Simulations in Nanobiotechnology
Editat de Kilho Eomen Limba Engleză Paperback – 18 sep 2018
Presenting the simulation-based nanoscale characterizations in biological science, Part 1:
- Describes recent efforts in MD simulation-based characterization and CG modeling of DNA and protein transport dynamics in the nanopore and nanochannel
- Presents recent advances made in continuum mechanics-based modeling of membrane proteins
- Summarizes theoretical frameworks along with atomistic simulations in single-molecule mechanics
- Provides the computational simulation-based mechanical characterization of protein materials
- Describes advances in nature-inspired material design; atomistic simulation-based characterization of nanoparticles’ optical properties; and nanoparticle-based applications in therapeutics
- Overviews of the recent advances made in experiment and simulation-based characterizations of nanoscale adhesive properties
- Suggests theoretical frameworks with experimental efforts in the development of nanoresonators for future nanoscale device designs
- Delineates advances in theoretical and computational methods for understanding the mechanical behavior of a graphene monolayer
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Specificații
ISBN-13: 9781138374379
ISBN-10: 1138374377
Pagini: 564
Ilustrații: 226
Dimensiuni: 156 x 234 mm
Greutate: 1.04 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
ISBN-10: 1138374377
Pagini: 564
Ilustrații: 226
Dimensiuni: 156 x 234 mm
Greutate: 1.04 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
Cuprins
Introduction. Molecular Dynamics of Protein Translocation. Coarse-Grained Modeling of DNA Translocation through Nanopore. Atomistic Simulation of Auger Process in Nanoparticle-Based Theragnostics. Coarse-Grained Modeling of CNT-DNA Interaction. Molecular Dynamics of CNT-DNA Interaction. Modeling of CNT-DNA Hybrid Complex. Coarse-Grained Modeling of Nano-Cantilever-Based DNA Detection. Coarse-Grained Modeling of Micro- or Nano-Cantilever Sensors for Atomistic Detection. Continuum Modeling of CNT -Based Molecular Recognitions. Multi-Scale Modeling of Nanowire Resonator Sensors. Cauchy-Born Rule for Modeling Graphene Sheet. Coarse-Grained Modeling of Single-Molecule Experiments. Coarse-Grained Modeling of Protein Dynamics. Molecular Dynamics Simulation of Protein Mechanics. Continuum Modeling of Large Protein Complex. Modeling of Biomimetic Adhesive.
Notă biografică
Dr. Kilho Eom received a Ph.D. degree from the University of Texas at Austin in 2005. Between 2005 and 2008, he was a research scientist (2005-2007) and senior research scientist (2008) at Korea Institute of Science and Technology. Since 2008, he has been a research professor in the Department of Mechanical Engineering in Korea University. He has expertise in nanomechanics, and nanoscale physics of various objects ranging from biological molecules and cells to nanomaterials. He has served the editorial board member for ISRN Computational Mathematics.
Descriere
Until recently, computational studies of biomolecules and nanomaterials have considered the two subjects separately. This book provides insights into computational simulations of biomolecules and nanomaterials collectively. It also examines novel modeling concepts at the nano-bio-interface: interactions between biomolecules and nanomaterials, such as DNA-wrapped nanotubes, nanobiosensors, and biomimetic materials. Expert contributors from around the world address such important topics as the molecular dynamics of protein translocation, coarse-grained modeling of CNT-DNA interaction, multi-scale modeling of nanowire resonator sensors, and the molecular dynamics simulation of protein mechanics.