INIS
positron computed tomography
100%
patients
63%
thyroid
40%
cancer
37%
fluorine 18
34%
corrections
33%
comparative evaluations
32%
images
32%
iodine 124
30%
range
26%
nuclear medicine
24%
nmr imaging
23%
values
22%
volume
21%
uptake
21%
dosimetry
19%
bones
19%
performance
19%
tissues
19%
evaluation
19%
gallium 68
17%
spect
17%
positrons
17%
recovery
16%
doses
16%
accuracy
14%
radionuclides
14%
data
14%
iodine 131
13%
inflammation
13%
Medicine and Dentistry
Positron Emission Tomography-Computed Tomography
40%
Polyethylene Terephthalate
35%
Positron Emission Tomography
29%
Iodine 124
29%
Differentiated Thyroid Cancer
28%
Fluorine-18
25%
Positron Emission Tomography - Magnetic Resonance Imaging
22%
Nuclear Medicine
22%
Dosimetry
21%
Radioisotope
21%
Fluorodeoxyglucose F 18
19%
Image Quality
19%
Gallium 68
19%
Radioactive Iodine
18%
Single-Photon Emission Computed Tomography
14%
Technetium-99
14%
Absorbed Dose
13%
Iodine 131
13%
Image Reconstruction
12%
Monte Carlo Method
11%
Bone Remodeling
11%
Magnetic Resonance Imaging
9%
Single Photon Emission Computed Tomography-Computed Tomography
9%
Neoplasm
8%
Radioactive Tracer
7%
Electrocardiogram
7%
Radiofrequency Coil
7%
Patient-Data
6%
Indium 111
6%
Fluorodeoxyglucose
6%
Keyphrases
Positron Emission Tomography-computed Tomography (PET-CT)
38%
Differentiated Thyroid Cancer
28%
I-124
26%
Nuclear Medicine
23%
PET-MRI
22%
Gallium-68
17%
Radioiodine Treatment
17%
Positron Range Correction
17%
Image Quality
16%
F-18
15%
18F-fluorodeoxyglucose (18F-FDG)
13%
Technetium-99m
13%
Dosimetry
13%
Positron Emission Tomography
13%
Absorbed Dose
12%
Radionuclides
12%
Recovery Coefficient
12%
Monte Carlo Simulation
11%
Radionuclide Calibrator
11%
Multi-vendor
11%
Bone Metabolism
11%
Dose Calibrator
10%
Ga-68
9%
In-111
8%
Correction Method
8%
FDG Uptake
7%
SPECT-CT
7%
Iodine-131 (131I)
7%
I-131
7%
Thyroid Patients
7%