Proposed method for molecular optical imaging.
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Summary
Estimates of each suggest that near-field fluorescence excitation microscopy/spectroscopy with molecular sensitivity and spatial resolution is possible.
- Type
- article
- Published
- 1995-02-01
- Cited by
- 365
- References
- 12
- OpenAlex
- https://openalex.org/W1995413508
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:36002684
Keywords
Optics, Image resolution, Point spread function, Spatial frequency, Resolution (logic)
References
- Mechanical detection of magnetic resonance
- Single pentacene molecules detected by fluorescence excitation in a p-terphenyl crystal.
- Near-Field Spectroscopy of the Quantum Constituents of a Luminescent System
- Optical modification of a single impurity molecule in a solid
- Noninductive detection of single‐proton magnetic resonance
- Detection and spectroscopy of single pentacene molecules in a p‐terphenyl crystal by means of fluorescence excitation
- Stark effect on single molecules in a polymer matrix
- Single Molecules Observed by Near-Field Scanning Optical Microscopy
- Optical dephasing and photon echoes from energetically and substitutionally disordered crystals
- Position measurement with a resolution and noise‐limited instrument
- Delocalization of electronic excitations in disordered molecular systems
- Theory of Diffraction by Small Holes
Cited by
- Calcium regulation of nucleocytoplasmic transport
- The Nobel Prize in Chemistry 2014 for the development of super-resolved fluorescence microscopy
- Superresolving Imaging of Arbitrary One-Dimensional Arrays of Thermal Light Sources Using Multiphoton Interference.
- Fabrication and application of absorption-based and interference-based micropolarizers
- Single molecule detection on the cell membrane with near-field scanning optical microscopy
- Nanoparticles and Nanostructured Surfaces: Novel Reporters with Biological Applications
- Single Marker Switching Nanoscopy with 4Pi Detection: Superior Nanometric 3D Resolution
- Fluorescence nanoscopy in three dimensions
- A pragmatic guide to multiphoton microscope design
- 3D microscopy by holographic localization of Brownian metallic nanoparticles
- Single-molecule spectroscopy and microscopy
- Molecules and Methods for Super-Resolution Imaging
- Sesión científica conmemorativa de los Premio Nobel 2015 en Fisiología o Medicina y en Química
- High-Resolution Fluorescence Microscopy with Photoswitchable Fluorescent Proteins
- Single-Molecule Spectroscopy, Imaging, and Photocontrol: Foundations for Super-Resolution Microscopy (Nobel Lecture).
- Single Molecules, Cells, and Super-Resolution Optics (Nobel Lecture).
- Imaging live-cell dynamics and structure at the single-molecule level.
- A primer on the fundamental principles of light microscopy: Optimizing magnification, resolution, and contrast
- Ultrahigh-resolution multicolor colocalization of single fluorescent nanocrystals
- Localization microscopy of DNA in situ using Vybrant(®) DyeCycle™ Violet fluorescent probe: A new approach to study nuclear nanostructure at single molecule resolution.
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