Biomedical Technology

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Details

Summarizes recent advances from scientists actively engaged in biomedical technologies

Focuses on implants and implant design

Presents modeling schemes applied to human brain tissue, blood perfusion, arterial fluid structure interaction, and drug delivery systems


Inhalt
Multiscale Aspects in the Multiphasic Modelling of Human Brain Tissue.- Simulation of Steatosis Zonation in Liver Lobule - a Continuummechanical Biscale, Tri-phasic, Multi-component Approach.- Nano-mechanical Tensile Behavior of the SPTA1 Gene in the Presence of Hereditary hemolytic anemia-related Point Mutations.- The Choice of a Performance Indicator of Release in Transdermal Drug Delivery Systems.- Multiscale Multiphysic Approaches in Vascular Hemodynamics.- Heart Valve Flow Computation with the Space-Time Slip Interface Topology Change (ST-SI-TC) Method and Isogeometric Analysis (IGA).- Estimation of Element-based Zero-stress State in Arterial FSI Computations with Isogeometric Wall Discretization.- Fluid-Structure Interaction Modeling in 3D Cerebral Arteries and Aneurysms.- Large-eddy Simulation of Turbulence in Cardiovascular Flows.- Computational Comparison between Newtonian and non-Newtonian Blood Rheologies in Stenotic Vessels.- Artificial Textile Reinforced Tubular Aortic Heart Valves - Multi-scale Modelling and Experimental Validation.- Preliminary Monolithic Fluid Structure Interaction Model for Ventricle Contraction.- The Biomechanical Rupture Risk Assessment of Abdominal Aortic Aneurysms - Method and Clinical Relevance.- A deeper Insight of a Multi-dimensional Continuous Biofilm Growth Model: Experimental Observation and Parameter Studies.- Multiscale Experimental and Computational Investigation of Nature's Design Principle of Hierarchies in Dental Enamel.- Challenges in Total Hip Arthroplasty.- Personalized Orthopaedic Trauma Surgery by Applied Clinical Mechanics.- Measurement of Intracochlear Pressure Differences in Human Temporal Bones using an off-the-shelf Pressure Sensor.- Development of a Parametric Model of the Electrically Stimulated Auditory Nerve.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783319595474
    • Lesemotiv Verstehen
    • Genre Maths
    • Auflage 1st edition 2018
    • Editor Thomas Lenarz, Peter Wriggers
    • Anzahl Seiten 372
    • Herausgeber Springer International Publishing
    • Größe H241mm x B160mm x T26mm
    • Jahr 2017
    • EAN 9783319595474
    • Format Fester Einband
    • ISBN 3319595474
    • Veröffentlichung 31.08.2017
    • Titel Biomedical Technology
    • Untertitel Modeling, Experiments and Simulation
    • Gewicht 723g
    • Sprache Englisch

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