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Physical principles of electro-mecha...
~
Brosseau, Christian.
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Physical principles of electro-mechano-biology = multiphysics and supramolecular approaches /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Physical principles of electro-mechano-biology/ by Christian Brosseau.
Reminder of title:
multiphysics and supramolecular approaches /
Author:
Brosseau, Christian.
Published:
Cham :Springer Nature Switzerland : : 2023.,
Description:
vii, 301 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Part 1. Background -- Chapter 1. Elementary concepts and definitions -- Chapter 2. A Brief Sketch of the History of EMB: Where Good Ideas Come From -- Part 2. Calculation Methods -- Chapter 3. Supramolecular Analytical Approaches of EMB -- Chapter 4. Computational approaches of EMB -- Generic Final Remarks -- Challenges Ahead.
Contained By:
Springer Nature eBook
Subject:
Electrophysiology. -
Online resource:
https://doi.org/10.1007/978-3-031-37981-9
ISBN:
9783031379819
Physical principles of electro-mechano-biology = multiphysics and supramolecular approaches /
Brosseau, Christian.
Physical principles of electro-mechano-biology
multiphysics and supramolecular approaches /[electronic resource] :by Christian Brosseau. - Cham :Springer Nature Switzerland :2023. - vii, 301 p. :ill. (some col.), digital ;24 cm. - Studies in mechanobiology, tissue engineering and biomaterials,251868-2014 ;. - Studies in mechanobiology, tissue engineering and biomaterials ;25..
Part 1. Background -- Chapter 1. Elementary concepts and definitions -- Chapter 2. A Brief Sketch of the History of EMB: Where Good Ideas Come From -- Part 2. Calculation Methods -- Chapter 3. Supramolecular Analytical Approaches of EMB -- Chapter 4. Computational approaches of EMB -- Generic Final Remarks -- Challenges Ahead.
This book covers the recently developed understanding of Electro-Mechano-Biology (EMB) in which the focus is primarily on the couplings between the electric and mechanical fields. The emphasis lies on the analytical and computational aspects of EMB at the cellular level. The book is divided into two parts. In the first part, the author starts by defining and discussing the relevant basic aspects of the electrical and mechanical properties of cell membranes. He provides an overview of some of the ways analytical modelling of cell membrane electrodeformation (ED) and electroporation (EP) appears in a variety of contexts as well as a contemporary account of recent developments in computational approaches that can feature in the theory initiative, particularly in its attempt to describe the cohort of activities currently underway. Intended to serve as an introductory text and aiming to facilitate the understanding of the field to non-experts, this part does not dwell on the set of topics, such as cellular mechanosensing and mechanotransduction, irreversible EP, and atomistic molecular dynamics modelling of membrane EP. The second (and larger) part of the book is devoted to a presentation of the necessary analytical and computational tools to illustrate the ideas behind EMB and illuminate physical insights. Brief notes on the history of EMB and its many applications describing the variety of ideas and approaches are also included. In this part, the background of the first principles and practical calculation methods are discussed to highlight aspects that cannot be found in a single volume.
ISBN: 9783031379819
Standard No.: 10.1007/978-3-031-37981-9doiSubjects--Topical Terms:
665572
Electrophysiology.
LC Class. No.: QP341
Dewey Class. No.: 572.437
Physical principles of electro-mechano-biology = multiphysics and supramolecular approaches /
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Part 1. Background -- Chapter 1. Elementary concepts and definitions -- Chapter 2. A Brief Sketch of the History of EMB: Where Good Ideas Come From -- Part 2. Calculation Methods -- Chapter 3. Supramolecular Analytical Approaches of EMB -- Chapter 4. Computational approaches of EMB -- Generic Final Remarks -- Challenges Ahead.
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This book covers the recently developed understanding of Electro-Mechano-Biology (EMB) in which the focus is primarily on the couplings between the electric and mechanical fields. The emphasis lies on the analytical and computational aspects of EMB at the cellular level. The book is divided into two parts. In the first part, the author starts by defining and discussing the relevant basic aspects of the electrical and mechanical properties of cell membranes. He provides an overview of some of the ways analytical modelling of cell membrane electrodeformation (ED) and electroporation (EP) appears in a variety of contexts as well as a contemporary account of recent developments in computational approaches that can feature in the theory initiative, particularly in its attempt to describe the cohort of activities currently underway. Intended to serve as an introductory text and aiming to facilitate the understanding of the field to non-experts, this part does not dwell on the set of topics, such as cellular mechanosensing and mechanotransduction, irreversible EP, and atomistic molecular dynamics modelling of membrane EP. The second (and larger) part of the book is devoted to a presentation of the necessary analytical and computational tools to illustrate the ideas behind EMB and illuminate physical insights. Brief notes on the history of EMB and its many applications describing the variety of ideas and approaches are also included. In this part, the background of the first principles and practical calculation methods are discussed to highlight aspects that cannot be found in a single volume.
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Physics and Astronomy (SpringerNature-11651)
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