The impact of field size and radiation quality on KAP-meter and CT-chamber response
Kerma-area product and kerma-length product are important practical dosimetric quantities used in diagnostic radiology. These quantities are measured by special types of dosimeters which are calibrated in standard radiation qualities established in calibration laboratories. However, in c...
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doaj-37db9f82e0494a09a99fb04ded3908102020-11-24T22:21:21ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39941452-81852018-01-01331879210.2298/NTRP1801087Z1451-39941801087ZThe impact of field size and radiation quality on KAP-meter and CT-chamber responseŽivanović Miloš Z.0Kržanović Nikola Lj.1Lazarević Đorđe R.2Boziari Argiro G.3Konstantinou Panagiota A.4Vinča Institute of Nuclear Sciences, Radiation and Environmental Protection Department, BelgradeVinča Institute of Nuclear Sciences, Radiation and Environmental Protection Department, Belgrade + School of Electrical Engineering, BelgradeVinča Institute of Nuclear Sciences, Radiation and Environmental Protection Department, Belgrade + School of Electrical Engineering, BelgradeGreek Atomic Energy Commission, Athens, GreeceGreek Atomic Energy Commission, Athens, GreeceKerma-area product and kerma-length product are important practical dosimetric quantities used in diagnostic radiology. These quantities are measured by special types of dosimeters which are calibrated in standard radiation qualities established in calibration laboratories. However, in clinical practice the dosimeters are used in different conditions, including the radiation quality and field size. In this paper, energy and field size dependence are studied for both types of dosimeters. One dosimeter of each type is tested. The KAP-meter has shown significant dependence on both radiation quality and field size, while the dependence of the CT-chamber is much less pronounced. Two different approaches can be used to correct for the difference between conditions during calibration and in clinical practice. When the clinical beam is well characterized and energy and field size dependence of the dosimeter are well known, the optimum solution is to apply the adequate correction factor to the measurements, keeping measurement uncertainty as low as possible. If this is not the case, the above limitations must be taken under consideration in the calculation of the expanded uncertainty budget.http://www.doiserbia.nb.rs/img/doi/1451-3994/2018/1451-39941801087Z.pdfkerma-area productkerma-length productenergy responsefield sizedosimetrymetrologydiagnostic radiologycalibration |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Živanović Miloš Z. Kržanović Nikola Lj. Lazarević Đorđe R. Boziari Argiro G. Konstantinou Panagiota A. |
spellingShingle |
Živanović Miloš Z. Kržanović Nikola Lj. Lazarević Đorđe R. Boziari Argiro G. Konstantinou Panagiota A. The impact of field size and radiation quality on KAP-meter and CT-chamber response Nuclear Technology and Radiation Protection kerma-area product kerma-length product energy response field size dosimetry metrology diagnostic radiology calibration |
author_facet |
Živanović Miloš Z. Kržanović Nikola Lj. Lazarević Đorđe R. Boziari Argiro G. Konstantinou Panagiota A. |
author_sort |
Živanović Miloš Z. |
title |
The impact of field size and radiation quality on KAP-meter and CT-chamber response |
title_short |
The impact of field size and radiation quality on KAP-meter and CT-chamber response |
title_full |
The impact of field size and radiation quality on KAP-meter and CT-chamber response |
title_fullStr |
The impact of field size and radiation quality on KAP-meter and CT-chamber response |
title_full_unstemmed |
The impact of field size and radiation quality on KAP-meter and CT-chamber response |
title_sort |
impact of field size and radiation quality on kap-meter and ct-chamber response |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Nuclear Technology and Radiation Protection |
issn |
1451-3994 1452-8185 |
publishDate |
2018-01-01 |
description |
Kerma-area product and kerma-length product are important practical
dosimetric quantities used in diagnostic radiology. These quantities are
measured by special types of dosimeters which are calibrated in standard
radiation qualities established in calibration laboratories. However, in
clinical practice the dosimeters are used in different conditions, including
the radiation quality and field size. In this paper, energy and field size
dependence are studied for both types of dosimeters. One dosimeter of each
type is tested. The KAP-meter has shown significant dependence on both
radiation quality and field size, while the dependence of the CT-chamber is
much less pronounced. Two different approaches can be used to correct for the
difference between conditions during calibration and in clinical practice.
When the clinical beam is well characterized and energy and field size
dependence of the dosimeter are well known, the optimum solution is to apply
the adequate correction factor to the measurements, keeping measurement
uncertainty as low as possible. If this is not the case, the above
limitations must be taken under consideration in the calculation of the
expanded uncertainty budget. |
topic |
kerma-area product kerma-length product energy response field size dosimetry metrology diagnostic radiology calibration |
url |
http://www.doiserbia.nb.rs/img/doi/1451-3994/2018/1451-39941801087Z.pdf |
work_keys_str_mv |
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