Keyphrases
Machine Learning
100%
Heavy Metals
100%
Heavy Metal Contaminated Soil
100%
Phytoremediation
100%
Hyperaccumulator
66%
Phytoextraction Efficiency
50%
Metal Properties
50%
Plant Families
33%
Metal Ions
16%
Metallothionein
16%
Soil Properties
16%
Gene Expression
16%
Threonine
16%
Metal Accumulation
16%
Plant Characteristics
16%
Natural Resistance-associated Macrophage Protein 1 (NRAMP1)
16%
Phytoextraction
16%
ATP Synthase
16%
Soil Characteristics
16%
Bioconcentration Factor
16%
Machine Learning Approach
16%
Interpretable Machine Learning
16%
Machine Learning Analysis
16%
Malate
16%
Remediation Mechanism
16%
Plant Genes
16%
Ion Radius
16%
Metal Extraction Ratio
16%
Simple Linear Model
16%
Crassulaceae
16%
Remediation Time
16%
Low-molecular-weight Organic Acid (LMWOA)
16%
Agricultural and Biological Sciences
Phytoremediation
100%
Polluted Soils
100%
Heavy Metal
100%
Hyperaccumulator
44%
Soil Quality
11%
ATPase
11%
Crassulaceae
11%
Plant Characteristics
11%
Soil Property
11%
Macrophage
11%
Linear Models
11%
Bioaccumulation
11%
Extraction Ratio
11%
Threonine
11%
Metallothionein
11%
Chemical Engineering
Heavy Metal
100%
Learning System
100%
Organic Acid
11%
Biochemistry, Genetics and Molecular Biology
Phytoremediation
100%
Plant Gene
11%
Metal Extraction
11%
Macrophage
11%
Secretion (Process)
11%
Molecular Weight
11%
Bioaccumulation
11%
Crassulaceae
11%
ATPase
11%
Threonine
11%
Metallothionein
11%
Immunology and Microbiology
Phytoremediation
100%
Macrophage
11%
Molecular Weight
11%
Bioaccumulation
11%
Secretion (Process)
11%
Metal Extraction
11%
Plant Gene
11%
Crassulaceae
11%
Threonine
11%
Metallothionein
11%
Material Science
Heavy Metal
100%
Macrophage
11%
Gene Encoding
11%
Metallothionein
11%
Threonine
11%