图书简介
This volume looks at the methodology and techniques used by experts to study how certain molecules function in specific locations, and their temporal patterns. Chapters in this book cover *ics such as in vivo single-molecule tracking of voltage-gated calcium channels with split-fluorescent proteins in CRISPR-engineering C. elegans; protein-protein interactions in membranes using single particle tracking; neuropathological diseases revealed by quantum-dot single particle tracking; SPoD-OnSPAN; and investigating molecular diffusion inside small neuronal compartments with two-photon fluorescence correlation spectroscopy. In the Neuromethods series style, chapters include the kind of detail and key advice from the specialists needed to get successful results in your laboratory.
Cutting-edge and comprehensive, Single Molecule Microscopy is a valuable resource for any researcher interested in learning more about this important field.
Single Molecule Imaging of Intracellular Transport in Neurons and Non-Neuronal Cells: From Microscope Optics to Sample Preparations.- In Vivo Single-Molecule Tracking of Voltage-Gated Calcium Channels with Split-Fluorescent Proteins in CRISPR-Engineered C. elegans.- Nanocores and Liquid Droplets: Single-Molecule Microscopy of Neuronal Stress Granule Components.- Live-Cell Single-Molecule Imaging with Optogenetics Reveals Dynamics of an Activity-Dependent Transcription Factor.- Single-Molecule Imaging of Recycling Synaptic Vesicles in Live Neurons.- Approaching Protein?Protein Interactions in Membranes using Single Particle Tracking and Packing Coefficient Analysis.- Synaptic Function and Neuropathological Disease Revealed by Quantum-Dot Single Particle Tracking.- Multipolarization Darkfield Imaging of Single Endosomes in Microfluidic Neuronal Culture for Simultaneous Orientation and Displacement Tracking.- Practical Guidelines for Two-Color SMLM of Synaptic Proteins in Cultured Neurons.- Single-Molecule Localization Microscopy Propelled by Small Organic Fluorophores with Blinking Properties.- Highly-Biocompatible Super-Resolution Imaging: SPoD-OnSPAN.- Nanoscale Molecular Imaging of Presynaptic Active Zone Proteins in Cultured Hippocampal Neurons.- Three Dimensional Super-Resolution Imaging of the Cytoskeleton in Hippocampal Neurons using Selective Plane Illumination.- A Protocol for Single Molecule Translation Imaging in Xenopus Retinal Ganglion Cells.- Investigating Molecular Diffusion Inside Small Neuronal Compartments with Two-Photon Fluorescence Correlation Spectroscopy.
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