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DNA computing circuits using libraries of DNAzyme subunits
Johann Elbaz
, Oleg Lioubashevski
, Fuan Wang
, Françoise Remacle
, Raphael D. Levine
, Itamar Willner
*
*
Corresponding author for this work
Hebrew University of Jerusalem
University of Liege
Research output
:
Contribution to journal
›
Article
›
peer-review
404
Scopus citations
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Dive into the research topics of 'DNA computing circuits using libraries of DNAzyme subunits'. Together they form a unique fingerprint.
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Keyphrases
DNAzyme
100%
DNA Computing
100%
Nanomedicine
50%
DNA Sequencing
50%
Biological Systems
50%
Gene Regulation
50%
RNA Enzyme
50%
Active Components
50%
Bioengineering
50%
Automata
50%
Biomolecules
50%
Aptamer
50%
Logic Gates
50%
Parallel Logic
50%
Controlled Expression
50%
Antisense
50%
Enzyme-mediated
50%
Computational Operations
50%
Logic Gate Operation
50%
Computing Element
50%
Half-subtractor
50%
Logic Control
50%
Fan-out
50%
Modular Coupling
50%
Universal Sets
50%
Half Adder
50%
Catalytic nucleic Acids
50%
Dynamic Assembly
50%
Computational Platform
50%
Engineering
Bioengineering
100%
Biological System
100%
Logic Gate
100%
Biomolecule
100%
Nanomedicine
100%
Active Component
100%
Adders
100%
And Logic Gate
100%
Control Logic
100%
Computer Science
dna computing
100%
Logic Gate
100%
Automaton
50%
Biological System
50%
And Gate
50%
Computing Element
50%
Half Adder
50%
Gate Operation
50%
Subtractor
50%
Biochemistry, Genetics and Molecular Biology
Enzyme
100%
Gene Expression
50%
Nucleic Acid
50%
RNA Gene
50%
DNA RNA Hybridization
50%
Aptamer
50%
Material Science
Electronic Circuit
100%
Nucleic Acid
33%
Gene Expression
33%
Chemical Engineering
Nanomedicine
100%