研究目的
To evaluate the dose calculation accuracy in the Prowess Panther treatment planning system (TPS) using the collapsed cone convolution (CCC) algorithm.
研究成果
The CCC algorithm in the Prowess Panther TPS provides adequate dose accuracy for 3D conformal radiotherapy in heterogeneous thorax regions, with dose differences generally within acceptable limits (less than 5%) and gamma passing rates above 59% for all criteria. Further evaluations on real patient data and advanced techniques are recommended.
研究不足
The study focused on 3D conformal radiotherapy with simple field geometries; more complex techniques like IMRT and VMAT were not evaluated. Uncertainties in MC simulations and measurements (e.g., temperature-pressure effects, polarity effects) could affect results. The phantom may not fully represent patient anatomy.
1:Experimental Design and Method Selection:
The study used the BEAMnrc Monte Carlo package to simulate an 18 MV photon beam from a Siemens Oncor? linear accelerator and compared it with experimental measurements and the CCC algorithm in the Prowess Panther TPS. Methods included dose calculations in homogeneous and heterogeneous phantoms, with gamma analysis for evaluation.
2:Sample Selection and Data Sources:
A Behyaar Thorax phantom with tissue-simulating media (lung, soft tissue, bone, spinal cord) was used. CT scans of the phantom were acquired for treatment planning.
3:List of Experimental Equipment and Materials:
Equipment included a Siemens Oncor? linear accelerator, p-type diode dosimeter, Farmer ionization chamber, water tank, Behyaar Thorax phantom, Siemens Somatom CT scanner, and MATLAB software.
4:Experimental Procedures and Operational Workflow:
Procedures involved MC simulations of the linac head and dose deposition, experimental measurements of depth doses and profiles, treatment planning with the TPS, and dose comparisons using gamma analysis and dose differences.
5:Data Analysis Methods:
Data were analyzed using dose difference calculations, 3D gamma analysis with criteria of 2%/2mm, 3%/3mm, and 5%/5mm, and statistical methods to ensure uncertainties below 1%.
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Oncor linear accelerator
Oncor
Siemens
Produces photon beams for radiotherapy treatments.
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CT scanner
Somatom
Siemens
Acquires CT images of the phantom for treatment planning.
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p-type diode dosimeter
PFD
IBA dosimetry
Used for experimental measurements of dose distributions.
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Farmer ionization chamber
FC-65 G
PTW
Measures point doses in the phantom during experiments.
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water tank
RFA-300 Water Phantom
Scanditronix-Wellhofer
Holds water for dose measurements in homogeneous conditions.
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thorax phantom
Behyaar Thorax phantom
Behyaar Sanaat sepahan
Simulates human torso with heterogeneous tissues for dose evaluation.
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treatment planning system
Prowess Panther
Prowess Inc.
Calculates and optimizes dose distributions using the CCC algorithm.
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electrometer
Dose-1
IBA Dosimetry
Measures charge from ionization chambers.
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MATLAB software
R2016a
Mathworks
Used for data analysis and gamma index computations.
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