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Bacterial communities at airport assessed by high-throughput sequencing
Irina Tsitko
,
Satu Salo
,
Ilpo Kulmala
, Johanna Maukonen
VTT (former employee or external)
Research output
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Dive into the research topics of 'Bacterial communities at airport assessed by high-throughput sequencing'. Together they form a unique fingerprint.
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Keyphrases
Bacterial Community
100%
High-throughput Sequencing
100%
Airport
100%
Bacterial Population
80%
Firmicutes
40%
Infectious Diseases
40%
Phylum Actinobacteria
40%
Good Quality
20%
Microbial Community
20%
Microorganisms
20%
Alphaproteobacteria
20%
Bacterial Count
20%
Quantitative PCR
20%
16S rRNA Gene
20%
Proteobacteria
20%
Sequence Data
20%
Bayesian Classifier
20%
Global Transport
20%
Prevention Methods
20%
Mothur
20%
Air Travel
20%
Specific Tools
20%
Response Plan
20%
Disease Outbreaks
20%
Sampling Time
20%
Contact Surface
20%
Bacterial Phyla
20%
Ion Torrent
20%
Hub Airport
20%
Clostridium
20%
Actinobacteria
20%
Number of Passengers
20%
Bacillus
20%
Genus Level
20%
Rapid Tools
20%
Human-related
20%
Population Profiles
20%
Bacterial Community Profile
20%
Contaminated Surfaces
20%
Amplicon Library
20%
INIS
communities
100%
airports
100%
surfaces
83%
sampling
66%
populations
66%
passengers
50%
levels
33%
diseases
33%
infectious diseases
33%
tools
16%
microorganisms
16%
data
16%
dynamics
16%
environment
16%
libraries
16%
genes
16%
computer codes
16%
monitoring
16%
transport
16%
air
16%
humans
16%
phenotype
16%
bacillus
16%
pcr
16%
clostridium
16%
travel
16%
Immunology and Microbiology
Bacterial Population
100%
High Throughput Sequencing
100%
Phylum
100%
Actinobacteria
75%
Firmicutes
50%
Bacterial Phyla
25%
Real-Time Polymerase Chain Reaction
25%
Dynamics
25%
RNA Gene
25%
Alphaproteobacteria
25%
Proteobacteria
25%
Amplicon
25%
Microorganism
25%
Clostridium
25%
Agricultural and Biological Sciences
Bacterial Communities
100%
Actinobacteria
100%
Firmicutes
66%
Microorganism
33%
Phylotype
33%
Microbial Community
33%
Amplicon
33%
Purple Bacteria
33%
Ribosomal RNA
33%
Air Transportation
33%
Clostridium
33%
Real-Time Polymerase Chain Reaction
33%