The Resource Biophotonics, edited by Gerard Marriott, Ian Parker. Pt. A, (electronic resource)

Biophotonics, edited by Gerard Marriott, Ian Parker. Pt. A, (electronic resource)

Label
Biophotonics
Title
Biophotonics
Statement of responsibility
edited by Gerard Marriott, Ian Parker. Pt. A
Contributor
Subject
Genre
Language
  • eng
  • eng
Summary
The critically acclaimed laboratory standard for more than forty years, Methods in Enzymology is one of the most highly respected publications in the field of biochemistry. Since 1955, each volume has been eagerly awaited, frequently consulted, and praised by researchers and reviewers alike. Now with more than 300 volumes (all of them still in print), the series contains much material still relevant today?truly an essential publication for researchers in all fields of life sciences.* Discusses optical instrumentation for imaging, screening and diagnosis in molecules, tissues, an
Member of
Is Subseries of
Cataloging source
MiAaPQ
Dewey number
  • 572.6
  • 572.7
Illustrations
illustrations
Index
index present
Language note
English
LC call number
QP601
LC item number
.B56 2003
Literary form
non fiction
Nature of contents
  • dictionaries
  • bibliography
http://library.link/vocab/relatedWorkOrContributorDate
1951-
http://library.link/vocab/relatedWorkOrContributorName
  • Marriott, Gerard
  • Parker, Ian
Series statement
Methods in enzymology
Series volume
v. 360, Part A
http://library.link/vocab/subjectName
  • Enzymology
  • Proteins
Label
Biophotonics, edited by Gerard Marriott, Ian Parker. Pt. A, (electronic resource)
Instantiates
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Front Cover; METHODS IN ENZYMOLOGY EDITORS-IN-CHIEF; Copyright Page; Table of Contents; Contributors to Volume 360; Preface; Volumes in Series; Chapter 1. Fluorescence: Basic Concepts, Practical Aspects, and Some Anecdotes; Chapter 2. Fluorescence-Sensing Methods; Chapter 3. Bioluminescence and Chemiluminescence; Chapter 4. Fluorescent Amino Acid Analogs; Chapter 5. Fluorescent Nucleotides: Synthesis and Characterization; Chapter 6. Photophysics of Green and Red Fluorescent Proteins: Implications for Quantitative Microscopy
  • Chapter 7. Development of Genetically Encoded Fluorescent Indicators for CalciumChapter 8. Development and Application of Caged Calcium; Chapter 9. Application of Fluorescent Probes to Study Mechanics and Dynamics of Ca2+-Triggered Synaptotagmin C2 Domain-Membrane Interactions; Chapter 10. Caging Proteins through Unnatural Amino Acid Mutagenesis; Chapter 11. Preparation and Light-Directed Activation of Caged Proteins; Chapter 12. Bioluminescence Resonance Energy Transfer: Monitoring Protein-Protein Interactions in Living Cells; Chapter 13. Structure-Function Relationships in Metalloproteins
  • Chapter 14. Spectroscopy and Microscopy of Cells and Cell Membrane SystemsChapter 15. Photonics for Biologists; Chapter 16. Imaging at Low Light Levels with Cooled and Intensified Charge-Coupled Device Cameras; Chapter 17. Filters and Mirrors for Applications in Fluorescence Microscopy; Chapter 18. Resolution in Optical Microscopy; Chapter 19. Video-Rate Confocal Microscopy; Chapter 20. Giant Vesicles, Laurdan, and Two-Photon Fluorescence Microscopy: Evidence of Lipid Lateral Separation in Bilayers; Chapter 21. Biological Near-Field Microscopy
  • Chapter 22. Fluorescence Lifetime-Resolved Imaging: Measuring Lifetimes in an ImageChapter 23. Fluorescence Resonance Energy Transfer Imaging Microscopy; Chapter 24. Fluorescence Resonance Energy Transfer Imaging Microscopy and Fluorescence Polarization Imaging Microscopy; Chapter 25. Homo-FRET versus Hetero-FRET to Probe Homodimers in Living Cells; Chapter 26. Spinning Disk Confocal Microscope System for Rapid High-Resolution, Multimode, Fluorescence Speckle Microscopy and Green Fluorescent Protein Imaging in Living Cells; Chapter 27. Single-Particle Tracking Image Microscopy
  • Chapter 28. Diffusion in Cells Measured by Fluorescence Recovery after PhotobleachingChapter 29. Fluorophore-Assisted Light Inactivation for Multiplex Analysis of Protein Function in Cellular Processes; Author Index; Subject Index
Dimensions
unknown
Extent
1 online resource (751 p.)
Form of item
online
Isbn
9780080522586
Media category
computer
Media type code
c
Specific material designation
remote
System control number
  • (EBL)298403
  • (OCoLC)437182487
  • (SSID)ssj0000112235
  • (PQKBManifestationID)11142585
  • (PQKBTitleCode)TC0000112235
  • (PQKBWorkID)10087006
  • (PQKB)10656197
  • (MiAaPQ)EBC298403
  • (EXLCZ)991000000000364487
Label
Biophotonics, edited by Gerard Marriott, Ian Parker. Pt. A, (electronic resource)
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Front Cover; METHODS IN ENZYMOLOGY EDITORS-IN-CHIEF; Copyright Page; Table of Contents; Contributors to Volume 360; Preface; Volumes in Series; Chapter 1. Fluorescence: Basic Concepts, Practical Aspects, and Some Anecdotes; Chapter 2. Fluorescence-Sensing Methods; Chapter 3. Bioluminescence and Chemiluminescence; Chapter 4. Fluorescent Amino Acid Analogs; Chapter 5. Fluorescent Nucleotides: Synthesis and Characterization; Chapter 6. Photophysics of Green and Red Fluorescent Proteins: Implications for Quantitative Microscopy
  • Chapter 7. Development of Genetically Encoded Fluorescent Indicators for CalciumChapter 8. Development and Application of Caged Calcium; Chapter 9. Application of Fluorescent Probes to Study Mechanics and Dynamics of Ca2+-Triggered Synaptotagmin C2 Domain-Membrane Interactions; Chapter 10. Caging Proteins through Unnatural Amino Acid Mutagenesis; Chapter 11. Preparation and Light-Directed Activation of Caged Proteins; Chapter 12. Bioluminescence Resonance Energy Transfer: Monitoring Protein-Protein Interactions in Living Cells; Chapter 13. Structure-Function Relationships in Metalloproteins
  • Chapter 14. Spectroscopy and Microscopy of Cells and Cell Membrane SystemsChapter 15. Photonics for Biologists; Chapter 16. Imaging at Low Light Levels with Cooled and Intensified Charge-Coupled Device Cameras; Chapter 17. Filters and Mirrors for Applications in Fluorescence Microscopy; Chapter 18. Resolution in Optical Microscopy; Chapter 19. Video-Rate Confocal Microscopy; Chapter 20. Giant Vesicles, Laurdan, and Two-Photon Fluorescence Microscopy: Evidence of Lipid Lateral Separation in Bilayers; Chapter 21. Biological Near-Field Microscopy
  • Chapter 22. Fluorescence Lifetime-Resolved Imaging: Measuring Lifetimes in an ImageChapter 23. Fluorescence Resonance Energy Transfer Imaging Microscopy; Chapter 24. Fluorescence Resonance Energy Transfer Imaging Microscopy and Fluorescence Polarization Imaging Microscopy; Chapter 25. Homo-FRET versus Hetero-FRET to Probe Homodimers in Living Cells; Chapter 26. Spinning Disk Confocal Microscope System for Rapid High-Resolution, Multimode, Fluorescence Speckle Microscopy and Green Fluorescent Protein Imaging in Living Cells; Chapter 27. Single-Particle Tracking Image Microscopy
  • Chapter 28. Diffusion in Cells Measured by Fluorescence Recovery after PhotobleachingChapter 29. Fluorophore-Assisted Light Inactivation for Multiplex Analysis of Protein Function in Cellular Processes; Author Index; Subject Index
Dimensions
unknown
Extent
1 online resource (751 p.)
Form of item
online
Isbn
9780080522586
Media category
computer
Media type code
c
Specific material designation
remote
System control number
  • (EBL)298403
  • (OCoLC)437182487
  • (SSID)ssj0000112235
  • (PQKBManifestationID)11142585
  • (PQKBTitleCode)TC0000112235
  • (PQKBWorkID)10087006
  • (PQKB)10656197
  • (MiAaPQ)EBC298403
  • (EXLCZ)991000000000364487

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