Published March 1994 | Version v1
Journal article

Surface doses from combined electron/photon fields in radiotherapy

  • 1. Illawarra Cancer Centre, Wollongong, NSW (Australia). Dept. of Radiotherapy
  • 2. Wollongong Univ., Wollongong, NSW (Australia). Dept. of Physics
  • 3. Newcastle Mater Misericordiae Hospital, Waratah, NSW (Australia). Dept. of Radiation Oncology

Description

Using mixed modality treatments of photon and electron beams, some skin sparing can be acquired whilst administering a safer dose to crucial structures such as the spine or lung. The combination of 6MV X-rays and 12 MeV electron beams in the treatment of breast nodes is a clinical example where such treatments are beneficial. By weighting the photon and electron beams accordingly, the surface dose and dose at depth can be changed whilst not dramatically varying the depth at which the 90% dose level is maintained. In order to accurately predict near surface dose, build up results were obtained using TLD extrapolation, Markus parallel plate and Attix parallel plate ionisation chambers in solid water phantom. This data was then used to predict surface dose due to different beam weights. Depending on the weighting given to the photon and electron beams, the surface dose and dose at depth varies. For example, when 6Mv X-rays and 12MeV electrons are combined the percentage dose at surface and 20cm depth is 46%/23%, 54%/20%, 61%/15% for 60/40, 50/50 and 40/60 X-ray/electron weighting respectively. For these weighting, the depth of the 90% level remained at 30mm. From a clinical point of view this data is important, showing that the 90% level of radiation does not vary in depth significantly provided the ratio of photon/electron weights is kept within a range of 60/40 to 40/60. However by varying the weighting, it is possible to control dose to skin in particular to produce the optimum level for both areas whilst still delivering the required tumour dose. 28 refs., 2 tabs., 13 figs

Additional details

Publishing Information

Journal Title
Australasian Physical and Engineering Sciences in Medicine
Journal Volume
17
Journal Issue
1
Journal Page Range
p. 14-22.
ISSN
0158-9938
CODEN
AUPMDI