International Journal of Medical Physics, Clinical Engineering and Radiation Oncology

Volume 5, Issue 1 (February 2016)

ISSN Print: 2168-5436   ISSN Online: 2168-5444

Google-based Impact Factor: 0.65  Citations  

Small Volume Ionization Chambers Angular Dependence and Its Influence on Point-Dose Measurements

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DOI: 10.4236/ijmpcero.2016.51003    5,756 Downloads   8,075 Views  Citations
Author(s)

ABSTRACT

Purpose: Cylindrical ionization chambers as the PinPoint and the CC01 have high-spatial resolution and cylindrical symmetry in relevance to small fields. Dosimetry of newly advanced technologies that include non-coplanar beams, such as in Gamma-Knife, VMAT and IMRT treatment plans, the angular dependence of the ion chamber is essential. Therefore in this study we simulated two common used ion chambers using a Monte Carlo method. Methods: The angular dependence for the CC01 and the PinPoint were calculated for a vast angular range in a cylindrical water phantom for two LINAC photon beams, 6 MV and 15 MV. The calculations were performed for fully structural description of each ion chamber using Monte Carlo code, in order to reveal unsymmetrical response dose higher than 2% in medical applications. The calculated dose response, for the CC01 ion chamber, was validated with measurements. Results: The CC01 ion chamber showed a very small angular dependence compared to the PinPoint ion chamber. The relative angular dependence amplitude of the PinPoint was about 12% in the range of 0° - 110°. Conclusions: The differences in the ion chambers structure led to the variations in the relative angular dependence amplitude. Therefore, when choosing a detector, not only the volume of the ionization chamber but also its structure must be taken into consideration.

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Feldman, J. and Orion, I. (2016) Small Volume Ionization Chambers Angular Dependence and Its Influence on Point-Dose Measurements. International Journal of Medical Physics, Clinical Engineering and Radiation Oncology, 5, 26-32. doi: 10.4236/ijmpcero.2016.51003.

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