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International Journal of Hyperthermia, ISSN 0265-6736, 08/2017, Volume 33, Issue 6, pp. 593 - 607
Journal Article
International Journal of Hyperthermia, ISSN 0265-6736, 10/2018, Volume 34, Issue 7, pp. 1082 - 1091
Background: The effectiveness of hyperthermia is strongly dependent on the achieved tumour temperatures. Phased-array systems allow flexible power steering to... 
optimisation | Hyperthermia | hyperthermia treatment planning | on-line | REGIONAL HYPERTHERMIA | CERVICAL-CANCER | HUMAN-PAPILLOMAVIRUS | PELVIC TUMORS | CLINICAL-APPLICATION | DEEP HYPERTHERMIA | RECTAL-CANCER | ONCOLOGY | THERMAL THERAPY | OPTIMIZATION | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | PHASED-ARRAY HYPERTHERMIA
Journal Article
International Journal of Radiation Oncology, Biology, Physics, ISSN 0360-3016, 11/2017, Volume 99, Issue 4, pp. 1039 - 1047
Journal Article
International Journal of Hyperthermia, ISSN 0265-6736, 11/2016, Volume 32, Issue 8, pp. 911 - 922
Journal Article
IEEE Transactions on Biomedical Engineering, ISSN 0018-9294, 08/2017, Volume 64, Issue 8, pp. 1875 - 1885
Journal Article
International Journal of Hyperthermia, ISSN 0265-6736, 10/2009, Volume 25, Issue 7, pp. 529 - 532
Simulation studies can estimate the potentials of regional hyperthermia based on the multi-antenna principle. They postulate an optimal parameter setup... 
treatment planning | online control | annular-phased-array technique | Annular-phased-array technique | Online control | Treatment planning
Journal Article
Medical Physics, ISSN 0094-2405, 03/2014, Volume 41, Issue 3, pp. 033301 - n/a
Purpose: Feasibility of targeted and volumetric hyperthermia (40–45 °C) delivery to the prostate with a commercial MR-guided endorectal ultrasound phased array... 
biomedical MRI | modeling | Biothermics and thermal processes in biology | ultrasonic transducer arrays | simulation | Drug delivery | Tissues | Acoustic beamforming | Finite element calculations | biodiffusion | phantoms | physiological models | Involving electronic [emr] or nuclear [nmr] magnetic resonance, e.g. magnetic resonance imaging | Ultrasound therapy | Processes or apparatus for generating mechanical vibrations of infrasonic, sonic or ultrasonic frequency | Clinical applications | endorectal ultrasound | Ultrasonography | Tissue response | hyperthermia | phased array | Transducers | Medical imaging | Therapeutic applications | ultrasonic therapy | bone | Biological material, e.g. blood, urine; Haemocytometers | finite element analysis | Dose‐volume analysis | biomedical transducers | MR‐guided HIFU | radiation therapy | Therapeutics | cancer | beamforming | Transducer arrays | Antenna arrays | MR-guided HIFU | SYSTEM | DESIGN | ADVANCED ADENOCARCINOMA | RADIOFREQUENCY HYPERTHERMIA | CANCER | RADIATION | TEMPERATURE DISTRIBUTION | ENHANCEMENT | THERMAL THERAPY | INTENSITY FOCUSED ULTRASOUND | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Models, Theoretical | Prostatic Neoplasms - radiotherapy | Temperature | Magnetic Resonance Spectroscopy - methods | Humans | Prostate - radiation effects | Male | Acoustics | High-Intensity Focused Ultrasound Ablation - instrumentation | Equipment Design | Feasibility Studies | Prostatic Neoplasms - therapy | Ultrasonics | Computer Simulation | Prostate - drug effects | Finite Element Analysis | High-Intensity Focused Ultrasound Ablation - methods | Hyperthermia, Induced - methods | Imaging, Three-Dimensional | Phantoms, Imaging | Prostatic Neoplasms - drug therapy | Index Medicus | PROSTATE | HYPERTHERMIA | NEOPLASMS | RECTUM | BEAMS | LIMITING VALUES | HEATING | ANIMAL TISSUES | CHEMOTHERAPY | FINITE ELEMENT METHOD | COMPUTERIZED SIMULATION | SKELETON | RADIOLOGY AND NUCLEAR MEDICINE | ABLATION | COMPUTER CODES | TEMPERATURE MONITORING | PHANTOMS | RADIOTHERAPY | POWER DENSITY | CYLINDRICAL CONFIGURATION | Thermotherapy Physics
Journal Article
IEEE Transactions on Antennas and Propagation, ISSN 0018-926X, 02/2014, Volume 62, Issue 2, pp. 814 - 821
Journal Article
Medical Physics, ISSN 0094-2405, 01/2013, Volume 40, Issue 1, pp. 013301 - n/a
Purpose: Ablative hyperthermia (>55 °C) has been used as a definitive treatment for accessible solid tumors not amenable to surgery, whereas mild hyperthermia... 
Medical use of ultrasonics for tissue modification (permanent and temporary) | biomedical MRI | Biothermics and thermal processes in biology | Acoustical measurements | biomedical ultrasonics | thermotherapy | Tissues | ultrasonic focusing | Sound pressure | Digital computing or data processing equipment or methods, specially adapted for specific applications | mild hyperthermia | Involving electronic [emr] or nuclear [nmr] magnetic resonance, e.g. magnetic resonance imaging | Ultrasonography | tumours | hyperthermia | Transducers | Medical imaging | Therapeutic applications | Diagnosis using ultrasonic, sonic or infrasonic waves | Muscles | Microphones | Magnetic resonance imaging | Image data processing or generation, in general | radiation therapy | Energy efficiency | MR‐HIFU | medical computing | multifoci | Cancer | MR-HIFU | MAGNETIC FLUIDS | DRUG-DELIVERY | CAVITATION | TEMPERATURE-SENSITIVE LIPOSOMES | CANCER | PROTON CHEMICAL-SHIFT | HIFU ABLATION | IN-VIVO | THERMAL THERAPY | PHASED-ARRAY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Rabbits | High-Intensity Focused Ultrasound Ablation - adverse effects | Hyperthermia, Induced - adverse effects | Risk | Acoustics | Hot Temperature | Pressure | Sonication - adverse effects | Sonication - methods | Magnetic Resonance Imaging | Animals | Surgery, Computer-Assisted | High-Intensity Focused Ultrasound Ablation - methods | Hyperthermia, Induced - methods | Phantoms, Imaging | Index Medicus | Thermotherapy Physics
Journal Article