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Super-Resolution Detection of DNA Nanostructures Using a Nanopore
Kaikai Chen
, Adnan Choudhary
, Sarah E. Sandler
, Christopher Maffeo
, Caterina Ducati
,
Aleksei Aksimentiev
, Ulrich F. Keyser
Physics
Bioengineering
National Center for Supercomputing Applications (NCSA)
Beckman Institute for Advanced Science and Technology
Carl R. Woese Institute for Genomic Biology
Research output
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Keyphrases
Single Molecule
100%
Nanopore
100%
DNA Detection
100%
DNA Nanostructures
100%
Super-resolution Detection
100%
Nanostructures
66%
Label-free
66%
Electron Microscopy Imaging
66%
Multiresolution Analysis
66%
DNA Molecule
33%
DNA Sequencing
33%
Electric Field (E-field)
33%
High-resolution
33%
Spatial Resolution
33%
Biomolecules
33%
Solid-state Nanopore
33%
Surface-to-surface
33%
Biosensing
33%
Biological Processes
33%
Native State
33%
Resolution Capability
33%
Super-resolution
33%
Nanometre
33%
Electrical Sensing
33%
Gap Distance
33%
Individual Nanostructures
33%
Molecular Motor
33%
Nanopore Sensing
33%
Digital Data
33%
Information Storage
33%
Map Information
33%
Sequence Mapping
33%
Physics
High Resolution
100%
Nanomaterial
100%
DNA Nanostructure
100%
Label-Free
66%
Electron Microscopy
33%
Optical Imaging
33%
Biological Process
33%
Electric Field
33%
Engineering
Nanomaterial
100%
Nanopore
100%
High Resolution
75%
Nanometre
25%
Spatial Resolution
25%
Biosensing
25%
Biomolecule
25%
Electric Field
25%
Material Science
Nanopore
100%
Nanostructure
100%
Surface (Surface Science)
50%
Optical Imaging
25%
Electron Microscopy
25%
DNA Sequence
25%
Chemistry
Nanomaterial
100%
DNA
100%
Electric Field
25%
DNA Sequence
25%
Electron Microscopy
25%