June 17, 2021

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Integrated Nano-Biomechanics

Integrated Nano-Biomechanics
Author : Takami Yamaguchi,Takuji Ishikawa,Yohsuke Imai
Publisher : William Andrew
Release Date : 2018-06-27
Category : Medical
Total pages :314
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Integrated Nano-Biomechanics provides an integrated look into the rapidly evolving field of nanobiomechanics. The book demystifies the processes in living organisms at the micro- and nano-scale through mechanics, using theoretical, computational and experimental means. The book develops the concept of integrating different technologies along the hierarchical structure of biological systems and clarifies biomechanical interactions among different levels for the analysis of multi-scale pathophysiological phenomena. With a focus on nano-scale processes and biomedical applications, it is shown how knowledge obtained can be utilized in a range of areas, including diagnosis and treatment of various human diseases and alternative energy production. This book is based on collaboration of researchers from a unique combination of fields, including biomechanics, computational mechanics, GPU application, electron microscopy, biology of motile micro-organisms, entomological mechanics and clinical medicine. The book will be of great interest to scientists and researchers involved in disciplines, such as micro- and nano-engineering, bionanotechnology, biomedical engineering, micro- and nano-scale fluid-mechanics (such as in MEMS devices), nanomedicine and microbiology, as well as industries such as optical devices, computer simulation, plant based energy sources and clinical diagnosis of the gastric diseases. Provides knowledge of integrated biomechanics, focusing on nano-scale, in this rapidly growing research field Explains how the different technologies can be integrated and applied in a variety of biomedical application fields, as well as for alternative energy sources Uses a collaborative, multidisciplinary approach to provide a comprehensive coverage of nano-biomechanics

The World of Nano-Biomechanics

The World of Nano-Biomechanics
Author : Atsushi Ikai
Publisher : Elsevier
Release Date : 2007-11-02
Category : Science
Total pages :300
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By using nanotechnological methods, we can now poke around protein molecules, genes, membranes, cells and more. Observation of such entities through optical and electron microscopes tempt us to touch and manipulate them. It is now possible to do so, and scientists around the world have started pulling, pushing and cutting small structures at the base of life processes to understand the effect of our hand work. The book describes the physical properties of such life supporting structures from the molecular level with a special emphasis on their designs based on the mechanical strength and flexibility, membrane and other biological nanostructures. - Describes the basic mechanical features of proteins, DNA, cell membrane and other biological nanostructures - Explains the basic concepts and mathematics of elementary mechanics needed to understand and perform experimental work

Biomolecular Catalysis

Biomolecular Catalysis
Author : Jungbae Kim,Seong H. Kim,Ping Wang
Publisher : Amer Chemical Society
Release Date : 2008
Category : Science
Total pages :423
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This symposium series volume provides up-to-date reviews on synthesis, characterization, and applications of nanostructured systems in biocatalytic processes. The first part of the book describes the use of various nanostructures, including nanoporous materials, nanotubes, nanofibers and nanoparticles, and composite materials for biocatalysis. These chapters demonstrate the current frontier exploration and the most popular structures for nanobiocatalysis. The second part of the book illustrates potential applications of nanoscale biocatalysts in heterogeneous catalysis, biosensors, energy conversion, reaction engineering, and nano-transport. Nanostructured materials are currently a hot research topic with many academic, industrial, and government laboratories doing basic and applied R&D. Amalgamating these materials and biomolecular catalysts provide unprecedented capabilities in developing new functional materials that can be utilized in heterogeneous catalytic reactions, biodetection, energy harvesting, drug synthesis and delivery.

Kinematic Alignment System for the Creation of Integrated Microfluidic Devices

Kinematic Alignment System for the Creation of Integrated Microfluidic Devices
Author : Christine Ann Trinkle
Publisher : Unknown
Release Date : 2008
Category :
Total pages :264
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Advances in Nucleic Acid and Protein Analyses, Manipulation, and Sequencing

Advances in Nucleic Acid and Protein Analyses, Manipulation, and Sequencing
Author : Society of Photo-optical Instrumentation Engineers,International Biomedical Optics Society
Publisher : Society of Photo Optical
Release Date : 2000
Category : Technology & Engineering
Total pages :242
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Research Centers Directory

Research Centers Directory
Author : Anonim
Publisher : Unknown
Release Date : 2010
Category : Learned institutions and societies
Total pages :129
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Research institutes, foundations, centers, bureaus, laboratories, experiment stations, and other similar nonprofit facilities, organizations, and activities in the United States and Canada. Entry gives identifying and descriptive information of staff and work. Institutional, research centers, and subject indexes. 5th ed., 5491 entries; 6th ed., 6268 entries.

Silicon Based Co-integrated Bioelectrical and Biomechanical Interfaces

Silicon Based Co-integrated Bioelectrical and Biomechanical Interfaces
Author : Ching-Ping Janet Shen
Publisher : Unknown
Release Date : 2012
Category :
Total pages :330
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Biosensors have been extremely important in revolutionizing healthcare and environmental monitoring. In combination with Microelectromechanical Systems (MEMS) devices, biological systems can be probed on similar micro and nano dimensions. This can provide a better understanding of how biological systems function and allow for improved treatment methods for diseases and other maladies. However, there are still key limitations in advancing biosensor technology. One of the limitations is biological integration of sensors with tissue for robust interfaces that minimally damage the tissue and can be used in long-term implantations. In this dissertation, three projects are presented where strategies have been used and developed to minimize biosensor invasiveness. Ultrasonic horn probes driven at their longitudinal resonances can allow penetration of tough tissue, such as cardiac tissue or the dura layer surrounding the brain. For cardiac tissue, ultrasonic probes can allow study of the onset of arrhythmias in 3D. A model governing the force reduction propertions of ultrasonic horn probes dependent on driving voltage, insertion velocity, and substrate elasticity is presented to guide design and use of ultrasonic horn probes in a variety of tissues. The first three-dimensional recordings of action potential propagation during ischemia are obtained. The results show the change in activation delay, action potential duration, action potential amplitude, and morphology through the tissue thickness with ischemia. Secondly, based on the ultrasonic horn design, a new miniature neural interface system is introduced. This system can allow study of probe insertion force effects on long-term reactions, stress fields around the inserted probes, and changes in electrode impedance and electrical activity from nearby cells over time. Thirdly, a new hybrid insect olfactory sensor system for gas sensing is presented, which uses Early Metamorphosis Insertion Technology (EMIT) to achieve probe integration. The presented olfactory sensor is based on a silicon neural electrode and is shown to monitor responses to pheromone components and the host plant of the insect, Manduca sexta. The probe sensor is lightweight enough to be carried on the moths. In the context of these projects, wireless system designs and implementations are presented that allow portability and parallel recording from the tissue. The first system presented is used for wireless transmission of cardiac action potentials, and the second is designed for multiplexed wireless transmission of neural signals. By making the probe and data collection systems fully wireless, wire-induced stresses on probes integrated with tissue can be reduced and serve to reduce damage to the tissues.

International Research Centers Directory

International Research Centers Directory
Author : Anonim
Publisher : Unknown
Release Date : 2009
Category : Research
Total pages :129
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"A world guide to government, university, independent nonprofit, and commercial research and development centers, institutes, laboratories, bureaus, test facilities, experiment stations, and data collection and analysis centers, as well as foundations, councils and other organizations which support research," [1992/93-].

Journal of Biomechanical Engineering

Journal of Biomechanical Engineering
Author : Anonim
Publisher : Unknown
Release Date : 2009
Category : Bioengineering
Total pages :129
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Health Monitoring and Smart Nondestructive Evaluation of Structural and Biological Systems

Health Monitoring and Smart Nondestructive Evaluation of Structural and Biological Systems
Author : Anonim
Publisher : Unknown
Release Date : 2004
Category : Detectors
Total pages :129
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Tissue Engineering

Tissue Engineering
Author : Anonim
Publisher : Unknown
Release Date : 2008
Category : Biomedical engineering
Total pages :129
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ASEE Directory of Graduate Engineering and Research Statistics

ASEE Directory of Graduate Engineering and Research Statistics
Author : Anonim
Publisher : Unknown
Release Date : 1998
Category : Engineering
Total pages :129
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Japanese Journal of Applied Physics

Japanese Journal of Applied Physics
Author : Anonim
Publisher : Unknown
Release Date : 2006
Category : Physics
Total pages :129
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Dissertation Abstracts International

Dissertation Abstracts International
Author : Anonim
Publisher : Unknown
Release Date : 2008
Category : Dissertations, Academic
Total pages :129
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Study on Metal Embedded Thin Film Micro/nano Photonic and Electronic Sensors

Study on Metal Embedded Thin Film Micro/nano Photonic and Electronic Sensors
Author : Xugang Zhang
Publisher : Unknown
Release Date : 2008
Category :
Total pages :121
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