European Journal of Nuclear Medicine and Molecular Imaging, ISSN 1619-7070, 2011, Volume 38, Issue 12, pp. 2136 - 2144
Delineation of tumour boundaries is important for quantification of [18F]fluoro-2-deoxy-D-glucose (FDG) positron emission tomography (PET) studies and for...
Positron emission tomography (PET) | Volume of interest (VOI) | Medicine & Public Health | Orthopedics | Tumour delineation | Oncology | Nuclear Medicine | Cardiology | Imaging / Radiology | [ 18 F]FDG | Tumour volume | F]FDG | FDG-PET | DEFINITION | PERFORMANCE | VOLUME | VALIDATION | [F-18]FDG | CELL LUNG-CANCER | PHANTOM MEASUREMENTS | F-18-FDG PET | POSITRON-EMISSION-TOMOGRAPHY | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Reproducibility of Results | Humans | Image Interpretation, Computer-Assisted - methods | Positron-Emission Tomography - methods | Neoplasms - diagnostic imaging | Positron-Emission Tomography - instrumentation | Algorithms | Sensitivity and Specificity | Fluorodeoxyglucose F18 | Image Enhancement - methods | Phantoms, Imaging | Radiopharmaceuticals | Pattern Recognition, Automated - methods | Tomography | Accuracy | Radiation therapy | Tumors | Nuclear medicine | Image processing | Standardization | Boundaries | Radiotherapy | Positron emission tomography | [18F]FDG | Original
Positron emission tomography (PET) | Volume of interest (VOI) | Medicine & Public Health | Orthopedics | Tumour delineation | Oncology | Nuclear Medicine | Cardiology | Imaging / Radiology | [ 18 F]FDG | Tumour volume | F]FDG | FDG-PET | DEFINITION | PERFORMANCE | VOLUME | VALIDATION | [F-18]FDG | CELL LUNG-CANCER | PHANTOM MEASUREMENTS | F-18-FDG PET | POSITRON-EMISSION-TOMOGRAPHY | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Reproducibility of Results | Humans | Image Interpretation, Computer-Assisted - methods | Positron-Emission Tomography - methods | Neoplasms - diagnostic imaging | Positron-Emission Tomography - instrumentation | Algorithms | Sensitivity and Specificity | Fluorodeoxyglucose F18 | Image Enhancement - methods | Phantoms, Imaging | Radiopharmaceuticals | Pattern Recognition, Automated - methods | Tomography | Accuracy | Radiation therapy | Tumors | Nuclear medicine | Image processing | Standardization | Boundaries | Radiotherapy | Positron emission tomography | [18F]FDG | Original
Journal Article
Molecular Imaging and Biology, ISSN 1536-1632, 10/2016, Volume 18, Issue 5, pp. 788 - 795
To assess (1) the repeatability and (2) the impact of reconstruction methods and delineation on the repeatability of 105 radiomic features in non-small-cell...
UPTAKE HETEROGENEITY | TEST-RETEST | Tracer uptake heterogeneity | VOLUME | CHEMORADIOTHERAPY | Radiomics | Repeatability | F-18-FDG PET | UPTAKE VALUES | Non-small-cell lung cancer (NSCLC) | IMAGES | PET/CT | TUMOR TEXTURE ANALYSIS | FRACTAL ANALYSIS | QUANTITATIVE FDG-PET | Medicine & Public Health | Imaging / Radiology | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Carcinoma, Non-Small-Cell Lung - pathology | Reproducibility of Results | Demography | Humans | Middle Aged | Fluorodeoxyglucose F18 - chemistry | Lung Neoplasms - pathology | Male | Positron Emission Tomography Computed Tomography | Image Processing, Computer-Assisted | Female | Lung Neoplasms - diagnostic imaging | Aged | Carcinoma, Non-Small-Cell Lung - diagnostic imaging | PET
UPTAKE HETEROGENEITY | TEST-RETEST | Tracer uptake heterogeneity | VOLUME | CHEMORADIOTHERAPY | Radiomics | Repeatability | F-18-FDG PET | UPTAKE VALUES | Non-small-cell lung cancer (NSCLC) | IMAGES | PET/CT | TUMOR TEXTURE ANALYSIS | FRACTAL ANALYSIS | QUANTITATIVE FDG-PET | Medicine & Public Health | Imaging / Radiology | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Carcinoma, Non-Small-Cell Lung - pathology | Reproducibility of Results | Demography | Humans | Middle Aged | Fluorodeoxyglucose F18 - chemistry | Lung Neoplasms - pathology | Male | Positron Emission Tomography Computed Tomography | Image Processing, Computer-Assisted | Female | Lung Neoplasms - diagnostic imaging | Aged | Carcinoma, Non-Small-Cell Lung - diagnostic imaging | PET
Journal Article
Radiotherapy and Oncology, ISSN 0167-8140, 2015, Volume 116, Issue 2, pp. 269 - 275
Abstract Purpose The objective was to analyse the value of F-18-fluorodesoxyglucose (FDG)-positron emission tomography/computed tomography (PET/CT) for...
Hematology, Oncology and Palliative Medicine | Oesophageal cancer | Biological target volume | Endoscopic clipping | PET/CT | FDG-PET | DEFINITION | VALIDATION | LUNG-CANCER | POSITRON-EMISSION-TOMOGRAPHY | GRADIENT-BASED METHOD | ONCOLOGY | IMAGES | SQUAMOUS-CELL CARCINOMA | TARGET VOLUME | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Prospective Studies | Humans | Middle Aged | Tomography, X-Ray Computed - methods | Male | Surgical Instruments | Positron-Emission Tomography - methods | Tumor Burden | Esophageal Neoplasms - pathology | Algorithms | Aged, 80 and over | Female | Fluorodeoxyglucose F18 | Aged | Radiopharmaceuticals | Esophageal Neoplasms - diagnostic imaging | Research | Oncology, Experimental | Esophageal cancer | Cancer | Tumors | Pets | CT imaging | Analysis
Hematology, Oncology and Palliative Medicine | Oesophageal cancer | Biological target volume | Endoscopic clipping | PET/CT | FDG-PET | DEFINITION | VALIDATION | LUNG-CANCER | POSITRON-EMISSION-TOMOGRAPHY | GRADIENT-BASED METHOD | ONCOLOGY | IMAGES | SQUAMOUS-CELL CARCINOMA | TARGET VOLUME | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Prospective Studies | Humans | Middle Aged | Tomography, X-Ray Computed - methods | Male | Surgical Instruments | Positron-Emission Tomography - methods | Tumor Burden | Esophageal Neoplasms - pathology | Algorithms | Aged, 80 and over | Female | Fluorodeoxyglucose F18 | Aged | Radiopharmaceuticals | Esophageal Neoplasms - diagnostic imaging | Research | Oncology, Experimental | Esophageal cancer | Cancer | Tumors | Pets | CT imaging | Analysis
Journal Article
NuklearMedizin, ISSN 0029-5566, 2012, Volume 51, Issue 1, pp. 9 - 16
Aim: Evaluation of a dedicated software tool for automatic delineation of 3D regions of interest in oncological PET. Patients, methods: The applied procedure...
3D ROI quantification | Interobserver variability | Background correction | PET | Volume delineation | FDG-PET | TARGET | DEFINITION | background correction | TUMOR | interobserver variability | CELL LUNG-CANCER | VARIABILITY | RECTAL-CANCER | volume delineation | POSITRON-EMISSION-TOMOGRAPHY | SEGMENTATION | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Reproducibility of Results | Humans | Image Interpretation, Computer-Assisted - methods | Middle Aged | Imaging, Three-Dimensional - methods | Male | Positron-Emission Tomography - methods | Neoplasms - diagnostic imaging | Algorithms | Sensitivity and Specificity | Adult | Female | Aged | Image Enhancement - methods | Observer Variation | Pattern Recognition, Automated - methods
3D ROI quantification | Interobserver variability | Background correction | PET | Volume delineation | FDG-PET | TARGET | DEFINITION | background correction | TUMOR | interobserver variability | CELL LUNG-CANCER | VARIABILITY | RECTAL-CANCER | volume delineation | POSITRON-EMISSION-TOMOGRAPHY | SEGMENTATION | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Reproducibility of Results | Humans | Image Interpretation, Computer-Assisted - methods | Middle Aged | Imaging, Three-Dimensional - methods | Male | Positron-Emission Tomography - methods | Neoplasms - diagnostic imaging | Algorithms | Sensitivity and Specificity | Adult | Female | Aged | Image Enhancement - methods | Observer Variation | Pattern Recognition, Automated - methods
Journal Article
European Journal of Nuclear Medicine and Molecular Imaging, ISSN 1619-7070, 6/2013, Volume 40, Issue 6, pp. 824 - 831
PET has been proven to be helpful in the delineation of gross tumour volume (GTV) for external radiation therapy in several tumour entities. The aim of this...
Target volume definition | Medicine & Public Health | Orthopedics | Choline | PET/CT | Oncology | Nuclear Medicine | Imaging / Radiology | Cardiology | Prostate | LOCALIZATION | TOMOGRAPHY/COMPUTERIZED TOMOGRAPHY | C-11-CHOLINE PET | POSITRON-EMISSION-TOMOGRAPHY | CHOLINE PET/CT | HIGH-RISK | INTERMEDIATE | EXPERIENCE | RADIOTHERAPY | CARCINOMA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Prostatic Neoplasms - pathology | Reproducibility of Results | Prospective Studies | Humans | Carcinoma - diagnosis | Male | Prostatic Neoplasms - diagnosis | Tumor Burden | Multimodal Imaging | Algorithms | Image Processing, Computer-Assisted | Carbon Radioisotopes - pharmacology | Choline - pharmacology | Prostatectomy | Carcinoma - pathology | Radiopharmaceuticals - pharmacology | Prostate cancer | Surgery | Tumors
Target volume definition | Medicine & Public Health | Orthopedics | Choline | PET/CT | Oncology | Nuclear Medicine | Imaging / Radiology | Cardiology | Prostate | LOCALIZATION | TOMOGRAPHY/COMPUTERIZED TOMOGRAPHY | C-11-CHOLINE PET | POSITRON-EMISSION-TOMOGRAPHY | CHOLINE PET/CT | HIGH-RISK | INTERMEDIATE | EXPERIENCE | RADIOTHERAPY | CARCINOMA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Prostatic Neoplasms - pathology | Reproducibility of Results | Prospective Studies | Humans | Carcinoma - diagnosis | Male | Prostatic Neoplasms - diagnosis | Tumor Burden | Multimodal Imaging | Algorithms | Image Processing, Computer-Assisted | Carbon Radioisotopes - pharmacology | Choline - pharmacology | Prostatectomy | Carcinoma - pathology | Radiopharmaceuticals - pharmacology | Prostate cancer | Surgery | Tumors
Journal Article
Radiation Oncology [E], ISSN 1748-717X, 01/2015, Volume 10, Issue 1, pp. 26 - 26
Background: GTV delineation is the first crucial step in radiotherapy and requires high accuracy, especially with the growing use of highly conformal and...
HEAD | MRI | GTV | Interobserver agreement | NECK-CANCER | Journal Article | RADIATION-THERAPY | CARTILAGE | TONGUE | Head-and-neck cancer | TARGET VOLUME DELINEATION | NEOPLASTIC INVASION | SQUAMOUS-CELL CARCINOMA | Supraglottic laryngeal carcinoma | RADIOTHERAPY | TUMOR VOLUME | IMPACT | ONCOLOGY | NECK | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Laryngeal Neoplasms - radiotherapy | Radiotherapy Dosage | Carcinoma, Squamous Cell - pathology | Humans | Magnetic Resonance Imaging - methods | Tomography, X-Ray Computed - methods | Carcinoma, Squamous Cell - radiotherapy | Glottis - pathology | Observer Variation | Laryngeal Neoplasms - pathology | Radiotherapy, Intensity-Modulated | CT imaging | Care and treatment | Diagnostic imaging | Carcinoma | Radiotherapy | Cancer
HEAD | MRI | GTV | Interobserver agreement | NECK-CANCER | Journal Article | RADIATION-THERAPY | CARTILAGE | TONGUE | Head-and-neck cancer | TARGET VOLUME DELINEATION | NEOPLASTIC INVASION | SQUAMOUS-CELL CARCINOMA | Supraglottic laryngeal carcinoma | RADIOTHERAPY | TUMOR VOLUME | IMPACT | ONCOLOGY | NECK | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Laryngeal Neoplasms - radiotherapy | Radiotherapy Dosage | Carcinoma, Squamous Cell - pathology | Humans | Magnetic Resonance Imaging - methods | Tomography, X-Ray Computed - methods | Carcinoma, Squamous Cell - radiotherapy | Glottis - pathology | Observer Variation | Laryngeal Neoplasms - pathology | Radiotherapy, Intensity-Modulated | CT imaging | Care and treatment | Diagnostic imaging | Carcinoma | Radiotherapy | Cancer
Journal Article
Investigative Radiology, ISSN 0020-9996, 05/2012, Volume 47, Issue 5, pp. 306 - 311
OBJECTIVES:Mixing low- and high-voltage acquisitions of dual-energy CT (DECT) scan using different weighting factors leads to differences in attenuation values...
head and neck | dual-energy CT | average weighting | squamous cell carcinoma | MULTIDETECTOR ROW CT | BONE REMOVAL | COMPUTED-TOMOGRAPHY ANGIOGRAPHY | IMAGE QUALITY | HYPERVASCULAR LIVER-TUMORS | CLINICAL-APPLICATIONS | LOW-TUBE-VOLTAGE | DIFFERENTIATION | CARCINOMA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | EXPOSURE | Reproducibility of Results | Algorithms | Radiographic Image Interpretation, Computer-Assisted - methods | Head and Neck Neoplasms - diagnostic imaging | Humans | Middle Aged | Sensitivity and Specificity | Radiographic Image Enhancement - methods | Tomography, X-Ray Computed - methods | Female | Male
head and neck | dual-energy CT | average weighting | squamous cell carcinoma | MULTIDETECTOR ROW CT | BONE REMOVAL | COMPUTED-TOMOGRAPHY ANGIOGRAPHY | IMAGE QUALITY | HYPERVASCULAR LIVER-TUMORS | CLINICAL-APPLICATIONS | LOW-TUBE-VOLTAGE | DIFFERENTIATION | CARCINOMA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | EXPOSURE | Reproducibility of Results | Algorithms | Radiographic Image Interpretation, Computer-Assisted - methods | Head and Neck Neoplasms - diagnostic imaging | Humans | Middle Aged | Sensitivity and Specificity | Radiographic Image Enhancement - methods | Tomography, X-Ray Computed - methods | Female | Male
Journal Article
Nature Genetics, ISSN 1061-4036, 10/2006, Volume 38, Issue 10, pp. 1142 - 1150
Recent studies in Drosophila melanogaster of the protocadherins Dachsous and Fat suggest that they act as ligand and receptor, respectively, for an...
CUBITUS INTERRUPTUS | DOUBLE-TIME | PROLIFERATION CONTROL | DROSOPHILA-MELANOGASTER | CYCLE EXIT | PROTEIN-KINASE | GROWTH | GENETICS & HEREDITY | PLANAR CELL POLARITY | EXPANDED FUNCTION | PROMOTES APOPTOSIS | Protein Kinases - metabolism | Cell Adhesion Molecules - genetics | Neurofibromin 2 - genetics | Protein Kinases - genetics | Signal Transduction | Membrane Proteins - genetics | Gene Expression Regulation | Protein-Serine-Threonine Kinases - genetics | Intracellular Signaling Peptides and Proteins | Nuclear Proteins - metabolism | Drosophila Proteins - metabolism | Cell Adhesion Molecules - metabolism | Myosins - genetics | Animals | Trans-Activators - genetics | Cell Cycle Proteins - genetics | Myosins - metabolism | Trans-Activators - metabolism | Drosophila Proteins - genetics | Nuclear Proteins - genetics | Drosophila melanogaster | Genes, Tumor Suppressor | Signal transduction | Insects | Gene expression | Tumors
CUBITUS INTERRUPTUS | DOUBLE-TIME | PROLIFERATION CONTROL | DROSOPHILA-MELANOGASTER | CYCLE EXIT | PROTEIN-KINASE | GROWTH | GENETICS & HEREDITY | PLANAR CELL POLARITY | EXPANDED FUNCTION | PROMOTES APOPTOSIS | Protein Kinases - metabolism | Cell Adhesion Molecules - genetics | Neurofibromin 2 - genetics | Protein Kinases - genetics | Signal Transduction | Membrane Proteins - genetics | Gene Expression Regulation | Protein-Serine-Threonine Kinases - genetics | Intracellular Signaling Peptides and Proteins | Nuclear Proteins - metabolism | Drosophila Proteins - metabolism | Cell Adhesion Molecules - metabolism | Myosins - genetics | Animals | Trans-Activators - genetics | Cell Cycle Proteins - genetics | Myosins - metabolism | Trans-Activators - metabolism | Drosophila Proteins - genetics | Nuclear Proteins - genetics | Drosophila melanogaster | Genes, Tumor Suppressor | Signal transduction | Insects | Gene expression | Tumors
Journal Article
International Journal of Radiation Oncology, Biology, Physics, ISSN 0360-3016, 2008, Volume 70, Issue 2, pp. 515 - 522
Purpose To assess the importance of11 C-methionine (MET)–positron emission tomography (PET) for clinical target volume (CTV) delineation. Methods and Materials...
Radiology | Hematology, Oncology and Palliative Medicine | Malignant gliomas | Methionine–positron emission tomography (PET) | Treatment planning | Image fusion | Carbon ion radiotherapy | Methionine-positron emission tomography (PET) | GA-68 EDTA | image fusion | GLIOBLASTOMA-MULTIFORME | C-11 METHIONINE | carbon ion radiotherapy | COMPUTED-TOMOGRAPHY | CEREBRAL GLIOMAS | RADIATION-THERAPY | treatment planning | methionine-positron emission tomography (PET) | ONCOLOGY | malignant gliomas | HIGH-GRADE GLIOMAS | GLIAL NEOPLASMS | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | BRAIN | PET | Astrocytoma - radiotherapy | Radiotherapy Planning, Computer-Assisted - methods | Brain Neoplasms - diagnostic imaging | Humans | Middle Aged | Methionine | Magnetic Resonance Imaging - methods | Tomography, X-Ray Computed - methods | Male | Positron-Emission Tomography - methods | Tumor Burden | Glioblastoma - radiotherapy | Astrocytoma - diagnostic imaging | Brain Neoplasms - surgery | Glioblastoma - surgery | Glioblastoma - diagnostic imaging | Adult | Female | Aged | Retrospective Studies | Brain Neoplasms - radiotherapy | Astrocytoma - surgery | Carbon Radioisotopes | GLIOMAS | SURGERY | PATIENTS | CARBON 11 | NMR IMAGING | IMAGES | POSITRON COMPUTED TOMOGRAPHY | RADIOLOGY AND NUCLEAR MEDICINE | CARBON IONS | RADIOTHERAPY | METHIONINE | PLANNING
Radiology | Hematology, Oncology and Palliative Medicine | Malignant gliomas | Methionine–positron emission tomography (PET) | Treatment planning | Image fusion | Carbon ion radiotherapy | Methionine-positron emission tomography (PET) | GA-68 EDTA | image fusion | GLIOBLASTOMA-MULTIFORME | C-11 METHIONINE | carbon ion radiotherapy | COMPUTED-TOMOGRAPHY | CEREBRAL GLIOMAS | RADIATION-THERAPY | treatment planning | methionine-positron emission tomography (PET) | ONCOLOGY | malignant gliomas | HIGH-GRADE GLIOMAS | GLIAL NEOPLASMS | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | BRAIN | PET | Astrocytoma - radiotherapy | Radiotherapy Planning, Computer-Assisted - methods | Brain Neoplasms - diagnostic imaging | Humans | Middle Aged | Methionine | Magnetic Resonance Imaging - methods | Tomography, X-Ray Computed - methods | Male | Positron-Emission Tomography - methods | Tumor Burden | Glioblastoma - radiotherapy | Astrocytoma - diagnostic imaging | Brain Neoplasms - surgery | Glioblastoma - surgery | Glioblastoma - diagnostic imaging | Adult | Female | Aged | Retrospective Studies | Brain Neoplasms - radiotherapy | Astrocytoma - surgery | Carbon Radioisotopes | GLIOMAS | SURGERY | PATIENTS | CARBON 11 | NMR IMAGING | IMAGES | POSITRON COMPUTED TOMOGRAPHY | RADIOLOGY AND NUCLEAR MEDICINE | CARBON IONS | RADIOTHERAPY | METHIONINE | PLANNING
Journal Article
Strahlentherapie und Onkologie, ISSN 0179-7158, 2014, Volume 190, Issue 6, pp. 555 - 562
The integration of positron emission tomography (PET) information for target volume delineation in radiation treatment planning is routine in many centers. In...
Interobservervariabilität | 18F-FDG PET | Lungenkarzinom | Medicine & Public Health | Visuell-manuelle Konturierung | Lung cancer | Visual-manual delineation | Bestrahlungsplanung | Oncology | Radiation therapy planning | Radiotherapy | Interobserver variability | FDG-PET | DEFINITION | GROSS TUMOR VOLUME | ACCURACY | CELL LUNG-CANCER | POSITRON-EMISSION-TOMOGRAPHY | ONCOLOGY | RADIATION TREATMENT | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | INTEROBSERVER | Carcinoma, Non-Small-Cell Lung - pathology | Carcinoma, Non-Small-Cell Lung - radiotherapy | Clinical Competence | Professional Competence | Radiotherapy Planning, Computer-Assisted - methods | Tumor Burden - radiation effects | Humans | Cooperative Behavior | Lung Neoplasms - radiotherapy | Tomography, X-Ray Computed - methods | Lung Neoplasms - pathology | Male | Survival Rate | Combined Modality Therapy | Positron-Emission Tomography - methods | Chemoradiotherapy | Tumor Burden - physiology | Interdisciplinary Communication | Algorithms | Image Processing, Computer-Assisted | Sensitivity and Specificity | Fluorodeoxyglucose F18 | Imaging, Three-Dimensional | Observer Variation
Interobservervariabilität | 18F-FDG PET | Lungenkarzinom | Medicine & Public Health | Visuell-manuelle Konturierung | Lung cancer | Visual-manual delineation | Bestrahlungsplanung | Oncology | Radiation therapy planning | Radiotherapy | Interobserver variability | FDG-PET | DEFINITION | GROSS TUMOR VOLUME | ACCURACY | CELL LUNG-CANCER | POSITRON-EMISSION-TOMOGRAPHY | ONCOLOGY | RADIATION TREATMENT | RADIOTHERAPY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | INTEROBSERVER | Carcinoma, Non-Small-Cell Lung - pathology | Carcinoma, Non-Small-Cell Lung - radiotherapy | Clinical Competence | Professional Competence | Radiotherapy Planning, Computer-Assisted - methods | Tumor Burden - radiation effects | Humans | Cooperative Behavior | Lung Neoplasms - radiotherapy | Tomography, X-Ray Computed - methods | Lung Neoplasms - pathology | Male | Survival Rate | Combined Modality Therapy | Positron-Emission Tomography - methods | Chemoradiotherapy | Tumor Burden - physiology | Interdisciplinary Communication | Algorithms | Image Processing, Computer-Assisted | Sensitivity and Specificity | Fluorodeoxyglucose F18 | Imaging, Three-Dimensional | Observer Variation
Journal Article
Nature, ISSN 0028-0836, 08/2001, Volume 412, Issue 6849, pp. 822 - 826
Prostate cancer is the most frequently diagnosed cancer in American men. Screening for prostate-specific antigen (PSA) has led to earlier detection of prostate...
MOLECULAR CLASSIFICATION | SPECIMENS | GENETICS | MULTIDISCIPLINARY SCIENCES | EXPRESSION | TUMORS | PROGRESSION | Immunohistochemistry | Proto-Oncogene Proteins - metabolism | Prostatic Neoplasms - metabolism | Prostatic Neoplasms - pathology | Prognosis | Oligonucleotide Array Sequence Analysis | Humans | Protein-Serine-Threonine Kinases - genetics | Male | Proto-Oncogene Proteins - genetics | Reference Values | Gene Expression Profiling | Proto-Oncogene Proteins c-pim-1 | Prostate - metabolism | Prostatic Neoplasms - epidemiology | Prostatic Neoplasms - genetics | DNA, Neoplasm | Serine Endopeptidases - genetics | Biomarkers, Tumor - metabolism | Biomarkers, Tumor - genetics | Serine Endopeptidases - metabolism | Protein-Serine-Threonine Kinases - metabolism | DNA, Complementary
MOLECULAR CLASSIFICATION | SPECIMENS | GENETICS | MULTIDISCIPLINARY SCIENCES | EXPRESSION | TUMORS | PROGRESSION | Immunohistochemistry | Proto-Oncogene Proteins - metabolism | Prostatic Neoplasms - metabolism | Prostatic Neoplasms - pathology | Prognosis | Oligonucleotide Array Sequence Analysis | Humans | Protein-Serine-Threonine Kinases - genetics | Male | Proto-Oncogene Proteins - genetics | Reference Values | Gene Expression Profiling | Proto-Oncogene Proteins c-pim-1 | Prostate - metabolism | Prostatic Neoplasms - epidemiology | Prostatic Neoplasms - genetics | DNA, Neoplasm | Serine Endopeptidases - genetics | Biomarkers, Tumor - metabolism | Biomarkers, Tumor - genetics | Serine Endopeptidases - metabolism | Protein-Serine-Threonine Kinases - metabolism | DNA, Complementary
Journal Article
12.
Full Text
Target Volume Delineation and Treatment Planning for Particle Therapy
: A Practical Guide
12/2017, 1st ed. 2018, Practical guides in radiation oncology, ISBN 3319424777, 393
This handbook is designed to enable radiation oncologists to treat patients appropriately and confidently by means of particle therapy. The orientation and...
Medicine | Cancer-Radiotherapy | Medicine & Public Health | Radiotherapy | Oncology
Medicine | Cancer-Radiotherapy | Medicine & Public Health | Radiotherapy | Oncology
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