Keyphrases
Public Health Impact
100%
Ecological Modelling
100%
Yersinia Enterocolitica
100%
Molecular Epidemiology
100%
Core Genome multilocus Sequence Typing (cgMLST)
71%
Ningxia
57%
Pathogenicity
57%
Sequence Type
42%
Pathogenic Isolates
42%
Random Forest Regression
28%
Gastroenteritis
28%
Ningxia Hui Autonomous Region
28%
Core Genes
28%
China
14%
High Risk
14%
Single nucleotide Polymorphism
14%
Gene Polymorphism
14%
Detection Rate
14%
ANOVA Test
14%
T-test
14%
Intervention Strategies
14%
Non-pathogenic
14%
Food Animals
14%
Disease Outbreaks
14%
Public Health Risk
14%
Clustering Results
14%
Molecular Characteristics
14%
Human Animals
14%
Poultry
14%
High-risk Areas
14%
Machine Learning Algorithms
14%
Result Prediction
14%
Hamster
14%
Public Health Interventions
14%
General Linear Model
14%
Livestock
14%
Ecological Traits
14%
Chi-square Test
14%
Identification System
14%
Statistical Test
14%
Molecular Profile
14%
Geographical Variation
14%
Ecological Factors
14%
Pig Farm
14%
Whole Genome Sequencing
14%
Serological Test
14%
Yersinia
14%
Human Clinical Samples
14%
Average nucleotide Identity
14%
16S rDNA PCR
14%
Biochemical Identification
14%
Epidemiological Approach
14%
Health Surveillance
14%
Wilcoxon Rank Sum Test
14%
Diarrhea Patients
14%
Multiple Factor Analysis
14%
Extreme Gradient Boosting
14%
API 20E
14%
Molecular Epidemiological Characteristics
14%
Dominant Sequences
14%
Bioserotype
14%
Biochemistry, Genetics and Molecular Biology
Random Forest
100%
Yersinia enterocolitica
100%
Multilocus Sequence Typing
100%
Single-Nucleotide Polymorphism
50%
16S Ribosomal RNA
50%
Factor Analysis
50%
Relatedness
50%
Chi-Square Testing
50%
Whole Genome Sequencing
50%
Yersinia
50%
Serology
50%
Mann-Whitney U Test
50%
Statistical Test
50%
Immunology and Microbiology
Pathogenicity
100%
Yersinia enterocolitica
100%
Molecular Epidemiology
100%
Random Forest
50%
Enterocolitis
50%
Multilocus Sequence Typing
50%
Single Nucleotide Polymorphism
25%
Yersinia
25%
Whole Genome Sequencing
25%
Serology
25%
Food Science
Nutrition Policy
100%
Yersinia
100%
Analysis of Variance
33%
Polymerase Chain Reaction
33%
Genome Sequencing
33%