Biomedical technology = modeling, ex...
Wriggers, Peter.

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  • Biomedical technology = modeling, experiments and simulation /
  • Record Type: Electronic resources : Monograph/item
    Title/Author: Biomedical technology/ edited by Peter Wriggers, Thomas Lenarz.
    Reminder of title: modeling, experiments and simulation /
    other author: Wriggers, Peter.
    Published: Cham :Springer International Publishing : : 2018.,
    Description: ix, 362 p. :ill., digital ;24 cm.
    [NT 15003449]: 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.
    Contained By: Springer eBooks
    Subject: Medicine - Computer simulation. -
    Online resource: http://dx.doi.org/10.1007/978-3-319-59548-1
    ISBN: 9783319595481
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