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Bio-logic: gene expression and the laws of combinatorial logic
M. Schilstra
,
C.L. Nehaniv
Biocomputation Research Group
Department of Computer Science
Centre for AI and Robotics Research
School of Physics, Engineering & Computer Science
Research output
:
Contribution to journal
›
Article
›
peer-review
23
Citations (Scopus)
70
Downloads (Pure)
Overview
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Keyphrases
Transcription Factor
100%
Combinatorial Logic
100%
Gene Expression
100%
Law
100%
Repressor
18%
Binding Site
18%
Genetic Regulatory Networks
18%
Regulatory Domain
18%
Adaptation
9%
Inhibition Type
9%
Multicellular Organism
9%
Cis-regulatory
9%
Gene Transcription
9%
Logical Modeling
9%
Boolean
9%
Transcription Regulation
9%
Fertilized Egg
9%
Regulatory Function
9%
Activation Patterns
9%
Targeted Sequencing
9%
Enzyme Kinetics
9%
Non-Boolean
9%
Factor System
9%
Signal Selection
9%
Extreme Situations
9%
Enzyme Inhibition
9%
Enzyme Activation
9%
Signal multiplexing
9%
Continuous Logic
9%
Transcription Factor Binding
9%
Biochemistry, Genetics and Molecular Biology
Gene Expression
100%
Transcription Factors
100%
Repressor
16%
Regulatory Network
16%
Binding Site
16%
Enzyme Inhibition
8%
Cellular Organism
8%
Enzyme Kinetics
8%
Enzyme Activation
8%
Messenger RNA
8%
Transcription Regulation
8%
Genetics
8%
Genetic Transcription
8%
Immunology and Microbiology
Transcription Factors
100%
Gene Expression
100%
Binding Site
16%
Repressor Gene
16%
Enzyme Inhibition
8%
Enzyme Kinetics
8%
Transcription Regulation
8%
Enzyme Activation
8%
Cellular Organism
8%
Genetic Transcription
8%