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Med Phys ; 29(8): 1797-806, 2002 Aug.
Article in English | MEDLINE | ID: mdl-12201427

ABSTRACT

In photon teletherapy, the size and functional form of the photon source spot affect both the sharpness of the penumbra of treatment fields and the sharpness of portal images. Photon source spot parameters are also used in photon teletherapy dose calculation codes. A simple method for characterizing the source spot would complement the existing, more involved methods that have been described in the medical physics literature. Such a method, using a rollbar made of tungsten or other high-Z metal, is used in industrial radiography. We describe the use of a tungsten rollbar for characterizing the source spot edge spread function (and thereby the source spot size and shape) of a megavoltage bremsstrahlung photon source. We use Monte Carlo simulations to quantify anticipated experimental artifacts of the method, assuming typical spot sizes for circ-function, Gaussian, and Bennett line shapes. We illustrate the use of the rollbar method by characterizing the source spot of a typical 9 MV linac used for industrial radiography. The source spot is analyzed using two approaches: (a) fitting the rollbar image with analytic functions and (b) using Abel inversion to obtain the cylindrically symmetric spot profile consistent with the measured rollbar image. Monte Carlo simulations, based on a 6 MV photon teletherapy accelerator, suggest that aspects of the method are applicable to medical bremsstrahlung sources.


Subject(s)
Radioisotope Teletherapy/instrumentation , Radioisotope Teletherapy/methods , Radiometry/instrumentation , Radiometry/methods , Radiotherapy, High-Energy/instrumentation , Radiotherapy, High-Energy/methods , Tungsten/radiation effects , Computer Simulation , Models, Theoretical , Monte Carlo Method , Particle Accelerators , Radiotherapy Planning, Computer-Assisted/instrumentation , Radiotherapy Planning, Computer-Assisted/methods , Sensitivity and Specificity
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