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Basic radiobiological investigations of fast neutrons
F. Q.H. Ngo
, C. B. Schroy
, X. L. Jia
, I. Kalvakolanu
, W. K. Roberts
, J. W. Blue
, A. R. Antunez
, P. D. Higgins
, M. Teft
Research output
:
Contribution to journal
›
Article
›
peer-review
10
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Scopus citations
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Keyphrases
Fast Neutrons
100%
Irradiation
100%
Fast Neutron Beam
100%
Relative Biological Effectiveness
100%
DNA Double-strand Breaks
66%
Cell Killing
66%
Neutron Beam
66%
Double-strand Break
66%
Survivors
33%
Molecular Mechanism
33%
Chinese Hamster Ovary Cells
33%
Neutron
33%
Radiation Effects
33%
Non-denaturing
33%
Cells in Culture
33%
Condensation Method
33%
G1 Phase
33%
Biological Significance
33%
Multi-step Process
33%
Chromosomal Aberrations
33%
Mutation Frequency
33%
Single-strand Breaks
33%
Four Generations
33%
Large Components
33%
Survival Curve
33%
Hydroxylapatite
33%
Post-irradiation
33%
Cyclotron
33%
Radiation Dose
33%
Hypoxanthine-guanine Phosphoribosyltransferase
33%
Repair Time
33%
Microcolony
33%
Premature Chromosome Condensation
33%
Linear Energy Transfer
33%
High LET
33%
Unit Dose
33%
Cell Proliferation Kinetics
33%
Chromosome Fragments
33%
Biochemistry, Genetics and Molecular Biology
Fast Neutron Radiation
100%
Relative Biologic Effectiveness
50%
Chromosome
33%
Cell Killing
33%
Elution
33%
Chinese Hamster
16%
Hydroxylapatite
16%
Mutation Rate
16%
Cell Proliferation
16%
Survival Rate
16%
G1 Phase
16%
Premature Chromosome Condensation
16%
Linear Energy Transfer
16%
Phosphoribosyltransferase
16%
Double-Strand DNA Break
16%
Single-Strand DNA Break
16%
Molecular Mechanism
16%
Physics
Relative Biologic Effectiveness
50%
Chromosome
33%
Chromosome Aberration
16%