STED Microscopy

GPTKB entity

Statements (64)
Predicate Object
gptkbp:instance_of gptkb:Research_Institute
gptkbp:bfsLayer 5
gptkbp:bfsParent gptkb:Super-resolution_Microscopy
gptkbp:allows sample preparation
photobleaching
gptkbp:analyzes lipid rafts
subcellular structures
nuclear structures
gptkbp:applies_to biological imaging
gptkbp:based_on stimulated emission
gptkbp:developed_by gptkb:Stefan_W._Hell
fluorescence microscopy
gptkbp:enables super-resolution imaging
gptkbp:enhances signal-to-noise ratio
https://www.w3.org/2000/01/rdf-schema#label STED Microscopy
gptkbp:improves gptkb:technology
gptkbp:is_a optical imaging technique
gptkbp:is_analyzed_in cytoskeletal dynamics
drug interactions
viral infections
cellular architecture
cellular responses
disease mechanisms
cellular interactions
cellular stress responses
protein localization
protein aggregation
molecular distances
gptkbp:is_challenged_by sample thickness
background fluorescence
phototoxicity
gptkbp:is_compared_to confocal microscopy
gptkbp:is_compatible_with live cell imaging
gptkbp:is_enhanced_by advanced fluorophores
gptkbp:is_explored_in cellular signaling pathways
intracellular signaling
biomolecular complexes
gptkbp:is_influenced_by quantum dots
single-molecule imaging
gptkbp:is_observed_in synaptic structures
gptkbp:is_part_of super-resolution microscopy techniques
gptkbp:is_recognized_by gptkb:Nobel_Prize_in_Chemistry
gptkbp:is_studied_in cellular processes
gene expression
metabolic processes
neurotransmitter release
membrane dynamics
cell migration
protein interactions
cellular heterogeneity
gptkbp:is_supported_by image processing techniques
computational methods
gptkbp:is_used_in materials science
cell biology
neuroscience
gptkbp:map cellular compartments
gptkbp:requires specialized equipment
high laser power
gptkbp:resolution below 50 nm
gptkbp:symbolizes nanomaterials
gptkbp:track molecular movements
gptkbp:uses fluorescent molecules
gptkbp:utilizes doughnut-shaped laser beam
gptkbp:year_created gptkb:2000