has evolved from basic observations and experiments to embrace cutting-edge imaging technologies, quantitative methods, and the power of data science. This volume brings together a series of insightful chapters that highlight the latest trends in modeling microcirculation. It casts a spotlight on the vital role of microcirculation in brain function modeling and the innovative applications of microvascular models in oncology. Readers will be introduced to state-of-the-art methodologies of microcirculation modeling. A key focus is on mixed-dimensional models, mathematical methods adept at describing complex interactions within lower dimensional manifolds. Each chapter thoughtfully navigates the mathematical, computational, and practical challenges of these approaches, underscoring their effectiveness in capturing the essence of microcirculation. This book offers a window into the latest advancements and methodologies that are shaping the future of this vital field.
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Mathematics and Statistics (SpringerNature-11649)
based on 0 review(s)
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W9494866
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EB QP106.6
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