Product details
Oncentra MasterPlan Apr 9, 2009
Company details
Nucletron
8671 Robert Fulton Drive
Columbia
MD
21046
United States
Tel:
800.336.2249
Oncentra MasterPlan is a fully featured external beam planning system with IMRT planning capabilities.
Request infoThe system offers users and clinics, a high degree of flexibility in conjunction with numerous innovative planning capabilities. Intuitive contouring tools, powerful dose calculation algorithms, and novel plan review modules make Oncentra MasterPlan the choice for external beam planning.
Oncentra MasterPlan is the natural evolution from several successful external beam planning systems. The rich global heritage provides a solid foundation for numerous external beam planning tools.
Strict DICOM conformance is a key element that sets Oncentra MasterPlan apart from other planning systems. MasterPlan competently handles DICOM based images from various modalities like CT, MRI and PET. The system provides powerful registration and fusion while retaining the DICOM objects in their inherent forms. The target areas and critical volumes can be segmented using a large variety of automated and time saving tools.
MasterPlan also includes a highly graphical and user friendly interface. This feature is highly prevalent in the “State of the Art” Optimizer module which provides rapid optimization of IMRT plans with excellent clinical results. The Direct Step & Shoot protocol provides superb dose conformity with fewer MLC segments, resulting in shorter patient treatment times.
Advanced physics algorithms are utilized to calculate external beam treatment plans. Highly accurate modeling of the treatment unit head, combined with the advanced collapsed cone algorithm for photons, and Monte Carlo for electrons provide clinicians with planning accuracy.
Oncentra MasterPlan provides clinicians with solid planning capabilities, extreme flexibility, and dependable quality. The system can be customized on both the clinical level and at the user level to meet their specific requirements.
Oncentra gives clinicians a unique choice in treatment planning. By assembling powerful, well thought out planning features, in a modern PC environment, Nucletron offers clinicians, unprecedented planning options with Oncentra MasterPlan.
Categories
- Biomolecules: structure and physical properties
- Subcellular structure and processes
- Cellular structure and processes
- Properties of higher organisms
- Ionizing radiations (ultraviolet, X-rays,gamma-rays, ions, electrons, positrons, neutrons, and mesons, etc.)
- Optical radiation (near ultraviolet,visible, and infrared)
- Radio frequency and microwave radiation (power lines)
- Sound and ultrasound
- Magnetic fields
- Electric fields
- Radiation monitoring, control, and safety
- Photon dosimetry: theory and algorithms
- Photon dosimetry: measurements
- Electron and positron dosimetry: theory and algorithms
- Electron and positron dosimetry: measurements
- Brachytherapy
- Conformal radiation treatment
- Stereotactic radiosurgery
- Beam intensity modification: wedges, Na Radioimmunotherapycompensators
- Portal imaging in therapy
- Proton, neutron, and heavier particle dosimetry: theory and algorithms
- Proton, neutron, and heavier particle dosimetry: measurements
- Microdosimetry
- Record and verify systems and applications
- Treatment planning, optimization, tissue response factors, and dose-volume analysis
- Collimation
- Simulation
- Monte Carlo applications
- Quality assurance in radiotherapy
- Thermotherapy (hyperthermia and cryogenic therapy)
- Electrotherapy
- Photodynamic therapy
- Sound and ultrasound therapy/lithotripsy
- Radiation generators
- Ancillary equipment
- Quality assurance equipment
- Image quality: contrast, resolution, noise, etc.
- Image reconstruction and registration
- Image analysis
- Computer-aided diagnosis
- Single photon emission computed tomography (SPECT)
- Positron emission tomography (PET)
- Radiopharmaceuticals
- Digital imaging
- Scintillation cameras
- Dosimetry
- Quantitative measurements and scanning
- Bone densitometry
- X-ray radiography
- Fluoroscopy
- Angiography
- Mammography
- Computed tomography (CT)
- Digital radiography
- Transmission imaging
- Bone densitometry
- Instrumentation
- Angiography and macroscopic flow estimation
- Clinical imaging studies
- Non-ionizing radiation equipment and techniques
- Ultrasonography
- Thermography
- Visible radiation: diaphanography, transillumination, laser imaging
- Electrical impedance tomography (EIT)
- Computer simulation
- Electron, neutron and X-ray diffraction and scattering
- Scattering of visible, uv, and infrared radiation
- Scanning tunneling and atomic force microscopy
- Electron microscopy
- EXAFS spectroscopy
- X-ray spectroscopy (see also 87.64.Fb EXAFS spectroscopy)
- EPR and NMR spectroscopy
- Infrared and Raman spectroscopy
- Electron and photoelectron spectroscopy
- Optical absorption, magnetic circular dichroism, and fluorescence spectroscopy
- Mossbauer spectroscopy
- Light microscopy: bright-field, dark-field, phase contrast, DIC
- Confocal microscopy
- Multiphoton microscopy
- Near-field scanning optical microscopy
- Aerospace bio and medical physics
- Films: silver bromide based, radiochromic, etc.
- Chemical dosimetry
- Ionization dosimetry
- Calorimetric dosimetry
- Solid state detectors
- Thermoluminescence, bioluminescence, etc.
- Magnetic resonance
- Phantoms
- Biomaterials and biological interfaces
- Optical trapping
- Micromanipulators
- Patch clamping
- Micromachining
- Morphometry and stereology
- Tissue and cellular engineering and biotechnology
- Biological signal processing and instrumentation
- Dynamical, regulatory, and integrative biology
- Neural engineering
- Biomedical engineering; instrumentation
- General equipment (e.g. Sensors)
- Biomedical applications of nanotechnology
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