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2016, Imaging in medical diagnosis and therapy, ISBN 9781466555686
Web Resource
Medical Physics, ISSN 0094-2405, 01/2012, Volume 39, Issue 1, pp. 503 - 513
Purpose : Optical coherence tomography (OCT) is a catheter-based imaging method that employs near-infrared light to produce high-resolution cross-sectional... 
optical coherence tomography | image segmentation | continuous wavelet transform | image quantification | image analysis | neointimal hypersplasia | Markov random fields | Intravascular ultrasonography | Segmentation | image classification | wavelet transforms | stents | optical tomography | Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents | Digital computing or data processing equipment or methods, specially adapted for specific applications | Near infrared imaging | feature extraction | Ultrasonography | medical image processing | Biomedical imaging | Medical imaging | Wavelet transform | Analysis of texture | Medical image segmentation | blood vessels | Vascular system | image texture | Wavelets | Image data processing or generation, in general | Visual imaging | Markov processes | biomedical optical imaging | ATHEROSCLEROSIS | DIGITAL MAMMOGRAMS | AGREEMENT | QUANTITATIVE-ANALYSIS | PLAQUE | CORONARY-ARTERIES | IMAGES | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | HOUGH TRANSFORM | Femoral Artery - pathology | Reproducibility of Results | Blood Vessel Prosthesis - adverse effects | Neointima - etiology | Humans | Image Interpretation, Computer-Assisted - methods | Neointima - diagnosis | Tomography, Optical Coherence - methods | Foreign Bodies - diagnosis | Hyperplasia - etiology | Algorithms | Sensitivity and Specificity | Image Enhancement - methods | Stents - adverse effects | Femoral Artery - surgery | Pattern Recognition, Automated - methods | Index Medicus
Journal Article
09/2018, 1, Imaging in Medical Diagnosis and Therapy, ISBN 1482256886, 624
The use of small animal models in basic and preclinical sciences constitutes an integral part of testing new pharmaceutical agents prior to their application... 
Veterinary radiography | Physics | Biomedical Engineering | Radiology | Animal Physiology | Medical Physics | Veterinary medicine | Diagnostic imaging
eBook
Journal of Colloid And Interface Science, ISSN 0021-9797, 11/2014, Volume 433, pp. 163 - 175
Dual-modality imaging agents, such as radiolabeled iron oxide nanoparticles (IO-NPs), are promising candidates for cancer diagnosis and therapy. We developed... 
Nanoparticles | Radiolabeling | Technetium | Integrin | Hyperthermia | RGD
Journal Article
Physics in Medicine and Biology, ISSN 0031-9155, 03/2016, Volume 61, Issue 6, pp. 2333 - 2355
Journal Article
Physica Medica, ISSN 1120-1797, 2016, Volume 32, pp. 259 - 259
Introduction Magnetic Nanoparticle Hyperthermia constitutes one of the latest promising treatments for cancerous tumors. The basic principle of hyperthermia... 
Radiology
Journal Article
World Journal of Urology, ISSN 0724-4983, 6/2013, Volume 31, Issue 3, pp. 597 - 602
Journal Article
Medical Physics, ISSN 0094-2405, 08/2008, Volume 35, Issue 8, pp. 3444 - 3452
Molecular imaging (MI) constitutes a recently developed approach of imaging, where modalities and agents have been reinvented and used in novel combinations in... 
molecular imaging | unification | data integration | Enzymes | biomedical MRI | Positron emission tomography(PET) | Medical imaging | Medical physicists | medical information systems | Medical diagnosis | computerised tomography | Computed tomography | Magnetic resonance imaging | Reactions and kinetics | biochemistry | Therapeutics | Ultrasonography | Nuclear medicine imaging | molecular biophysics | positron emission tomography | Medical physics | Molecular imaging | Data integration | Unification | RHEUMATOID-ARTHRITIS | MYOCARDIAL PERFUSION | BAYESIAN NETWORKS | RADIATION ONCOLOGY | ATTENUATION CORRECTION | COMPUTED-TOMOGRAPHY | NANOPARTICLES | IN-VIVO | GENE-EXPRESSION | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | PET | Microarray Analysis - methods | Microarray Analysis - trends | Humans | Health Physics - methods | Statistics as Topic | Genetic Markers | Health Physics - trends | Molecular Biology - methods | Diagnostic Imaging - methods | Molecular Biology - trends | Animals | Diagnostic Imaging - trends | Nuclear Physics - methods | Nuclear Physics - trends | Genomics - methods | Medical Informatics Applications | Genomics - trends | Index Medicus | NMR IMAGING | POLYMERASE CHAIN REACTION | BIOMEDICAL RADIOGRAPHY | PERFORMANCE | POSITRON COMPUTED TOMOGRAPHY | LIMITING VALUES | 60 APPLIED LIFE SCIENCES
Journal Article
Medical Physics, ISSN 0094-2405, 08/2012, Volume 39, Issue 8, pp. 5238 - 5247
Purpose: GATE is a Monte Carlo simulation toolkit based on the Geant4 package, widely used for many medical physics applications, including SPECT and PET image... 
orthopaedics | radioimmunotherapy | dosimetry | radioisotopes | Tissues | phantoms | Digital computing or data processing equipment or methods, specially adapted for specific applications | Monte Carlo methods | Orthopaedic methods or devices for non‐surgical treatment of bones or joints; Nursing devices | Databases | Electrodeposition | Single photon emission computed tomography (SPECT) | dose point kernels | Electron sources | Isotopes | medical image processing | Positron emission tomography (PET) | single photon emission computed tomography | bone | GATE | Photons | lung | Monte Carlo simulations | Lungs | Image data processing or generation, in general | radiation therapy | Nuclear medicine imaging | Therapeutic applications, including brachytherapy | positron emission tomography | Dosimetry/exposure assessment | ELECTRON | ETRAN | ENERGY DEPOSITION | VALIDATION | DISTRIBUTIONS | THERAPY | GEANT4 | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | WATER | GATE/GEANT4 | Tomography, Emission-Computed, Single-Photon - methods | Radiotherapy Planning, Computer-Assisted - methods | Humans | Positron-Emission Tomography - methods | Nuclear Medicine - instrumentation | Nuclear Medicine - methods | Computer Simulation | Radioimmunotherapy - methods | Software | Radiometry - methods | Monte Carlo Method | Electrons | Index Medicus | PATIENTS | RHENIUM 186 | RHENIUM 188 | LUNGS | PHOTONS | POINT KERNELS | RADIATION DOSES | IODINE 125 | IODINE 124 | YTTRIUM 90 | CAT SCANNING | COMPUTERIZED SIMULATION | IODINE 123 | SKELETON | MEV RANGE 01-10 | IMAGE PROCESSING | POSITRON COMPUTED TOMOGRAPHY | RADIOLOGY AND NUCLEAR MEDICINE | ELECTROMAGNETIC INTERACTIONS | PHOSPHORUS 32 | SINGLE PHOTON EMISSION COMPUTED TOMOGRAPHY | SAMARIUM 153 | LUTETIUM 177 | MONTE CARLO METHOD | RADIATION PROTECTION AND DOSIMETRY | RADIOIMMUNOTHERAPY | INDIUM 111 | IODINE 131 | KEV RANGE 100-1000 | ALGORITHMS | DATASETS | GALLIUM 67 | GALLIUM 68 | KEV RANGE 10-100 | PHANTOMS | DOSIMETRY | TECHNETIUM 99
Journal Article
02/2016, Imaging in Medical Diagnosis and Therapy, ISBN 1482256886, 579
The use of small animal models in basic and preclinical sciences constitutes an integral part of testing new pharmaceutical agents prior to their application... 
Veterinary medicine | Veterinary radiography | Diagnostic imaging
eBook
Medical Physics, ISSN 0094-2405, 08/2018, Volume 45, Issue 8, pp. 3939 - 3949
PurposeHerein, we introduce a methodology for estimating the absorbed dose in organs at risk that is based on specified clinically derived radiopharmaceutical... 
GATE | SADR | absorbed dose rate | personalized dosimetry | pediatric dosimetry | simulations | GATE simulations | PHANTOM | DOSE ASSESSMENT | S-VALUES | SIMULATION TOOLKIT | IRRADIATION | PEDIATRIC DOSAGE CARD | NUCLEAR-MEDICINE | RADIATION RISK | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | COMPUTER SOFTWARE
Journal Article
Medical Physics, ISSN 0094-2405, 11/2013, Volume 40, Issue 11, pp. 112506 - n/a
Purpose: The GATE Monte Carlo simulation toolkit is used for the implementation of realistic PET simulations incorporating tumor heterogeneous activity... 
Image scanners | Medical imaging | Biomedical modeling | simulation | anthropomorphic phantoms | GATE | PET database | Biological material, e.g. blood, urine; Haemocytometers | Scintigraphy | Anatomy | Biophysical mechanisms of interaction | Digital computing or data processing equipment or methods, specially adapted for specific applications | Monte Carlo methods | Monte Carlo simulations | Databases | physiological models | Measuring half‐life of a radioactive substance | Computed tomography | Medical image reconstruction | realistic simulations | positron emission tomography | tumours | Cancer | tumor heterogeneity | PARTIAL-VOLUME CORRECTION | VALIDATION | ITERATIVE DECONVOLUTION | HETEROGENEITY | VARIABILITY | PLATFORM | IMAGES | EMISSION-TOMOGRAPHY | MONTE-CARLO SIMULATIONS | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Reproducibility of Results | Anthropometry | Humans | Tomography, X-Ray Computed | Neoplasms - diagnosis | Positron-Emission Tomography | Neoplasms - diagnostic imaging | Normal Distribution | Tissue Distribution | Algorithms | Image Processing, Computer-Assisted | Computer Simulation | Medical Oncology - standards | Monte Carlo Method | Databases, Factual | Index Medicus | EXCEPTIONS | PATIENTS | IMAGE PROCESSING | SPATIAL RESOLUTION | MONTE CARLO METHOD | NEOPLASMS | POSITRON COMPUTED TOMOGRAPHY | RADIOLOGY AND NUCLEAR MEDICINE | PHANTOMS | ALGORITHMS | COMPUTERIZED SIMULATION
Journal Article