Nanoscale Imaging Methods and Protocols /
| Autor Corporativo: | |
|---|---|
| Outros Autores: | |
| Resumo: | XIX, 600 p. 176 illus., 170 illus. in color. text  | 
| Idioma: | inglês | 
| Publicado em: | 
        New York, NY :
          Springer New York : Imprint: Humana,
    
        2018.
     | 
| Edição: | 1st ed. 2018. | 
| coleção: | Methods in Molecular Biology,
              1814             | 
| Assuntos: | |
| Acesso em linha: | https://doi.org/10.1007/978-1-4939-8591-3 | 
| Formato: | Recurso Eletrônico Livro | 
                Sumário: 
            
                  - High Resolution Atomic Force Microscopy Imaging of Nucleic Acids
 - Two Ligand Binding Sites in Serotonin Transporter Revealed by Nanopharmacological Force Sensing
 - AFM-Based Single-Molecule Force-Spectroscopy of Proteins
 - High Resolution AFM-Based Force Spectroscopy
 - Polymer Nanoarray Approach for the Characterization of Biomolecular Interactions
 - Measuring Single-Molecule Twist and Torque in Multiplexed Magnetic Tweezers
 - AFM-Based Characterization of Electrical Properties of Materials
 - Supported Lipid Bilayers for Atomic Force Microscopy Studies
 - Quantifying Small Molecule Binding Interactions with DNA Nanostructures
 - Optimum Substrates for Imaging Biological Molecules with High-Speed Atomic Force Microscopy
 - High Resolution and High-Speed Atomic Force Microscope Imaging
 - High-Speed Atomic Force Microscopy of Individual Amyloidogenic Protein Assemblies
 - Direct Observation of Dynamic Movement of DNA Moleculesin DNA Origami Imaged using High-Speed AFM
 - Assembly of Centromere Chromatin for Characterization By High-Speed Time-Lapse Atomic Force Microscopy
 - High-Speed Force Spectroscopy for Single Protein Unfolding
 - Probing RNA-Protein Interactions with Single-Molecule Pull-Down Assays
 - Preparing Frozen-Hydrated Protein-Nucleic Acid Assemblies for High-Resolution Cryo-EM Imaging
 - Probing Chromatin Structure with Magnetic Tweezers
 - Single Molecule and Ensemble Methods to Probe Initial Stages of RNP Granule Assembly
 - Correlative Atomic Force and Single Molecule Fluorescence Microscopy of Nucleoprotein Complexes
 - Sensing the Ultrastructure of Bacterial Surfaces and their Molecular Binding Forces using AFM
 - Nanoscale Visualization of Bacterial Microcompartments using Atomic Force Microscopy
 - Time-Resolved Imaging of Bacterial Surfaces using Atomic Force Microscopy
 - Probing Bacterial Adhesion at the Single-Molecule and Single-Cell Levelsby AFM-Based Force Spectroscopy
 - Fluorescence Correlation Spectroscopy on Genomic DNA in Living Cells
 - Three-Dimensional Tracking of Quantum Dot-Conjugated Molecules in Living Cells
 - AFM Indentation Analysis of Cells to Study Cell Mechanics and Pericellular Coat
 - Imaging of Soft and Biological Samples using AFM Ringing Mode
 - Probing Single Virus Binding Sites on Living Mammalian Cells using AFM
 - Applications of Atomic Force Microscopy for Adhesion Force Measurements in Mechanotransduction
 - Methods for Atomic Force Microscopy of Biological and Living Specimens
 - Single Molecule Imaging in Live Embryos using Lattice Light-Sheet Microscopy
 - Silver Filler Pre-Embedding to Enhance Resolution and Contrast in Multidimensional SEM: A Nanoscale Imaging Study on Liver Tissue
 - Nanoscale Dynamics and Energetics of Proteins and Protein-Nucleic Acid Complexes in Classical Molecular Dynamics Simulations.