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2014 8th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO) : ESGCO 2014 : 25-28 May 2014, Fai della Paganella, Trento, Italy / / Institute of Electrical and Electronics Engineers
2014 8th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO) : ESGCO 2014 : 25-28 May 2014, Fai della Paganella, Trento, Italy / / Institute of Electrical and Electronics Engineers
Pubbl/distr/stampa Piscataway, New Jersey : , : IEEE, , 2014
Descrizione fisica 1 online resource (240 pages) : illustrations
Disciplina 612.1
Soggetto topico Cardiovascular system
ISBN 1-4799-3969-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti 2014 8th Conference of the European Study Group on Cardiovascular Oscillations
2014 8th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO)
Cardiovascular Oscillations
Record Nr. UNISA-996279324803316
Piscataway, New Jersey : , : IEEE, , 2014
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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2014 8th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO) : ESGCO 2014 : 25-28 May 2014, Fai della Paganella, Trento, Italy / / Institute of Electrical and Electronics Engineers
2014 8th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO) : ESGCO 2014 : 25-28 May 2014, Fai della Paganella, Trento, Italy / / Institute of Electrical and Electronics Engineers
Pubbl/distr/stampa Piscataway, New Jersey : , : IEEE, , 2014
Descrizione fisica 1 online resource (240 pages) : illustrations
Disciplina 612.1
Soggetto topico Cardiovascular system
ISBN 1-4799-3969-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti 2014 8th Conference of the European Study Group on Cardiovascular Oscillations
2014 8th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO)
Cardiovascular Oscillations
Record Nr. UNINA-9910135092003321
Piscataway, New Jersey : , : IEEE, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Aggiornamenti in immunoematologia / G.L. Molaro, G. Reali ; presentazione del prof. Giorgio De Sandre
Aggiornamenti in immunoematologia / G.L. Molaro, G. Reali ; presentazione del prof. Giorgio De Sandre
Autore Molaro, Gian Lodovico
Pubbl/distr/stampa Padova : Piccin, 1980
Descrizione fisica 134 p. ; 24 cm
Disciplina 612.1
Altri autori (Persone) Reali, Giorgio
Soggetto non controllato Immunoematologia
ISBN 88-212-0751-X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ita
Record Nr. UNINA-990002408360403321
Molaro, Gian Lodovico  
Padova : Piccin, 1980
Materiale a stampa
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Anatomy and Physiology of the Circulatory and Ventilatory Systems / / by Marc Thiriet
Anatomy and Physiology of the Circulatory and Ventilatory Systems / / by Marc Thiriet
Autore Thiriet Marc
Edizione [1st ed. 2014.]
Pubbl/distr/stampa New York, NY : , : Springer New York : , : Imprint : Springer, , 2014
Descrizione fisica 1 online resource (594 p.)
Disciplina 612.1
Collana Biomathematical and Biomechanical Modeling of the Circulatory and Ventilatory Systems
Soggetto topico Biophysics
Biomedical engineering
Biomathematics
Systems biology
Fluid mechanics
Cardiology
Biological and Medical Physics, Biophysics
Biomedical Engineering and Bioengineering
Mathematical and Computational Biology
Systems Biology
Engineering Fluid Dynamics
ISBN 1-4614-9469-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface -- Chapter 1: Anatomy of the Cardiovascular Apparatus -- Chapter 2: Anatomy of the Ventilatory Apparatus -- Chapter 3: Cardiovascular Physiology -- Chapter 4: Physiology of Ventilation -- Chapter 5: Medical Images and Physiological Signals -- Conclusions -- References -- List of Currently Used Prefixes and Suffixes -- List of Aliases and Primary Symbols -- Complementary Lists of Notations -- Index.
Record Nr. UNINA-9910300382903321
Thiriet Marc  
New York, NY : , : Springer New York : , : Imprint : Springer, , 2014
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Angiogenesis and Vascularisation : Cellular and Molecular Mechanisms in Health and Diseases / / edited by Józef Dulak, Alicja Józkowicz, Agnieszka Łoboda
Angiogenesis and Vascularisation : Cellular and Molecular Mechanisms in Health and Diseases / / edited by Józef Dulak, Alicja Józkowicz, Agnieszka Łoboda
Edizione [1st ed. 2013.]
Pubbl/distr/stampa Vienna : , : Springer Vienna : , : Imprint : Springer, , 2013
Descrizione fisica 1 online resource (414 p.)
Disciplina 612.1
612.1/3
612.13
Soggetto topico Immunology
Cancer - Research
Cytology
Oncology
Cancer Research
Cell Biology
ISBN 3-7091-1428-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cells and mediators:  Endothelial cell origin, differentiation, heterogeneity and function -- Developmental and pathological lymphangiogenesis -- Vascular resident endothelial side population cells -- Multiple role of proteases in angiogenesis -- Serpins in angiogenesis -- Molecular mechanisms: Endothelial transcriptional networks in the control of angiogenesis: the ETS factor -- Insights into roles of immediate-early genes in angiogenesis -- Molecular mechanisms of hypoxia-regulated angiogenesis -- MicroRNA Regulation of Angiogenesis -- Nrf2 transcription factor and heme oxygenase-1 as modulators of vascular injury and angiogenesis -- Metabolism of methylarginines and angiogenesis -- The Vasohibin Family: Novel Regulators of Angiogenesis -- Diseases and Therapy: Hypoxia-induced pathological angiogenesis in zebrafish -- Tumor angiogenesis: Fishing for screening models -- Vascular complications in diabetes -- Angiogenesis in rheumatoid arthritis -- Angiogenic signaling and structural abnormalities in tumors -- Endothelium in pathologic angiogenesis and angiogenesis-mediated therapies.
Record Nr. UNINA-9910437835503321
Vienna : , : Springer Vienna : , : Imprint : Springer, , 2013
Materiale a stampa
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Angéiologie
Angéiologie
Pubbl/distr/stampa Paris, : Société française d'angéiologie et d'histopathologie
Disciplina 612.1
ISSN 0003-3049
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione fre
Record Nr. UNINA-990008893750403321
Paris, : Société française d'angéiologie et d'histopathologie
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Basic cardiovascular physiology : from molecules to translational medical science / / Pasquale Pagliaro, Claudia Penna and Raffaella Rastaldo
Basic cardiovascular physiology : from molecules to translational medical science / / Pasquale Pagliaro, Claudia Penna and Raffaella Rastaldo
Autore Pagliaro Pasquale
Pubbl/distr/stampa Gistrup, Denmark : , : River Publishers, , [2020]
Descrizione fisica 1 online resource (438 pages)
Disciplina 612.1
Collana River publishers series in research and business chronicles: biotechnology and medicine
Soggetto topico Cardiovascular system - Physiology
Soggetto genere / forma Electronic books.
ISBN 1-5231-3886-6
87-7022-199-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910493239603321
Pagliaro Pasquale  
Gistrup, Denmark : , : River Publishers, , [2020]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Basic cardiovascular physiology : from molecules to translational medical science / / Pasquale Pagliaro, Claudia Penna and Raffaella Rastaldo
Basic cardiovascular physiology : from molecules to translational medical science / / Pasquale Pagliaro, Claudia Penna and Raffaella Rastaldo
Autore Pagliaro Pasquale
Edizione [1st ed.]
Pubbl/distr/stampa Gistrup, Denmark : , : River Publishers, , [2020]
Descrizione fisica 1 online resource (438 pages)
Disciplina 612.1
Collana River publishers series in research and business chronicles: biotechnology and medicine
Soggetto topico Cardiovascular system - Physiology
ISBN 1-000-79160-2
1-00-333729-5
1-003-33729-5
1-000-79472-5
1-5231-3886-6
87-7022-199-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910794357403321
Pagliaro Pasquale  
Gistrup, Denmark : , : River Publishers, , [2020]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Basic cardiovascular physiology : from molecules to translational medical science / / Pasquale Pagliaro, Claudia Penna and Raffaella Rastaldo
Basic cardiovascular physiology : from molecules to translational medical science / / Pasquale Pagliaro, Claudia Penna and Raffaella Rastaldo
Autore Pagliaro Pasquale
Edizione [1st ed.]
Pubbl/distr/stampa Gistrup, Denmark : , : River Publishers, , [2020]
Descrizione fisica 1 online resource (438 pages)
Disciplina 612.1
Collana River publishers series in research and business chronicles: biotechnology and medicine
Soggetto topico Cardiovascular system - Physiology
ISBN 1-000-79160-2
1-00-333729-5
1-003-33729-5
1-000-79472-5
1-5231-3886-6
87-7022-199-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910821933503321
Pagliaro Pasquale  
Gistrup, Denmark : , : River Publishers, , [2020]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Biofluids Modeling : Methods, Perspectives, and Solutions
Biofluids Modeling : Methods, Perspectives, and Solutions
Autore Chin Wilson
Edizione [1st ed.]
Pubbl/distr/stampa Newark : , : John Wiley & Sons, Incorporated, , 2023
Descrizione fisica 1 online resource (503 pages)
Disciplina 612.1
Altri autori (Persone) ChinJamie
Soggetto topico Fluid dynamics
Fluid mechanics
ISBN 9781119910589
1119910587
9781119910572
1119910579
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover -- Title Page -- Copyright Page -- Contents -- Preface -- Acknowledgements -- Dedication -- Chapter 1 Fluid Physics in Circulatory Systems - Problems, Analogies and Methods -- Presentation philosophy -- 1.1 Basic Biological Notions and Fluid-Dynamical Ideas -- Conduit flow examples -- Basic continuous flow concepts -- Eulerian versus Lagrangian descriptions -- Steady versus transient models -- Newtonian versus non-Newtonian flows -- Porous media continuum flow models -- Darcy flows in human and animal tissue -- Objectives in conduit and Darcy flow modeling -- 1.2 Quantitative Modeling Perspectives -- 1.2.1 Rheology considerations in conduit flows -- Better arterial flow models needed -- 1.2.2 Darcy flow model in continuous media -- Temperature diffusion -- Darcy flow pressure diffusion -- Important porous media approach -- Relevance of Darcy flows to biofluids -- 1.3 Preview of Complicated but Simple Boundary Value Problem Solutions -- Closing remarks -- 1.4 References -- Chapter 2 Math Models, Differential Equations and Numerical Methods -- 2.1 Presentation Approach -- What we won't do -- Pursuing studies that uncover the physics -- Examples on presentation approach -- 2.2 Diffusion Processes, Partial Differential Equations and Formulation Development -- 2.2.1 Heat transfer applications -- 2.2.2 Heat equation derivation -- 2.2.3 Pressure diffusion in porous media -- 2.2.4 Dynamically coupled heat and pressure diffusion -- 2.3 Boundary-Conforming Curvilinear Grid Generation -- 2.3.1 Comments on classical coordinate transforms and conformal mapping -- 2.3.2 Curvilinear gridding method for irregular domains -- 2.3.2.1 Grid generation for eccentric annular flow -- Mapping formalism and key ideas -- Thompson's mapping -- Some reciprocity relations -- Relation to conformal mapping, finally -- Solutions to mesh generation equations.
Boundary conditions -- Fast iterative solutions -- On Laplacian transformations -- 2.3.2.2 Grid generation for singly-connected conduit flow -- 2.4 Finite Difference Solutions Made Easy - Iterative Methods, Programming and Source Code Details -- 2.4.1 Basic ideas in finite differences -- A simple differential equation -- Variable coefficients and grids -- 2.4.2 Formulating steady flow problems -- Direct versus iterative solutions -- Iterative methods -- Convergence acceleration -- Wells and internal boundaries -- Peaceman well corrections -- Derivative discontinuities -- Point relaxation methods -- Observations on relaxation methods -- Minimal computing resources -- Good numerical stability -- Fast convergence -- Why relaxation methods converge -- Over-relaxation -- Line and point relaxation -- Curvilinear grid generation and relaxation solutions -- Coupled equations on curvilinear meshes -- 2.5 References -- Chapter 3 Hagen-Poiseuille Extensions - Real Flow Effects and General Bifurcations -- 3.1 Blood Rheology and Overview -- 3.1.1 Hagen-Poiseuille - Misunderstandings and limitations -- 3.1.2 Ideal versus non-Newtonian rheology -- 3.1.3 Some conventional rheological models -- 3.1.4 Perfect concentric flow velocity, pressure and flow rate relations -- Newtonian flow solution -- Bingham Plastic pipe flow -- Power Law fluid pipe flow -- Herschel-Bulkley pipe flow -- Ellis fluid pipe flow -- 3.1.5 Example solutions for imperfect arteries with stenosis and book presentation outline -- Book presentation outline -- 3.2 Newtonian Flow in Simple Bifurcations -- 3.2.1 Theory - Two uneven bifurcated blood vessels with Q1 specified -- Case 1. Flow rate Q1 prescribed -- Case 2. Inlet pressure Pi prescribed -- Case 3. Identical outlet pressures Po,2 and Po,3 given -- 3.2.2 Software - Two uneven bifurcated arteries with Q1 specified (Reference, CODE-1).
An example computation -- An additional validation -- 3.2.3 Theory - Two uneven bifurcated arteries with Pi specified -- 3.2.4 Software - Two uneven bifurcated arteries with Pi specified (Reference, CODE-2) -- A practical example -- 3.3 Theory - Complicated Arteries with Chained Bifurcations -- 3.4 Network with Arbitrary Number of Bifurcations -- 3.5 Bifurcated Newtonian Flow in Noncircular Clogged Blood Vessels -- 3.6 References -- Chapter 4 Non-Newtonian Flow in Circular Conduits and Networks -- Bifurcation model and analytical approach -- Different rheological applications -- Validation procedures -- 4.1 Power Law Fluids with Inlet Flow Rate Prescribed -- Iterative "half-step" solution for Pa and Pi -- Shear stress -- Typical parameters -- Example calculations -- 4.2 Herschel-Bulkley Fluids and Yield Stress -- 4.2.1 Analytical and numerical approach -- Yield stress modeling -- 4.2.2 BIFURC-6 runs assuming ôy = 0 psi (Power Law limit) -- 4.2.3 BIFURC-6 runs assuming ôy = 0.00001 psi -- 4.3 Newtonian and Herschel-Bulkley Examples -- Power Law limitations -- 4.4 References -- Chapter 5 Flows in Clogged Arteries and Veins -- 5.1 Hagen-Poiseuille Revisited - Rectangular Coordinates -- Newtonian pipe flow recapitulation -- A physical description -- Detailed assessments -- Recapitulation -- 5.2 Non-Newtonian Power Law Circular Pipe Flow in Rectangular Coordinates -- 5.3 Clinical Implications for Pressure Gradient and Viscous Shear Stress -- 5.4 Evolutionary Approaches for Complicated Geometries -- Static versus evolutionary approaches -- 5.5 A Detailed Clog Flow Computation -- Simulation 1 - Newtonian flow in perfect circle -- Simulation 2 - Power Law flow in perfect circle -- Simulation 3 - Power Law flow in a clogged blood vessel -- 5.6 References -- Chapter 6 Square Stents, Centrifugal Effects, Pulsatile Flow, Clogged Bifurcations and Axial Variations.
6.1 Stent Geometry Effects on Volume Flow Rate -- 6.1.1 Conventional stents, analytical flow model -- Stent detailed function -- Analytical modeling -- Exact analytical Hagen-Poiseuille solution -- 6.1.2 Finite difference method -- 6.1.3 Square stent designs, analytical and numerical models -- Exact analytical solution for rectangular stents -- Finite difference solution -- Example calculation -- 6.2 General Formulations and Solutions for Complicated Geometries and Arbitrary Fluids -- Recapitulation -- 6.3 Centrifugal Force Influence on Volume Flow Rate -- Straight, closed ducts -- Hagen-Poiseuille flow between planes -- Flow between concentric plates -- Typical calculations -- Flows in closed curved ducts -- 6.4 Unsteady Pulsatile Flow Model for Complicated Duct Cross-Sections -- 6.5 Bifurcated Conduits with Newtonian Flow in Clogged Geometric Cross-sections -- 6.6 Modeling Axial Variations with Pseudo-Three- Dimensional Method -- 6.7 Modeling Transient Wall Effects -- 6.8 Steady Bifurcated Newtonian Flows With Arbitrary Clogs, A Numerical Example -- 6.8.1 Motivating questions and examples -- 6.8.2 Detailed single-element pipe flow solutions -- 6.8.3 Method for bifurcated systems with clogged piping elements -- 6.8.4. Effective radius flow properties -- 6.8.5 Discussion and conclusions -- 6.9 References -- Chapter 7 Tissue Properties from Steady and Transient Syringe Pressure Analysis -- 7.1 Importance of Compressibility, Permeability, Anisotropy, Pressure and Porosity in Medical Applications -- Compressibility -- Permeability -- Anisotropy -- Local pressures -- Porosity -- Additional highlights -- 7.2 Geoscience Perspectives and Background -- 7.3 Formation Testing in Petroleum Well Logging -- 7.4 Operational Guidelines to Biofluids Pressure Testing -- Intelligent syringe concepts.
Multiprobe syringe assemblies for anisotropy and heterogeneity mapping -- 7.5 Intelligent Syringe Fundamentals -- 7.5.1 Background and Motivation -- 7.5.2 Clinical and Diagnostic Objectives -- 7.5.3 Syringe Flow Basics and Porous Media Pressure Conventions -- 7.5.4 Single Intelligent Syringe Basic Layout -- Figure 3A description -- Figure 3B description -- Figure 3C description -- Figure 3D description -- Figure 3E description -- General Comments -- 7.5.5 Syringe Arrays for Heterogeneity Mapping and Biopsy Sampler -- Array syringe and biopsy sampler -- Array syringe general concept -- 7.6 Mathematical Models for Porous Media Flow -- 7.6.1 Transient Isotropic Darcy Flow - Forward Solutions -- 7.6.2 Transient Transversely Isotropic Darcy Flow - Forward Solutions -- 7.6.3 Transient Isotropic and Transversely Isotropic Flow - Inverse Solutions -- 7.6.4 Steady Transversely Isotropic Flow - Inverse Solutions -- 7.6.5 Modeling Notes and Physical Consequences -- Geometric factor -- Flowline compressibility -- Flowline pressure drops -- Pressure effects on tissue -- 7.6.6 Anisotropic Permeabilities from Oscillatory Pressure Fields -- 7.6.7 Formulation for Supercharged Damage Zones -- 7.6.8 General Properties, Calculated Results and Validations -- Example 1. Forward and Inverse Simulations in Isotropic Media Using Drawdown Method -- Example 2. Forward and Inverse Simulations in Transversely Isotropic Media Using Pure Drawdown (or Pure Buildup) Methods -- Example 3. Forward and Inverse Simulations in Transversely Isotropic Media Using Drawdown-Buildup Method -- Example 4. Forward and Inverse Simulations in Transversely Isotropic Media Using Drawdown and Phase Delay Method -- Example 5. Forward and Inverse Simulations in Transversely Isotropic Media for Flows with Nonzero Dip Angle -- 7.6.9 Application to Subcutaneous Injection Yorkshire Swine Laboratory Data.
Experimental Details.
Record Nr. UNINA-9911019102503321
Chin Wilson  
Newark : , : John Wiley & Sons, Incorporated, , 2023
Materiale a stampa
Lo trovi qui: Univ. Federico II
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