Journal of  Radiation Safety and Measurement

Journal of Radiation Safety and Measurement

The  Journal of Radiation Safety and Measurement (JRSM) is an open access journal that is published quarterly by the Iranian Radiation Protection Society (IRPS) and University of Kashan.

The Radiation Protection Society is the founder of the Iranian Journal of Radiation Safety and Measurement and appoints its Editorial Board.
The  scientific  aspects  of  the  Journal  are  supervised  by  the  Editorial  Board. The Journal is published jointly by the Iranian Radiation Protection Society and the University of Kashan.


Dear respected authors

We got permission to publish English issue. Therefore, all respected authors can also send articles in English.

Keywords Cloud

  • Dosimetry
  • Thermoluminescence
  • Monte Carlo
  • Simulation
  • MCNPX
  • Brachytherapy
  • MCNPX code
  • Tehran research reactor
  • Monte Carlo simulation
  • GEANT4
  • MCNP code
  • Radiotherapy
  • Absorbed Dose
  • Radon
  • Gamma ray
  • Shielding
  • Nanoparticles
  • Dose
  • Proton therapy
  • Gamma radiation
  • Geant4-DNA
  • Radiation protection
  • Phantom
  • X-Ray
  • HPGe detector
  • Biological dosimetry
  • Monte Carlo method
  • GATE Code
  • Gamma Irradiation
  • Treatment planning system
  • Plastic scintillator
  • Nuclear medicine
  • Dosimeter
  • Proton
  • Plasma focus
  • GATE
  • Magnetic field
  • MCNP
  • Radioisotope
  • Linear accelerator
  • detector
  • Geant4 code
  • Neutron
  • breast cancer
  • Radiation Therapy
  • Quality control
  • Radon concentration
  • Dose Rate
  • Photoneutron
  • HPGe
  • Exposure
  • Nanoparticle
  • Radiation dosimetry
  • Radiography
  • radiation
  • MCNP4C
  • Radiation Damage
  • Gamma
  • BNCT
  • Internal dosimetry
  • Lung Cancer
  • Co-precipitation
  • Neutron dosimetry
  • Safety
  • Microdosimetry
  • Mass attenuation coefficient
  • Radiation safety
  • Prostate Cancer
  • VVER-1000 reactor
  • Detection
  • Computed tomography
  • ionization
  • Electrical conductivity
  • Efficiency
  • Natural radioactivity
  • Alpha
  • SOBP
  • Occupational exposure
  • TLD
  • Personal dosimetry
  • Monte Carlo code
  • Hydroxyapatite
  • MCNPX simulation
  • Dose distribution
  • Exposure limit
  • Nanocomposite
  • research reactor
  • Image quality
  • TLD-100
  • Ionizing radiation
  • Bragg peak
  • Kashan
  • Industrial Radiography
  • lineal energy
  • XCOM
  • optimization
  • Attenuation Coefficient
  • Radiation shielding
  • Dosimetric parameters
  • Calibration
  • Measurement
  • Photoluminescence
  • Kinetic parameters
  • RBE
  • Gamma-ray
  • CaF2:Mn (TLD-400)
  • Radiopharmaceutical
  • Ultraviolet
  • HYSPLIT
  • Dose enhancement factor
  • Dose response curve
  • Shield
  • CT scan
  • Impurity
  • Lithium fluoride
  • iodine-131
  • Modulation transfer function
  • Total Ionizing Dose
  • Neutron dose
  • Neutron irradiation
  • MNSR reactor
  • MIRD method
  • Neutron radiography
  • ORNL phantom
  • Modeling
  • Flux
  • Growth and physiology
  • Nanostructure
  • Film badge
  • Ion Beam Analysis
  • Gold Nanoparticles
  • α-Al2O3:C
  • Image Reconstruction
  • Microwave radiation
  • enzymatic antioxdant system
  • Trajectory
  • Dose calibrator
  • Electron Beam
  • Sensitivity loss
  • Ionization chamber
  • Single-strand break
  • double strand breaks
  • Polystyrene
  • Relative biological effectiveness
  • Water
  • Dose Assessment
  • PET
  • Uncertainty
  • neural network
  • Annual Effective Dose
  • Calorimeter
  • Double Strand Break
  • Micro-pattern structure
  • Temperature
  • Fast neutron
  • neutron Flux
  • Linear dose response
  • Polycarbonate
  • Fusion
  • TG-43U1 Protocol
  • Surfactant
  • Rando phantom
  • PET/CT
  • Irradiation time
  • Retrospective dosimetry
  • Scintillation
  • Epoxy resin
  • Electron Multiplier Assembly (EMA)
  • Gaseous detector
  • electron
  • Hadron therapy
  • Boric Acid
  • Boron neutron capture therapy
  • ORNL-MIRD phantom
  • Ultraviolet radiation (UV)
  • Boron
  • Radiation hazards
  • Single Strand Break
  • Medical Laser
  • Plasma focus device
  • Range
  • Electric field
  • Standard limits
  • High radioactive
  • Radionuclide
  • SPECT-CT
  • Fetus
  • DNA
  • EGSnrc code
  • High dose
  • Sensitivity
  • Melatonin
  • Micronucleus
  • Nuclear accident
  • Strontium-90
  • Effective dose
  • Variance reduction
  • Thermal neutrons
  • Linear and mass attenuation coefficients
  • Satellite

Related Journals