Light Microscopy [E-Book] : Methods and Protocols / edited by Yolanda Markaki, Hartmann Harz.
This volume addresses up-to-date light microscopy approaches and toolsets offered for live- or fixed-cell observations. The imaging strategies discussed in this book include confocal laser scanning and spinning disk confocal microscopy, FRET, FRAP, and laser microsurgery experiments. Chapters also d...
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Full text |
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Personal Name(s): | Harz, Hartmann, editor |
Markaki, Yolanda, editor | |
Imprint: |
New York, NY :
Humana Press,
2017
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Physical Description: |
XI, 285 p. 73 illus., 62 illus. in color. online resource. |
Note: |
englisch |
ISBN: |
9781493968107 |
DOI: |
10.1007/978-1-4939-6810-7 |
Series Title: |
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Methods in molecular biology ;
1563 |
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Classification: |
- Introduction to Modern Methods in Light Microscopy
- Three-Dimensional Live Imaging of Filamentous Fungi with Light Sheet-Based Fluorescence Microscopy (LSFM)
- Light-Sheet Fluorescence Microscopy: Chemical Clearing and Labeling Protocols for Ultramicroscopy
- Two-Photon Intravital Microscopy Animal Preparation Protocol to Study Cellular Dynamics in Pathogenesis
- Imaging of Brain Slices with a Genetically Encoded Voltage Indicator
- FRET Microscopy for Real-Time Visualization of Second Messengers in Living Cells
- Imaging the Dynamics of Cell Wall Polymer Deposition in the Unicellular Model Plant, Penium margaritaceum
- Targeted Ablation Using Laser Nanosurgery
- Sample Preparation and Choice of Fluorophores for Single and Dual Color Photo-Activated Localization Microscopy (PALM) with Bacterial Cells
- STED Imaging in Drosophila Brain Slices
- Two-Color Total Internal Refection Fluorescence Microscopy of Exocytosis in Endocrine Cells
- Optical Coherence Microscopy
- Designing Image Analysis Pipelines in Light Microscopy: A Rationale Approach
- Automated Analysis of Intracellular Dynamic Processes
- Quantitative Image Analysis of Single-Molecule mRNA Dynamics in Living Cells
- Analysis of Protein Kinetics using Fluorescence Recovery After Photobleaching (FRAP)
- Fluorescence Based High-Throughput and Targeted Image Acquisition and Analysis for Phenotypic Screening.