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Book Low Temperature Biological Microscopy and Microanalysis

Download or read book Low Temperature Biological Microscopy and Microanalysis written by Patrick Echlin and published by . This book was released on 1978 with total page 311 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Low Temperature Microscopy and Analysis

Download or read book Low Temperature Microscopy and Analysis written by Patrick Echlin and published by Springer Science & Business Media. This book was released on 2013-11-11 with total page 553 pages. Available in PDF, EPUB and Kindle. Book excerpt: The frozen-hydrated specimen is the principal element that unifies the subject of low temperature microscopy, and frozen-hydrated specimens are what this book is all about. Freezing the sample as quickly as possible and then further preparing the specimen for microscopy or microanalysis, whether still embedded in ice or not: there seem to be as many variations on this theme as there are creative scientists with problems of structure and composition to investigate. Yet all share a body of com mon fact and theory upon which their work must be based. Low-Temperature Micros copy and Analysis provides, for the first time, a comprehensive treatment of all the elements to which one needs access. What is the appeal behind the use of frozen-hydrated specimens for biological electron microscopy, and why is it so important that such a book should now have been written? If one cannot observe dynamic events as they are in progress, rapid specimen freezing at least offers the possibility to trap structures, organelles, macro molecules, or ions and other solutes in a form that is identical to what the native structure was like at the moment of trapping. The pursuit of this ideal becomes all the more necessary in electron microscopy because of the enormous increase in resolution that is available with electron-optical instruments, compared to light optical microscopes.

Book Low Temperature Biological Microscopy

Download or read book Low Temperature Biological Microscopy written by Patrick Echlin and published by . This book was released on 1977 with total page 320 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Low Temperature Methods in Biological Electron Microscopy

Download or read book Low Temperature Methods in Biological Electron Microscopy written by Anthony William Robards and published by Elsevier Publishing Company. This book was released on 1985 with total page 584 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Low Temperature Methods in Biological Electron Microscopy

Download or read book Low Temperature Methods in Biological Electron Microscopy written by A. W. Robards and published by . This book was released on 1985 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Biological Low Voltage Scanning Electron Microscopy

Download or read book Biological Low Voltage Scanning Electron Microscopy written by James Pawley and published by Springer Science & Business Media. This book was released on 2007-12-03 with total page 323 pages. Available in PDF, EPUB and Kindle. Book excerpt: Major improvements in instrumentation and specimen preparation have brought SEM to the fore as a biological imaging technique. Although this imaging technique has undergone tremendous developments, it is still poorly represented in the literature, limited to journal articles and chapters in books. This comprehensive volume is dedicated to the theory and practical applications of FESEM in biological samples. It provides a comprehensive explanation of instrumentation, applications, and protocols, and is intended to teach the reader how to operate such microscopes to obtain the best quality images.

Book Cryotechniques in Biological Electron Microscopy

Download or read book Cryotechniques in Biological Electron Microscopy written by Rudolf A. Steinbrecht and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 308 pages. Available in PDF, EPUB and Kindle. Book excerpt: To preserve tissue by freezing is an ancient concept going back pre sumably to the practice of ice-age hunters. At first glance, it seems as simple as it is attractive: the dynamics of life are frozen in, nothing is added and nothing withdrawn except thermal energy. Thus, the result should be more life-like than after poisoning, tan ning and drying a living cell as we may rudely call the conventional preparation of specimens for electron microscopy. Countless mishaps, however, have taught electron microscopists that cryotechniques too are neither simple nor necessarily more life-like in their outcome. Not too long ago, experts in cryotechniques strictly denied that a cell could truly be vitrified, i.e. that all the solutes and macro molecules could be fixed within non-crystalline, glass-like solid water without the dramatic shifts and segregation effects caused by crystallization. We now know that vitrification is indeed pos sible. Growing insight into the fundamentals of the physics of water and ice, as well as increasing experience of how to cool cells rapidly enough have enlivened the interest in cryofixation and pro duced a wealth of successful applications.

Book Biomedical Electron Microscopy

Download or read book Biomedical Electron Microscopy written by Arvid B. Maunsbach and published by Elsevier. This book was released on 1998-11-03 with total page 548 pages. Available in PDF, EPUB and Kindle. Book excerpt: This comprehensive reference illustrates optimal preparation methods in biological electron microscopy compared with common methodological problems. Not only will the basic methodologies of transmission electron microscopy like fixation, microtomy, and microscopy be presented, but the authors also endeavor to illustrate more specialized techniques such as negative staining, autoradiography, cytochemistry, immunoelectron microscopy, and computer-assisted image analysis. Authored by the key leaders in the biological electron microscopy field Illustrates both optimal and suboptimal or artifactual results in a variety of electron microscopy disciplines Introduces students on how to read and interpret electron micrographs

Book Biomedical Applications of Microprobe Analysis

Download or read book Biomedical Applications of Microprobe Analysis written by Peter Ingram and published by Academic Press. This book was released on 1999-10-29 with total page 545 pages. Available in PDF, EPUB and Kindle. Book excerpt: Biomedical Applications of Microprobe Analysis is a combination reference/laboratory manual for the use of microprobe analysis in both clinical diagnostic and research settings. Also called microchemical microscopy, microprobe analysis uses high-energy bombardment of cells and tissue, in combination with high resolution EM or confocal microscopy to provide a profile of the ion, metal, and mineral concentrations present in a sample. This allows insight into the physiology and pathophysiology of a wide variety of cells and tissues. This book describes methods for obtaining detailed information about the identity and composition of particles too small to be seen with the naked eye and describes how this information can be useful in diagnostic and biomedical research. Up-to-date review of electron microprobe analysis Detailed descriptions of sample preparation techniques Recent technologies including confocal microscopy, infrared microspectroscopy, and laser raman spectroscopy Over 100 illustrations with numerous specific applications Contributions by world-renowned experts in the field Brief summary of highlights precedes each chapter

Book Ultrastructure Techniques for Microorganisms

Download or read book Ultrastructure Techniques for Microorganisms written by H.C. Aldrich and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 540 pages. Available in PDF, EPUB and Kindle. Book excerpt: The modem microbiologist is often a real specialist who has difficulty under standing and applying many of the techniques beyond those in his or her own immediate field. On the other hand, most benefits to modem microbiology are obtained when a broad spectrum of scientific approaches can be focused on a problem. In early studies, electron microscopy was pivotal in understanding bacterial and viral morphology, and we still feel that we will understand a disease better if we have seen an electron micrograph of the causative agent. Today, because there is an increased awareness of the need to understand the rela tionships between microbial structure and function, the electron microscope is still one of the most important tools microbiologists can use for detailed analysis of microorganisms. Often, however, the aforementioned modem microbiologist still thinks of ultrastructure as involving negative staining or ultrathin sectioning in order to get a look at the shape of a "bug. " Many of the newer ultrastructure techniques, such as gold-labeled antibody localization, freeze-fracture, X-ray microanalysis, enzyme localization, and even scanning electron microscopy, are poorly under stood by, and therefore forbidding to, the average microbiologist. Even many cell biologists admit to having difficulty staying in touch with current develop ments in the fast-moving field of electron microscopy techniques.

Book Low Temperature Ashing for Elemental Sensitivity Enhancement and Quantitative Analysis in Biological Ion Microscopy

Download or read book Low Temperature Ashing for Elemental Sensitivity Enhancement and Quantitative Analysis in Biological Ion Microscopy written by James Thomas Brenna and published by . This book was released on 1985 with total page 334 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Physical Methods in Plant Sciences

Download or read book Physical Methods in Plant Sciences written by Hans-Ferdinand Linskens and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 301 pages. Available in PDF, EPUB and Kindle. Book excerpt: Latest techniques for the analysis of plant cell or tissue structure and the registration of physiological pathways are topics of this volume. The subjects include: - Laser Doppler Vibrometer Measurements of Leaves; - Laster Physical Methods. Laser Microprobe Mass Spectrometry; - Triplet States in Photosynthesis: Linear Dichroic Optical Difference Spectra via Magnetic Resonance; - Fast Atom Bombardment Mass Spectrometry; -Microdissection and Biochemical Analysis of Plant Tissues; - Photoacoustic Spectroscopy - Photoacoustic and Photothermal Effects; - Membrane Operational Impedance of Spectra of Plant Cell.

Book Food Freezing

    Book Details:
  • Author : William B. Bald
  • Publisher : Springer Science & Business Media
  • Release : 2012-12-06
  • ISBN : 144713446X
  • Pages : 207 pages

Download or read book Food Freezing written by William B. Bald and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 207 pages. Available in PDF, EPUB and Kindle. Book excerpt: Food Freezing: Today and Tomorrow represents the contributions of the invited speakers to an advanced study seminar held by the Institute for Applied Biology of the University of York during April 1990. The main objective of the seminar was to bring together food scientists and engineers to discuss their mutual problems and to seek new directions for possible solutions.

Book Advances in Low Temperature Biology

Download or read book Advances in Low Temperature Biology written by P.L. Steponkus and published by Elsevier. This book was released on 1996-12-17 with total page 322 pages. Available in PDF, EPUB and Kindle. Book excerpt: Advances in Low-Temperature Biology

Book Introduction to Analytical Electron Microscopy

Download or read book Introduction to Analytical Electron Microscopy written by John Hren and published by Springer Science & Business Media. This book was released on 2013-11-11 with total page 609 pages. Available in PDF, EPUB and Kindle. Book excerpt: The birth of analytical electron microscopy (AEM) is somewhat obscure. Was it the recognition of the power and the development of STEM that signaled its birth? Was AEM born with the attachment of a crystal spectrometer to an otherwise conventional TEM? Or was it born earlier with the first analysis of electron loss spectra? It's not likely that any of these developments alone would have been sufficient and there have been many others (microdiffraction, EDS, microbeam fabrication, etc.) that could equally lay claim to being critical to the establishment of true AEM. It is probably more accurate to simply ascribe the present rapid development to the obvious: a combination of ideas whose time has come. Perhaps it is difficult to trace the birth of AEM simply because it remains a point of contention to even define its true scope. For example, the topics in this book, even though very broad, are still far from a complete description of what many call AEM. When electron beams interact with a solid it is well-known that a bewildering number of possible interactions follow. Analytical electron microscopy attempts to take full qualitative and quantitative advantage of as many of these interactions as possible while still preserving the capability of high resolution imaging. Although we restrict ourselves here to electron transparent films, much of what is described applies to thick specimens as well. Not surprisingly, signals from all possible interactions cannot yet (and probably never will) be attained simultaneously under optimum conditions.

Book Principles of Analytical Electron Microscopy

Download or read book Principles of Analytical Electron Microscopy written by Joseph Goldstein and published by Springer Science & Business Media. This book was released on 2013-11-11 with total page 458 pages. Available in PDF, EPUB and Kindle. Book excerpt: Since the publication in 1979 of Introduction to Analytical Electron Microscopy (ed. J. J. Hren, J. I. Goldstein, and D. C. Joy; Plenum Press), analytical electron microscopy has continued to evolve and mature both as a topic for fundamental scientific investigation and as a tool for inorganic and organic materials characterization. Significant strides have been made in our understanding of image formation, electron diffraction, and beam/specimen interactions, both in terms of the "physics of the processes" and their practical implementation in modern instruments. It is the intent of the editors and authors of the current text, Principles of Analytical Electron Microscopy, to bring together, in one concise and readily accessible volume, these recent advances in the subject. The text begins with a thorough discussion of fundamentals to lay a foundation for today's state-of-the-art microscopy. All currently important areas in analytical electron microscopy-including electron optics, electron beam/specimen interactions, image formation, x-ray microanalysis, energy-loss spectroscopy, electron diffraction and specimen effects-have been given thorough attention. To increase the utility of the volume to a broader cross section of the scientific community, the book's approach is, in general, more descriptive than mathematical. In some areas, however, mathematical concepts are dealt with in depth, increasing the appeal to those seeking a more rigorous treatment of the subject.

Book Electron Microscopy of Plant Cells

Download or read book Electron Microscopy of Plant Cells written by C Hawes and published by Academic Press. This book was released on 2012-12-02 with total page 477 pages. Available in PDF, EPUB and Kindle. Book excerpt: Electron Microscopy of Plant Cells serves as manual or reference of major modern techniques used to prepare plant material for transmission and scanning electron microscopy. There have been other books that generally discuss electron microscope methodology. This book focuses on problem areas encountered through the presence of tough cell walls and large central vacuole. It details preparative techniques for botanical specimens. Each of the nine chapters of this book covers the basic principles, useful applications, and reliable procedures used on the method of electron microscopy. Other topics discussed in each chapter include the general preparation and straining of thin sections, quantitative morphological analysis, and enzyme cytochemistry. This book also explains the immunogold labelling, rapid-freezing methods, and ambient- and low-temperature scanning electron microscopy among others. This book will be invaluable to general scientists, biologists, botanists, and students specializing in plant anatomy.