CAT3D
Radiotherapy treatment planning system with features for 3D, IMRT and 2D treatments. Implements two algorithms for calculating dose distributions: Pencil Beam and Collapsed Cones Superposition. Supports brachytherapy planning and many imaging capabilities including segmentation, 2D and 3D reconstructions, multimodal recording and merging, and orthogonal X-ray localization.Wide connectivity with patient management systems and treatments, via DicomRT and LANTIS. Support importing DICOM, JPEG and TIFF and import structures in DicomRT-Struct standard.
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CAT3D is a radiotherapy treatment planning system, which has dosimetry capabilities for teletherapy, dosimetry for brachytherapy and an optional module for IMRT.
CAT3D shows isodose curves overlapped with the patient's anatomy for both computer tomography (CT) and magnetic resonance (MRI).
The image processing module allows the generation of sagittal, coronal or arbitrary space-orientated reconstruction and the dosimetry module generates the dose distribution related to any of these reconstructed plans.
For the generation of conformal beams, CAT3D generates digitally reconstructed radiographies (DRR) in beam eye view – BEV.
CAT3D's DRR can be generated by simulating diagnosis X-rays (similar to the simulator's in energy) or high energy X-rays (2 MeV) to obtain images like the simulator films' in the LINAC itself.
The CAT3D PortalCheck tool allows you to overlay the DRR with patient positioning images.
The 3D representantions in perspective are also among the product's resources and allow to fuse in space: anatomy, isodose surfaces and regions of interest defined by the user (ROI).
The dose/volume histograms allow a detailed study of how a region defined as a ROI is being achieved. -
- Pencil Beam convolution/superposition.
- Collapsed Cones convolution/superposition.
- Multimodal image registration and fusion.
- Import Dicom CT, MRI, PET, DicomRT-Struct.
- Export DicomRT-Plan, Lantis .rtp and .mlc .
- DVH for up to 16 ROIs simultaneously.
- DVH cumulative and differential.
- DVH allows rendering of custom constrains.
- DRR for static and dynamic fields.
- Export DRRs as Dicom files.
- Isodose presentations over axial, coronal, sagittal and oblique planes.
- Isodose rendering in 3D window.
- Support for wedges: physical, motorized, EDW and virtual.
- Optional IMRT planning. Export to solid modulators and Step&Shoot.
- Support for stereotactic localizers.
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Configuration Dicom Connectivity Image Processing Registration and Fusion Planning Co-60 Planning LINAC Planning Electrons (optional) IMRT CAT3D Full Yes Yes Yes Yes Yes Yes No CAT3D Full + IMRT Yes Yes Yes Yes Yes Yes Yes CAT3D Co-Only Yes Yes Yes Yes No No No CAT3D V.S.* Yes Yes Yes No No No No
*Virtual Simulator (workstation for segmentation and visualization of the plans) -
We have as a rule to submit the CAT3D to the test cases and standards published by the International Atomic Energy Agency (IAEA). We chose the IAEA standards as our benchmark for representing the consensus opinion of a broad group of medical physics experts representing various continents, including Latin America. In particular, we work with the criteria set out in the documents IAEA TEC DOC 1540 and IAEA TEC DOC 1583.
Several authors have investigated the accuracy of CAT3D under experimental conditions or in published test cases. Among the most significant works, due to their origin and publication, we highlight "Dosimetric verification of radiotherapy treatment planning systems: Results of IAEA pilot study." [1]. In this work the responses of several internationally known planning systems in cases of variable complexity, including heterogeneities, doses in blocked regions, tangential incidences, etc., are studied. The results presented by the tables in this publication place the CAT3D among the most accurate systems available in the market.
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Diversos autores têm investigado a precisão do CAT3D em condições experimentais ou em casos de testes publicados. Entre os trabalhos mais significativos, por sua origem e publicação, destacamos “Dosimetric verification of radiotherapy treatment planning systems: Results of IAEA pilot study.” [1]. Nesse trabalho são estudadas as respostas de vários sistemas de planejamento conhecidos internacionalmente, em casos de complexidade variável, incluindo heterogeneidades, doses em regiões bloqueadas, incidências tangenciais, etc. Os resultados apresentados pelas tabelas dessa publicação colocam o CAT3D entre os sistemas mais precisos disponíveis no mercado.
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[1] - “Dosimetric verification of radiotherapy treatment planning systems: Results of IAEA pilot study”.
(http://www.sciencedirect.com/science/article/pii/S0167814008003654) Radiotherapy and Oncology . Vol. 89, Issue 4, 2008. -
Operating system: Windows 10 - 64 bits
Minimum Hardware Configuration:- 8-core Intel i7 CPU with 3.2 GHz
- RAM - 16 GB
- HD 1 TeraByte or greater.
- Video Card: NVidia GeForce 2 GB
- 23-inch LED monitor with 1920x1080 resolution