INIS
3d printing
70%
anatomy
23%
assignments
17%
beams
94%
calcium
17%
calcium 53
35%
calcium 55
52%
calcium 56
17%
calcium isotopes
70%
cancer
11%
comparative evaluations
23%
cross sections
35%
depth doses
11%
design
23%
distorted wave theory
17%
distribution
70%
doses
23%
dosimetry
23%
energy
100%
excitation
35%
fabrication
70%
fragmentation
17%
gamma spectroscopy
70%
ground states
23%
holes
17%
houses
11%
impulse approximation
17%
interactions
17%
isodose curves
11%
isotones
17%
isotopes
64%
japanese organizations
41%
kev range
58%
level schemes
47%
levels
23%
magic numbers
17%
manufacturing
11%
MeV range
29%
neutrons
70%
nickel
17%
nucleons
52%
orbital angular momentum
17%
parity
23%
particles
17%
patients
35%
phantoms
23%
photon beams
11%
precision
11%
prediction
17%
radiotherapy
70%
resonance
35%
scandium 55
70%
shell models
41%
shells
17%
simulation
11%
skin
11%
space
47%
spectra
23%
spectroscopy
94%
spin
23%
surfaces
29%
therapy
11%
tissues
11%
tumors
11%
units
11%
volume
23%
water
11%
Keyphrases
3-Component
35%
3D Printing
11%
3D Printing Materials
23%
3D Printing Parameters
11%
3D Printing Technology
70%
Ab Initio Calculations
35%
Anthropomorphic Head Phantom
11%
Anthropomorphic Phantom
11%
Beam Energy
35%
Bolus
70%
Ca Isotopes
70%
Calcium Isotopes
35%
Clinical Application
11%
Coincidence Analysis
35%
Customized Bolus
70%
Depth-dose Profile
11%
Distorted Wave
35%
Distribution-based
35%
Dose Coverage
11%
Dosimetry
23%
Energy Properties
35%
Excitation Energy
70%
External Beam Radiotherapy
70%
Gamma Spectrometry
70%
Head-and-neck Cancer
11%
Hole State
35%
Hounsfield Units
11%
Impulse Approximation
35%
Infill
11%
Irregular Tumors
11%
Isodose Curves
11%
Isotone
35%
Level Scheme
70%
Low Energy
35%
Magic numbers
35%
Maximum Tolerated Dose
11%
Model Space
70%
Momentum Distribution
70%
Neutron-rich
70%
Orbital Angular Momentum
35%
Partial Cross Section
35%
Photon Beam
11%
Radioactive Isotope Beam
70%
Radiotherapy
11%
Radiotherapy Planning
11%
Reaction Channel
35%
Reaction Model
35%
Relative Intensity
35%
Resonance Properties
35%
RIKEN
70%
Shell Model Calculations
70%
Shell Structures
35%
Single Particle Strength
35%
Skin Surface
11%
Spin-parity
35%
Strength Distribution
35%
Tissue Compensator
11%
Unbound States
70%