Micro And Nano Systems For Biophysical Studies Of Cells And Small Organisms
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Author |
: Xinyu Liu |
Publisher |
: Academic Press |
Total Pages |
: 406 |
Release |
: 2021-08-14 |
ISBN-10 |
: 9780128242438 |
ISBN-13 |
: 0128242434 |
Rating |
: 4/5 (38 Downloads) |
Synopsis Micro and Nano Systems for Biophysical Studies of Cells and Small Organisms by : Xinyu Liu
Micro and Nano Systems for Biophysical Studies of Cells and Small Organisms provides a comprehensive introduction to the state-of-the-art micro and nano systems that have recently been developed and applied to biophysical studies of cells and small organisms. These micro and nano systems span from microelectromechanical systems (MEMS) and microfluidic devices to robotic micro-nanomanipulation systems. These biophysical studies range from cell mechanics to the neural science of worms and Drosophila. This book will help readers understand the fundamentals surrounding the development of these tools and teach them the most recent advances in cellular and organismal biophysics enabled by these technologies. - Comprehensive coverage of micro and nano-system technology and application to biophysical studies of cells and small organisms. - Highlights the most recent advances in cellular and organismal biophysics enabled by micro and nano systems. - Insightful outlook on future directions and trends in each chapter covering a sub-area of the book topic.
Author |
: National Research Council |
Publisher |
: National Academies Press |
Total Pages |
: 171 |
Release |
: 1999-09-13 |
ISBN-10 |
: 9780309172745 |
ISBN-13 |
: 0309172748 |
Rating |
: 4/5 (45 Downloads) |
Synopsis Size Limits of Very Small Microorganisms by : National Research Council
How small can a free-living organism be? On the surface, this question is straightforward-in principle, the smallest cells can be identified and measured. But understanding what factors determine this lower limit, and addressing the host of other questions that follow on from this knowledge, require a fundamental understanding of the chemistry and ecology of cellular life. The recent report of evidence for life in a martian meteorite and the prospect of searching for biological signatures in intelligently chosen samples from Mars and elsewhere bring a new immediacy to such questions. How do we recognize the morphological or chemical remnants of life in rocks deposited 4 billion years ago on another planet? Are the empirical limits on cell size identified by observation on Earth applicable to life wherever it may occur, or is minimum size a function of the particular chemistry of an individual planetary surface? These questions formed the focus of a workshop on the size limits of very small organisms, organized by the Steering .Group for the Workshop on Size Limits of Very Small Microorganisms and held on October 22 and 23, 1998. Eighteen invited panelists, representing fields ranging from cell biology and molecular genetics to paleontology and mineralogy, joined with an almost equal number of other participants in a wide-ranging exploration of minimum cell size and the challenge of interpreting micro- and nano-scale features of sedimentary rocks found on Earth or elsewhere in the solar system. This document contains the proceedings of that workshop. It includes position papers presented by the individual panelists, arranged by panel, along with a summary, for each of the four sessions, of extensive roundtable discussions that involved the panelists as well as other workshop participants.
Author |
: National Research Council |
Publisher |
: National Academies Press |
Total Pages |
: 171 |
Release |
: 1999-10-13 |
ISBN-10 |
: 9780309066341 |
ISBN-13 |
: 0309066344 |
Rating |
: 4/5 (41 Downloads) |
Synopsis Size Limits of Very Small Microorganisms by : National Research Council
How small can a free-living organism be? On the surface, this question is straightforward-in principle, the smallest cells can be identified and measured. But understanding what factors determine this lower limit, and addressing the host of other questions that follow on from this knowledge, require a fundamental understanding of the chemistry and ecology of cellular life. The recent report of evidence for life in a martian meteorite and the prospect of searching for biological signatures in intelligently chosen samples from Mars and elsewhere bring a new immediacy to such questions. How do we recognize the morphological or chemical remnants of life in rocks deposited 4 billion years ago on another planet? Are the empirical limits on cell size identified by observation on Earth applicable to life wherever it may occur, or is minimum size a function of the particular chemistry of an individual planetary surface? These questions formed the focus of a workshop on the size limits of very small organisms, organized by the Steering .Group for the Workshop on Size Limits of Very Small Microorganisms and held on October 22 and 23, 1998. Eighteen invited panelists, representing fields ranging from cell biology and molecular genetics to paleontology and mineralogy, joined with an almost equal number of other participants in a wide-ranging exploration of minimum cell size and the challenge of interpreting micro- and nano-scale features of sedimentary rocks found on Earth or elsewhere in the solar system. This document contains the proceedings of that workshop. It includes position papers presented by the individual panelists, arranged by panel, along with a summary, for each of the four sessions, of extensive roundtable discussions that involved the panelists as well as other workshop participants.
Author |
: Stefaan Verbruggen |
Publisher |
: Academic Press |
Total Pages |
: 530 |
Release |
: 2018-08-09 |
ISBN-10 |
: 9780128129531 |
ISBN-13 |
: 0128129530 |
Rating |
: 4/5 (31 Downloads) |
Synopsis Mechanobiology in Health and Disease by : Stefaan Verbruggen
Mechanobiology in Health and Disease brings together contributions from leading biologists, clinicians, physicists and engineers in one convenient volume, providing a unified source of information for researchers in this highly multidisciplinary area. Opening chapters provide essential background information on cell mechanotransduction and essential mechanobiology methods and techniques. Other sections focus on the study of mechanobiology in healthy systems, including bone, tendons, muscles, blood vessels, the heart and the skin, as well as mechanobiology studies of pregnancy. Final chapters address the nascent area of mechanobiology in disease, from the study of bone conditions, skin diseases and heart diseases to cancer. A discussion of future perspectives for research completes each chapter in the volume. This is a timely resource for both early-career and established researchers working on mechanobiology. - Provides an essential digest of primary research from many fields and disciplines in one convenient volume - Covers both experimental approaches and descriptions of mechanobiology problems from mathematical and numerical perspectives - Addresses the hot topic of mechanobiology in disease, a particularly dynamic field of frontier science
Author |
: C. Ross Ethier |
Publisher |
: Cambridge University Press |
Total Pages |
: 10 |
Release |
: 2007-03-12 |
ISBN-10 |
: 9781139461825 |
ISBN-13 |
: 1139461826 |
Rating |
: 4/5 (25 Downloads) |
Synopsis Introductory Biomechanics by : C. Ross Ethier
Introductory Biomechanics is a new, integrated text written specifically for engineering students. It provides a broad overview of this important branch of the rapidly growing field of bioengineering. A wide selection of topics is presented, ranging from the mechanics of single cells to the dynamics of human movement. No prior biological knowledge is assumed and in each chapter, the relevant anatomy and physiology are first described. The biological system is then analyzed from a mechanical viewpoint by reducing it to its essential elements, using the laws of mechanics and then tying mechanical insights back to biological function. This integrated approach provides students with a deeper understanding of both the mechanics and the biology than from qualitative study alone. The text is supported by a wealth of illustrations, tables and examples, a large selection of suitable problems and hundreds of current references, making it an essential textbook for any biomechanics course.
Author |
: Thomas Laurell |
Publisher |
: Royal Society of Chemistry |
Total Pages |
: 593 |
Release |
: 2014-12-08 |
ISBN-10 |
: 9781849737067 |
ISBN-13 |
: 1849737061 |
Rating |
: 4/5 (67 Downloads) |
Synopsis Microscale Acoustofluidics by : Thomas Laurell
The manipulation of cells and microparticles within microfluidic systems using external forces is valuable for many microscale analytical and bioanalytical applications. Acoustofluidics is the ultrasound-based external forcing of microparticles with microfluidic systems. It has gained much interest because it allows for the simple label-free separation of microparticles based on their mechanical properties without affecting the microparticles themselves. Microscale Acoustofluidics provides an introduction to the field providing the background to the fundamental physics including chapters on governing equations in microfluidics and perturbation theory and ultrasound resonances, acoustic radiation force on small particles, continuum mechanics for ultrasonic particle manipulation, and piezoelectricity and application to the excitation of acoustic fields for ultrasonic particle manipulation. The book also provides information on the design and characterization of ultrasonic particle manipulation devices as well as applications in acoustic trapping and immunoassays. Written by leading experts in the field, the book will appeal to postgraduate students and researchers interested in microfluidics and lab-on-a-chip applications.
Author |
: |
Publisher |
: |
Total Pages |
: 130 |
Release |
: 1996 |
ISBN-10 |
: CORNELL:31924084693286 |
ISBN-13 |
: |
Rating |
: 4/5 (86 Downloads) |
Synopsis Biomedical Technology Resources by :
Author |
: Barry Leonard |
Publisher |
: DIANE Publishing |
Total Pages |
: 93 |
Release |
: 1998-08 |
ISBN-10 |
: 9780788141874 |
ISBN-13 |
: 0788141872 |
Rating |
: 4/5 (74 Downloads) |
Synopsis Biomedical Technology Resources by : Barry Leonard
Promotes access to a network of biomedical technology resource centers throughout the nation. These centers make state-of-the-art technologies & methods available to thousands of biomedical investigators each year. The directory is organized into scientific areas: biomedical computing, biochemical materials, biomedical engineering, non-invasive imaging & spectroscopy, & cellular & molecular structure & function. Each entry includes the principal investigator & control person, the research being conducted, & capabilities of the resource that are available to outside investigators.
Author |
: Lorenzo Fassina |
Publisher |
: Frontiers Media SA |
Total Pages |
: 169 |
Release |
: 2024-05-28 |
ISBN-10 |
: 9782832549582 |
ISBN-13 |
: 2832549586 |
Rating |
: 4/5 (82 Downloads) |
Synopsis Cells, Biomaterials, and Biophysical Stimuli for Bone, Cartilage, and Muscle Regeneration, volume II by : Lorenzo Fassina
This Research Topic is Volume II of the article collection, Cells, Biomaterials, and Biophysical Stimuli for Bone, Cartilage, and Muscle Regeneration Over the last few years, a variety of tissue engineering strategies have been developed to improve the regeneration of bone, cartilage, and skeletal muscle. Numerous studies have proven that physical factors (external mechanical forces, and biomaterials’ features), as well as biochemical factors, may induce cells to reprogram their functions and dynamically adapt to the cellular microenvironment conditions. The advances in understanding the role of biophysical cues in the stem cells microenvironment point out the importance of their application in biomedicine and biotechnology to drive and modulate cell behavior for therapeutic purposes. In this context, many efforts are dedicated to design different strategies to engineer the physical aspects of the natural cellular microenvironment. The development of these technologies may be useful for identifying and studying the physical factors and help to clarify their downstream mechanisms to control cell behavior. This Research Topic will promote an overview of recent advances and cutting-edge approaches based on primary cells, stem cells, extracellular vesicles (EVs), biomaterial scaffolds, bioreactors, biophysical stimuli (e.g., mechanical forces, electromagnetic waves), and biochemical cues. All research involving one or more of the aforementioned cells and methods is welcome to elucidate new basic-research findings (e.g., molecular insights, biochemical pathways toward regeneration) and possible new clinical strategies (e.g., bioreactors for cell factories). An interdisciplinary design (e.g., biology/biochemistry plus bioengineering) is very welcome.
Author |
: |
Publisher |
: |
Total Pages |
: 742 |
Release |
: 1989 |
ISBN-10 |
: UOM:39015014022886 |
ISBN-13 |
: |
Rating |
: 4/5 (86 Downloads) |
Synopsis Research Awards Index by :