Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
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Interaction between the biological effects of high- and low-LET radiation dose components in a mixed field exposure.An investigation of boron neutron capture therapy for recurrent glioblastoma multiforme.Monte Carlo calculations of thermal neutron capture in gadolinium: a comparison of GEANT4 and MCNP with measurements.Gadolinium neutron capture brachytherapy (GdNCB), a new treatment method for intravascular brachytherapy.
P2860
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
description
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name
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
@en
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
@nl
type
label
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
@en
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
@nl
prefLabel
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
@en
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation.
@nl
P2093
P2860
P356
P1433
P1476
Monte Carlo model of the Studsvik BNCT clinical beam: description and validation
@en
P2093
Bruno Montagnini
Jacek Capala
Kurt Sköld
Valerio Giusti
P2860
P304
P356
10.1118/1.1626120
P407
P577
2003-12-01T00:00:00Z