Setup uncertainties: consequences for multi-isocentre stereotactic radiotherapy
- 1. University of Western Australia, (Australia). Department of Physics
- 2. Sir Charles Gairdner Hospital, Nedlands, WA (Australia). Department of Radiation Oncology
- 3. Royal Adelaide Hospital, Adelaide, SA (Australia). Department of Medical Physics
- 4. Medtronic Sofamor Danek, Bloomfield, CO (United States). Surgical Navigations Technology
- 5. Cookridge Hospital Leeds (United Kingdom)
- 6. Perth Radiation Oncology Centre, Wembley, WA (Australia)
Description
Full text: Beam data for use in dose calculations by planning systems is generally measured under static and controlled conditions. Yet, patient motion and setup uncertainties will effectively blur the resulting dose distributions leading to a discrepancy between planned and delivered dose distributions. This is particularly so for stereotactic radiotherapy where small well-defined fields are used. When multiple isocentres are used (possibly for larger irregular lesions), relative motion of isocentres due to setup variations may have deleterious effects on the intended radiation delivery. The influence of setup uncertainties was examined by performing a three-dimensional convolution of measured off-axis ratio (OAR) data with a Maxwellian distribution, with standard deviations representing several feasible levels of inaccuracy in patient setup. A sample of patient plans (predominantly multi-isocentre plans) were then considered using original (measured) OAR data, and then modified data in order to observe the resulting effect. The effect of systematic localisation error was also considered by examining resulting DVHs as isocentres were shifted by fixed amounts. In all cases considered, the maximum dose varied quite minimally with increase in setup error with the variation decreasing with increasing high-dose volume. The minimum dose however varied more significantly, and this has serious consequences for dose prescription as the minimum dose can be the controlling factor in treatment efficacy. For multi-isocentre plans, the degree of non-uniformity generated by setup error was not as significant as originally expected. This is in part due to the non-uniformity already present in such plans to begin with. Through incorporation of the effect of setup error into planning data, the influence of setup variations on dose distributions for multi-isocentre treatments has been determined. This influence should be considered when creating plans based on the level of spatial. Copyright (2000) Australasian College of Physical Scientists and Engineers in Medicine
Additional details
Publishing Information
- Journal Title
- Australasian Physical and Engineering Sciences in Medicine
- Journal Volume
- 23
- Journal Issue
- 4
- Journal Page Range
- p. 153
- ISSN
- 0158-9938
- CODEN
- AUPMDI
Conference
- Title
- EPSM 2000. The annual conference of Engineering and Physical Sciences in Medicine
- Dates
- 5-9 Nov 2000
- Place
- Newcastle, NSW (Australia)
INIS
- Country of Publication
- Australia
- Country of Input or Organization
- Australia
- INIS RN
- 33004868
- Subject category
- S61: RADIATION PROTECTION AND DOSIMETRY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- BOLTZMANN STATISTICS; DATA ANALYSIS; DOSE-RESPONSE RELATIONSHIPS; ERRORS; RADIATION DOSE DISTRIBUTIONS; RADIATION DOSES; RADIOTHERAPY; THREE-DIMENSIONAL CALCULATIONS
- Descriptors DEC
- DOSES; MEDICINE; NUCLEAR MEDICINE; RADIOLOGY; THERAPY