Construction of a radiation beam scanner and investigation of volume averaging correction factor effects on beam-profile

Author:

Tikkanen Joonas123ORCID,Morelius Jan1,Siiskonen Teemu123

Affiliation:

1. Radiation and Nuclear Safety Authority (STUK) Measurements and environmental monitoring, , Jokiniemenkuja 1, Vantaa FI-01370 , Finland

2. Helsinki Institute of Physics, University of Helsinki , Gustaf Hällströmin katu 2, Helsinki FI-00014 , Finland

3. University of Helsinki Department of Physics, , PO Box 64, Helsinki FI-00014 , Finland

Abstract

Abstract In radiation beam-profile measurements, an accurate positioning of the detector with high position resolution is essential. For this purpose, we built a scanning device capable of moving a detector in three dimensions (3D) using mainly parts from a commercial 3D-printer. The accuracy and repeatability of movement was tested with caliper, laser displacement sensor and repeated 60Co beam-profile measurements in a water phantom. The results from the caliper and the sensor showed position accuracy for the scanner to be better than $\pm$150 μm. The standard deviation of the error in position from laser sensor measurements was approximately 30 μm, and the beam profile scans showed a maximum deviation from the mean position of 50 μm. The effect of volume averaging correction factors on 60Co beam-profile was investigated with two different sized ionization chambers. The differences in the profiles were reduced significantly after applying the correction factors.

Funder

Academy of Finland

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

Reference8 articles.

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