Neuroscience
Neurotrauma
100%
Oxidative Stress
100%
Traumatic Brain Injury
100%
Programmed Cell Death
100%
Neuroprotective Agent
27%
Antioxidant
27%
Real-Time Polymerase Chain Reaction
18%
Caspase 3
18%
Transcription Factor Nrf2
18%
Messenger RNA
18%
In Vivo
9%
Staining Technique
9%
Bcl-2
9%
Cell Line
9%
Elevated Plus Maze
9%
Hydrogen Peroxide
9%
In Vitro
9%
Protein Expression
9%
Cell Viability
9%
Motor Coordination
9%
Allodynia
9%
Blood Brain Barrier
9%
Immunohistochemistry
9%
Immunology and Microbiology
Oxidative Stress
100%
Programmed Cell Death
100%
Quantitative Reverse Transcription Polymerase Chain Reaction
50%
Transcription Factor Nrf2
50%
Caspase
50%
Protein Expression
25%
Hydrogen Peroxide
25%
Cell Line
25%
Blood Brain Barrier
25%
down Regulation
25%
mRNA Expression Level
25%
Cell Viability
25%
Bcl-2
25%
Motor Coordination
25%
Agricultural and Biological Sciences
Daidzein
100%
Programmed Cell Death
100%
Oxidative Stress
100%
Antioxidant
27%
Messenger RNA
18%
Real-Time Polymerase Chain Reaction
18%
Caspase 3
18%
Cell Line
9%
Phytoestrogen
9%
Spectral Analysis
9%
Cell Viability
9%
Immunohistochemistry
9%
Blood-Brain Barrier
9%
Neuroprotective Effect
9%
Pharmacology, Toxicology and Pharmaceutical Science
Daidzein
100%
Experimental Traumatic Brain Injury
100%
Neuroprotective Agent
27%
Antioxidant
27%
Antiapoptotic
18%
Transcription Factor Nrf2
18%
Caspase 3
18%
Traumatic Brain Injury
18%
Messenger RNA
18%
Cell Viability
9%
Hydrogen Peroxide
9%
Mechanical Allodynia
9%
Phytoestrogen
9%
Blood-Brain Barrier
9%
Tolonium Chloride
9%
Food Science
Antioxidant
100%
Quantitative Reverse Transcription Polymerase Chain Reaction
66%
Transcription Factor Nrf2
66%