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DoseLab is fast, simple, and powerful software for IMRT / VMAT / SBRT, and AAPM TG-40 / TG-142 image analysis and QA routines. Its built-in PDF reporting, PQI Analytics module, and user-friendly design make DoseLab the premier image analysis and QA system for modern radiation oncology clinics.
DoseLab is compatible with measurements from radiographic and radiochromic films, EPIDs (fluence only), detector arrays (both diode and ion chamber), and gels. Automated IMRT comparisons and a full TG-142 analysis suite for linear accelerators and IGRT imaging components make DoseLab your complete image analysis QA software package.
DoseLab is compatible with measurements from radiographic and radiochromic films, EPIDs (fluence only), detector arrays (both diode and ion chamber), and gels. Automated IMRT comparisons and a full TG-142 analysis suite for linear accelerators and IGRT imaging components make DoseLab your complete image analysis QA software package.
DoseLab Applications
- TG-142 QA ( images)
- MV and kV Imaging QA and analysis
- Automatic Comparison of images and dose maps ( images)
- PQI Analytics
- Film Calibration
- Winston-Lutz tests using film and EPID
DoseLab Features
- Supports popular imaging QA phantoms for
MV, kV, CT and CBCT
- PDF reports
- MLC strip test evaluation
- Starshot analysis
- Quick and efficient workflow
- Full automation
- Import images from all major TPS
- Flatness and symmetry
- Profiles
- Depth dose films
- Export to .xls
- "Use of a matchline dosimetry analysis tool (MDAT) to quantify dose homogeneity in the region between abutting tangential and supraclavicular radiation fields"
Journal of Applied Clinical Medical Physics , Vol. 11 , No. 4 (2010) - "Dose Calculation with Respiration-Averaged CT Processed from Cine CT without a respiratory surrogates"
Med. Phys. 35, 5738 (2008) - "Monte Carlo dose calculation of segmental IMRT delivery to a moving phantom using dynamic MLC and gating log files
"
Physics in Medicine and Biology, Volume 53, Number 10 (2008) - "The effects of intrafraction motion on dose homogeneity in a breast phantom with physical wedges, enhanced dynamic wedges, and ssIMRT
"
International Journal of Radiation Oncology Physics Volume 66, Issue 1 (2006) - "Retrospective Analysis of 2D Patient-Specific IMRT Verifications"
Med. Phys. 32, 838 (2005) - "Validation of physics
improvements for IMRT with a
commercial treatment-planning
system
"
Journal of Applied Clinical Medical Physics , Vol. 6 , No. 2 (2005) - "Detection of IMRT Delivery Errors using a Quantitative 2D Dosimetric Verification System"
Med. Phys. 32, 153 (2005)



