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1.
Radiat Prot Dosimetry ; 116(1-4 Pt 2): 202-7, 2005.
Article in English | MEDLINE | ID: mdl-16604627

ABSTRACT

Researchers at the INEEL, MSU, LLNL and UCD have undertaken development of MINERVA, a patient-centric, multi-modal, radiation treatment planning system, which can be used for planning and analysing several radiotherapy modalities, either singly or combined, using common treatment planning tools. It employs an integrated, lightweight plugin architecture to accommodate multi-modal treatment planning using standard interface components. The design also facilitates the future integration of improved planning technologies. The code is being developed with the Java programming language for interoperability. The MINERVA design includes the image processing, model definition and data analysis modules with a central module to coordinate communication and data transfer. Dose calculation is performed by source and transport plugin modules, which communicate either directly through the database or through MINERVA's openly published, extensible markup language (XML)-based application programmer's interface (API). All internal data are managed by a database management system and can be exported to other applications or new installations through the API data formats. A full computation path has been established for molecular-targeted radiotherapy treatment planning, with additional treatment modalities presently under development.


Subject(s)
Image Interpretation, Computer-Assisted/methods , Programming Languages , Radiometry/methods , Radiotherapy Planning, Computer-Assisted/methods , Software , User-Computer Interface , Body Burden , Radiation Dosage , Relative Biological Effectiveness , Software Design , Systems Integration
2.
Appl Radiat Isot ; 61(5): 745-52, 2004 Nov.
Article in English | MEDLINE | ID: mdl-15308138

ABSTRACT

Researchers at the Idaho National Engineering and Environmental Laboratory and Montana State University have undertaken development of MINERVA, a patient-centric, multi-modal, radiation treatment planning system. This system can be used for planning and analyzing several radiotherapy modalities, either singly or combined, using common modality independent image and geometry construction and dose reporting and guiding. It employs an integrated, lightweight plugin architecture to accommodate multi-modal treatment planning using standard interface components. The MINERVA design also facilitates the future integration of improved planning technologies. The code is being developed with the Java Virtual Machine for interoperability. A full computation path has been established for molecular targeted radiotherapy treatment planning, with the associated transport plugin developed by researchers at the Lawrence Livermore National Laboratory. Development of the neutron transport plugin module is proceeding rapidly, with completion expected later this year. Future development efforts will include development of deformable registration methods, improved segmentation methods for patient model definition, and three-dimensional visualization of the patient images, geometry, and dose data. Transport and source plugins will be created for additional treatment modalities, including brachytherapy, external beam proton radiotherapy, and the EGSnrc/BEAMnrc codes for external beam photon and electron radiotherapy.


Subject(s)
Boron Neutron Capture Therapy/statistics & numerical data , Radiotherapy Planning, Computer-Assisted/statistics & numerical data , Brain Neoplasms/radiotherapy , Combined Modality Therapy , Computer Graphics , Humans , Software , User-Computer Interface
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