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Multi-isocenter stereotactic radiotherapy: implications for target dose distributions of systematic and random
M A Ebert1, S F Zavgorodni, L A Kendrick
1Department of Radiation Oncology, Sir Charles Gairdner Hospital, Nedlands, Western Australia, Australia. Martin.Ebert@health.wa.gov.au
International Journal of Radiation Oncology, Biology, Physics
|September 25, 2001
Summary
Alignment and localization errors significantly impact stereotactic radiotherapy (SRT) dose distributions, especially in multi-isocenter treatments. Minimizing systematic errors and random setup errors is crucial for accurate SRT delivery.
Area of Science:
- Medical Physics
- Radiation Oncology
- Radiotherapy Planning
Background:
- Stereotactic radiotherapy (SRT) requires precise dose delivery.
- Alignment and localization errors can compromise treatment accuracy.
- Understanding these errors' impact is vital for optimizing SRT techniques.
Purpose of the Study:
- To investigate the effect of alignment and localization errors on dose distributions in stereotactic radiotherapy (SRT).
- To determine the impact of systematic and random localization errors on multi-isocenter SRT treatments.
Main Methods:
- Utilized a research version of the FastPlan system to generate SRT plans.
- Examined random setup errors by convolving successive errors into dose calculation data.
- Investigated systematic errors by displacing isocenters from planned positions.
Main Results:
- For single-isocenter plans, setup errors significantly decrease minimum doses, particularly with larger target volumes.
- Multi-isocenter plans show similar target dose variations.
- Prescribing to a lower isodose value in multi-isocenter treatments mitigates some error effects.
Conclusions:
- Systematic errors in SRT target localization require rigorous quality assurance.
- Minimizing random setup errors through robust relocation systems is recommended.
- Accounting for these errors via treatment planning algorithm corrections or adequate margins is essential.

