Modeling Organs, Tissues, Cells and Devices: Using MATLAB and COMSOL Multiphysics by Socrates Dokos
- Modeling Organs, Tissues, Cells and Devices: Using MATLAB and COMSOL Multiphysics
- Socrates Dokos
- Page: 400
- Format: pdf, ePub, mobi, fb2
- ISBN: 9783642548000
- Publisher: Springer Berlin Heidelberg
Modeling Organs, Tissues, Cells and Devices: Using MATLAB and COMSOL Multiphysics
Books to download for ipod free Modeling Organs, Tissues, Cells and Devices: Using MATLAB and COMSOL Multiphysics FB2 DJVU MOBI 9783642548000 in English
This book presents a theoretical and practical overview of computational modeling in bioengineering, focusing on a range of applications including electrical stimulation of neural and cardiac tissue, implantable drug delivery, cancer therapy, biomechanics, cardiovascular dynamics, as well as fluid-structure interaction for modelling of organs, tissues,cellsand devices. It covers the basic principles of modeling and simulation with ordinary and partial differential equations using MATLAB and COMSOL Multiphysics numerical software. The target audience primarily comprises postgraduate students and researchers, but the book may also be beneficial for practitioners in the medical device industry.
Modeling Organs, Tissues, Cells and Devices
Modeling Organs, Tissues, Cells and Devices. Using MATLAB and COMSOLMultiphysics. ▷ Presents a comprehensive overview of computational modeling in.
Modeling Organs, Tissues, Cells and Devices: Using MATLAB and
Modeling Organs, Tissues, Cells and Devices: Using MATLAB and COMSOLMultiphysics. Front Cover. Socrates Dokos. Springer Berlin Heidelberg, Feb 27,
Multiphysics simulation experts contributed 750+ papers - Comsol
A Model of Noninvasive Radiofrequency Tissue Heating .. Electrical Characterization of Biological Cells on Porous Substrate Using COMSOLMultiphysics®.
Modeling of Microvascular Permeability Changes after Electroporation
Our study combines mathematical modeling (by employing agents to the targetcells) for improved predictions of in vivo cell and tissue . on all the aligned images of the acquired time series in Matlab software, the FEM model builtusing Comsol Multiphysics software (Comsol AB, Stockholm, Sweden).
Dendritic Cells Distinguish Individual Chemokine Signals through
secondary lymphoid organs. The Journal of peripheral tissues, these cells are highly motile (2), possess superior In this model, the local extracellular gradient of. CCL19 is . motactic parameters were calculated using a custom-writtenMATLAB . device were modeled using COMSOL Multiphysics.
Modeling Organs, Tissues, Cells and Devices: Using MATLAB and
Amazon.co.jp: Modeling Organs, Tissues, Cells and Devices: Using MATLABand COMSOL Multiphysics: Socrates Dokos: 洋書.
Dendritic Cells Distinguish Individual Chemokine Signals through
Using a microfluidic device, we presented single and competing In peripheraltissues, these cells are highly motile (2), possess In mice lacking CCR7, the organization of lymphoid organs is . A, Flow profiles and chemokine gradients in a microfluidic device were modeled using COMSOL Multiphysics.
PDF - In Silico Cell and Tissue Science
models using square lattices and a set of simple rules allow faster . A complete 3D microfluidic device is simulated, the geometry and element software (COMSOL Multiphysics) is used to compute the flow . MATLAB script are employed. Once the FE angiogenesis, or organ formation. With all this, it
Multiphysics Modeling Using COMSOL5 and MATLAB - PdfSR.com
COMSOL 5 and MATLAB are valuable software modeling tools for engineers Modeling Organs, Tissues, Cells and Devices: Using MATLAB and COMSOL
Modeling Organs, Tissues, Cells and Devices - Using MATLAB
Using MATLAB and COMSOL Multiphysics cardiovascular dynamics, as well as fluid-structure interaction for modelling of organs, tissues, cells and devices.
Modeling Organs, Tissues, Cells and Devices: Using Matlab and
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cells, by flow patterning the modulators of inducible BMP-2 gene expression. roles in organ development and function. Using a bone–soft tissue interface as a model, we describe a be effectively used in conjunction with microfluidicdevices to .. on finite element method (COMSOL Multiphysics v3.2,.
Modeling Organs, Tissues, Cells and Devices - Using MATLAB
Using MATLAB and COMSOL Multiphysics cardiovascular dynamics, as well as fluid-structure interaction for modelling of organs, tissues, cells and devices.
Irreversible electroporation on the small intestine
The cell ablation technique used in this study deals with a large volumes oftissue could be treated using NTIRE (Davalos et al, 2005). A commercial finite element package (Comsol Multiphysics 3.5a) was used to develop the model resulting thermal damage to the tissue, Matlab R2009b (MathWorks,
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