All-Optical Methods to Study Neuronal Function [Internet]
- PMID: 38285811
- Bookshelf ID: NBK599188
- DOI: 10.1007/978-1-0716-2764-8
All-Optical Methods to Study Neuronal Function [Internet]
Copyright 2023, The Editor(s) (if applicable) and The Author(s). This book is an open access publication.
Sections
- Preface to the Series
- Preface
- Contributors
- 1. Optical Manipulation and Recording of Neural Activity with Wavefront Engineering
- 2. Balancing the Fluorescence Imaging Budget for All-Optical Neurophysiology Experiments
- 3. Light-Based Neuronal Circuit Probing in Living Brains at High Resolution: Constraints and Layouts for Integrating Neuronal Activity Recording and Modulation in Three Dimensions
- 4. High-Speed All-Optical Neural Interfaces with 3D Temporally Focused Holography
- 5. An All-Optical Physiology Pipeline Toward Highly Specific and Artifact-Free Circuit Mapping
- 6. Spatial and Temporal Considerations of Optogenetic Tools in an All-Optical Single-Beam Experiment
- 7. Miniature Multiphoton Microscopes for Recording Neural Activity in Freely Moving Animals
- 8. Optogenetics and Light-Sheet Microscopy
- 9. Widefield Multiphoton Imaging at Depth with Temporal Focusing
- 10. High-Speed Neural Imaging with Synaptic Resolution: Bessel Focus Scanning Two-Photon Microscopy and Optical-Sectioning Widefield Microscopy
- 11. Optical and Analytical Methods to Visualize and Manipulate Cortical Ensembles and Behavior
- 12. Illuminating Neural Computation Using Precision Optogenetics-Controlled Synthetic Perception
- 13. Spectrally Focused Stimulated Raman Scattering (sf-SRS) Microscopy for Label-Free Investigations of Molecular Mechanisms in Living Organisms
Publication types
LinkOut - more resources
Full Text Sources