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Dynamics of Engineered Artificial Membranes and Biosensors

Dynamics of Engineered Artificial Membranes and Biosensors

Tjek vores konkurrenters priser
Learn about the state of the art in building artificial membranes and synthetic biological devices, and in constructing mathematical models for their dynamics at multiple time and spatial scales with this comprehensive book. Drawing on recent advances in bioengineering and biochemistry, it describes how to engineer tethered bilayer lipid membranes, bioelectronic interfaces, high-resolution biosensors, and diagnostic devices for non-invasive cellular measurements and electroporation. Multi-physics models combining atomistic (molecular dynamics and coarse-grained molecular dynamics), mesoscopic (Poisson–Nernst–Planck), and macroscopic (reaction-rate theory) dynamics provide a complete structure-to-function description of these devices. Experiments and dynamic models explain how anti-microbial peptides penetrate membranes, how molecular machine biosensors built out of artificial membranes can detect femtomolar concentrations, and how electroporation can be controlled. Supported by atomistic simulation code online, this is essential reading for researchers, students and professionals in bioengineering, chemical engineering, biophysics, applied mathematics, and electrical engineering.
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kr 888
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20 kr
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God 4 anmeldelser på
Tjek vores konkurrenters priser
Learn about the state of the art in building artificial membranes and synthetic biological devices, and in constructing mathematical models for their dynamics at multiple time and spatial scales with this comprehensive book. Drawing on recent advances in bioengineering and biochemistry, it describes how to engineer tethered bilayer lipid membranes, bioelectronic interfaces, high-resolution biosensors, and diagnostic devices for non-invasive cellular measurements and electroporation. Multi-physics models combining atomistic (molecular dynamics and coarse-grained molecular dynamics), mesoscopic (Poisson–Nernst–Planck), and macroscopic (reaction-rate theory) dynamics provide a complete structure-to-function description of these devices. Experiments and dynamic models explain how anti-microbial peptides penetrate membranes, how molecular machine biosensors built out of artificial membranes can detect femtomolar concentrations, and how electroporation can be controlled. Supported by atomistic simulation code online, this is essential reading for researchers, students and professionals in bioengineering, chemical engineering, biophysics, applied mathematics, and electrical engineering.
Produktdetaljer
Sprog: Engelsk
Sider: 470
ISBN-13: 9781108423502
Indbinding: Hardback
Udgave:
ISBN-10: 1108423507
Udg. Dato: 3 maj 2018
Længde: 27mm
Bredde: 253mm
Højde: 181mm
Forlag: Cambridge University Press
Oplagsdato: 3 maj 2018
Forfatter(e) William Hoiles, Bruce Cornell, Vikram Krishnamurthy


Kategori Biomedicinsk teknik


ISBN-13 9781108423502


Sprog Engelsk


Indbinding Hardback


Sider 470


Udgave


Længde 27mm


Bredde 253mm


Højde 181mm


Udg. Dato 3 maj 2018


Oplagsdato 3 maj 2018


Forlag Cambridge University Press

Kategori sammenhænge