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Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife

Traditional CyberKnife (CK) calibration uses TG‐51, which requires [Formula: see text] to be defined using the standard reference condition of 100 cm SSD in a [Formula: see text] field. Since the CK is calibrated using a 6 cm fixed‐aperture collimating cone at 80 cm SAD, the BJR‐25 method is commonl...

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Detalles Bibliográficos
Autores principales: Gersh, Jacob A., Willett, Benjamin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5690991/
https://www.ncbi.nlm.nih.gov/pubmed/26699583
http://dx.doi.org/10.1120/jacmp.v16i6.5720
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author Gersh, Jacob A.
Willett, Benjamin
author_facet Gersh, Jacob A.
Willett, Benjamin
author_sort Gersh, Jacob A.
collection PubMed
description Traditional CyberKnife (CK) calibration uses TG‐51, which requires [Formula: see text] to be defined using the standard reference condition of 100 cm SSD in a [Formula: see text] field. Since the CK is calibrated using a 6 cm fixed‐aperture collimating cone at 80 cm SAD, the BJR‐25 method is commonly used to relate circular‐field PDDs to square‐field PDDs for [Formula: see text] determination. Using the InCise MLC system, the CK is able to deliver rectangular fields, allowing a more direct measurement of [Formula: see text] using conventional reference conditions. We define the PDD correction factor ([Formula: see text]) as the ratio of [Formula: see text] measured using CK reference conditions to that measured using standard TG‐51 reference conditions. Using four ionization chambers (A1SL, CC08, CC13, and A19), [Formula: see text] is measured using a 6 cm fixed cone at 80 cm SSD and at 100 cm SSD using an effective [Formula: see text] MLC‐collimated field. These values are used to calculate [Formula: see text] , while the latter is used to directly calculate a [Formula: see text] value. This direct [Formula: see text] value is then compared to values determined using the BJR‐25 method. Using the MLC system, this study demonstrates conversion between the [Formula: see text] measured using CyberKnife reference conditions and TG‐51 reference conditions. These values provide the means for derivation of a [Formula: see text] curve as a function of direct measurements of [Formula: see text] using a 6 cm fixed‐aperture collimating cone at 80 cm SSD. PACS number: 87.55.Qr
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spelling pubmed-56909912018-04-02 Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife Gersh, Jacob A. Willett, Benjamin J Appl Clin Med Phys Radiation Oncology Physics Traditional CyberKnife (CK) calibration uses TG‐51, which requires [Formula: see text] to be defined using the standard reference condition of 100 cm SSD in a [Formula: see text] field. Since the CK is calibrated using a 6 cm fixed‐aperture collimating cone at 80 cm SAD, the BJR‐25 method is commonly used to relate circular‐field PDDs to square‐field PDDs for [Formula: see text] determination. Using the InCise MLC system, the CK is able to deliver rectangular fields, allowing a more direct measurement of [Formula: see text] using conventional reference conditions. We define the PDD correction factor ([Formula: see text]) as the ratio of [Formula: see text] measured using CK reference conditions to that measured using standard TG‐51 reference conditions. Using four ionization chambers (A1SL, CC08, CC13, and A19), [Formula: see text] is measured using a 6 cm fixed cone at 80 cm SSD and at 100 cm SSD using an effective [Formula: see text] MLC‐collimated field. These values are used to calculate [Formula: see text] , while the latter is used to directly calculate a [Formula: see text] value. This direct [Formula: see text] value is then compared to values determined using the BJR‐25 method. Using the MLC system, this study demonstrates conversion between the [Formula: see text] measured using CyberKnife reference conditions and TG‐51 reference conditions. These values provide the means for derivation of a [Formula: see text] curve as a function of direct measurements of [Formula: see text] using a 6 cm fixed‐aperture collimating cone at 80 cm SSD. PACS number: 87.55.Qr John Wiley and Sons Inc. 2015-11-08 /pmc/articles/PMC5690991/ /pubmed/26699583 http://dx.doi.org/10.1120/jacmp.v16i6.5720 Text en © 2015 The Authors. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Radiation Oncology Physics
Gersh, Jacob A.
Willett, Benjamin
Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife
title Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife
title_full Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife
title_fullStr Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife
title_full_unstemmed Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife
title_short Determination of [Formula: see text] using MLC‐collimated rectangular fields for absolute dosimetry of the CyberKnife
title_sort determination of [formula: see text] using mlc‐collimated rectangular fields for absolute dosimetry of the cyberknife
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5690991/
https://www.ncbi.nlm.nih.gov/pubmed/26699583
http://dx.doi.org/10.1120/jacmp.v16i6.5720
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