Skip to main navigation
Skip to search
Skip to main content
Teesside University's Research Portal Home
Search content at Teesside University's Research Portal
Home
Profiles
Research units
TeesRep
Student theses
Projects
Datasets
Equipment
Press/Media
Design and strain selection criteria for bacterial communication networks
Claudio Angione
, Giovanni Carapezza
, Jole Costanza
, Pietro Lió
, Giuseppe Nicosia
Research output
:
Contribution to journal
›
Article
›
peer-review
1
Link opens in a new tab
Citation (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Design and strain selection criteria for bacterial communication networks'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Escherichia Coli
100%
Geobacter Sulfurreducens
100%
Selection Criteria
100%
Communication Networks
100%
Optimization Methodology
100%
Network Communication
100%
Bacterial Communication
100%
Strain Selection
100%
Intracellular Signaling
100%
Design Selection
100%
Bacterial Strains
50%
Metabolic Network
50%
Flux Balance Analysis
50%
Genetic Design
50%
Synthetic Biology
50%
Optimization Procedure
50%
Multi-objective Optimization
50%
Metabolic
50%
Signaling Pathway
50%
Electric Properties
50%
Energy Production
50%
Information Processing
50%
Horizontal Gene Transfer
50%
Methodological Challenges
50%
Electric
50%
Motility
50%
Biofilm
50%
Mobilome
50%
Route Network
50%
Biochemical Networks
50%
MG1655
50%
Network Scheme
50%
Biomass Growth
50%
Bacteria Motility
50%
Gene Coding
50%
Nano Communication Networks
50%
Genome-scale
50%
Biomass Trade
50%
Nanowires
50%
Communication Design
50%
Overall Survival
50%
Bacterial Networks
50%
Message Exchange
50%
Processing Design
50%
Cell Division
50%
Data Challenge
50%
Desiderata
50%
In-network Computing
50%
Flagellates
50%
Optimal Tradeoff
50%
DNA Replication
50%
Network Bandwidth
50%
Biofilm Bacteria
50%
Biochemistry, Genetics and Molecular Biology
Escherichia coli
100%
Genetics
100%
Biofilm
100%
Metabolic Pathway
50%
Signal Transduction
50%
Energy Yield
50%
DNA Synthesis
50%
Horizontal Gene Transfer
50%
Molecular Wire
50%
Overall Survival
50%
Cell Division
50%
Bacterial Strain
50%
Flagellate
50%
Immunology and Microbiology
Escherichia coli
100%
Biofilm
100%
Bacterial Strain
50%
Signal Transduction
50%
Energy Yield
50%
Horizontal Gene Transfer
50%
DNA Synthesis
50%
Flagellate
50%
Cell Division
50%
Overall Survival
50%
Pharmacology, Toxicology and Pharmaceutical Science
Escherichia coli
100%
Molecular Wire
50%
Overall Survival
50%
Horizontal Gene Transfer
50%
Flagellate
50%