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Radiation Planning Assistant - A Streamlined, Fully Automated Radiotherapy Treatment Planning System
Published on: April 11, 2018
A comparison of three commercial IMRT treatment planning systems for selected paediatric cases
Ismail Eldesoky1, Ehab M Attalla, Wael M Elshemey
1Children's Cancer Hospital, Cairo, Egypt. ismail_eldesoky@yahoo.com
Insights
This study compared three intensity-modulated radiotherapy (IMRT) treatment planning systems (TPSs) for pediatric cancer. KonRad and Prowess demonstrated reduced monitor units and delivery times compared to XiO, with KonRad offering superior conformality.
Area of Science:
- Medical Physics
- Radiation Oncology
- Cancer Treatment
Background:
- Intensity-modulated radiotherapy (IMRT) is a crucial technique in modern cancer treatment.
- Evaluating different treatment planning systems (TPSs) is essential for optimizing IMRT delivery, especially in pediatric cases.
- Pediatric cancer treatment requires precise dose delivery to minimize long-term side effects.
Purpose of the Study:
- To evaluate and compare the performance of three IMRT TPSs: KonRad, XiO, and Prowess.
- To assess the efficiency and dosimetric characteristics of each TPS for pediatric cancer patients.
- To determine which TPS offers optimal treatment planning for selected pediatric malignancies.
Main Methods:
- Eleven pediatric patients with brain, orbit, head, and neck cancers were selected.
- IMRT treatment plans were created using KonRad, XiO, and Prowess on a Siemens ONCOR accelerator.
- Performance was analyzed using isodose distributions, dose-volume histograms (DVHs), monitor units (MUs), conformity index, and treatment delivery time.
Main Results:
- KonRad and Prowess significantly reduced MUs compared to XiO (p=0.001), leading to shorter treatment times.
- KonRad generally resulted in higher percentage volumes receiving low doses (2 Gy, 5 Gy) compared to Prowess (p=0.0001).
- KonRad demonstrated superior plan conformality over both XiO and Prowess.
Conclusions:
- All three TPSs were effective for IMRT in pediatric cases, meeting international standards.
- XiO exhibited the lowest performance among the evaluated systems.
- KonRad and Prowess offer advantages in terms of MU reduction and delivery efficiency, with KonRad providing better plan conformity.
Abstract:
This work aimed at evaluating the performance of three different intensity-modulated radiotherapy (IMRT) treatment planning systems (TPSs)--KonRad, XiO and Prowess--for selected pediatric cases. For this study, 11 pediatric patients with different types of brain, orbit, head and neck cancer were selected. Clinical step-and-shoot IMRT treatment plans were designed for delivery on a Siemens ONCOR accelerator with 82-leaf multileaf collimators (MLCs). Plans were optimized to achieve the same clinical objectives by applying the same beam energy and the same number and direction of beams. The analysis of performance was based on isodose distributions, dose-volume histograms (DVHs) for planning target volume (PTV), the relevant organs at risk (OARs), as well as mean dose (Dmean), maximum dose (Dmax), 95% dose (D₉₅), volume of patient receiving 2 and 5 Gy, total number of segments, monitor units per segment (MU/Segment), and the number of MU/cGy. Treatment delivery time and conformation number were two other evaluation parameters that were considered in this study. Collectively, the Prowess and KonRad plans showed a significant reduction in the number of MUs that varied between 1.8% and 61.5% (p-value = 0.001) for the different cases, compared to XiO. This was reflected in shorter treatment delivery times. The percentage volumes of each patient receiving 2 Gy and 5 Gy were compared for the three TPSs. The general trend was that KonRad had the highest percentage volume, Prowess showed the lowest (p-value = 0.0001). The KonRad achieved better conformality than both of XiO and Prowess. Based on the present results, the three treatment planning systems were efficient in IMRT, yet XiO showed the lowest performance. The three TPSs achieved the treatment goals according to the internationally approved standards.
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