Assessment of planning reproducibility in three-dimensional field-in-field radiotherapy technique for breast cancer: impact of surgery-simulation interval

The three-dimensional field-in-field (3-D FIF) technique for radiotherapy is an advanced, state-of-the-art method that uses multileaf collimators to generate a homogeneous and conformal dose distribution via segmental subfields. The purpose of this study is to evaluate the dosimetric reproducibility...

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Veröffentlicht in:Scientific reports 2021-01, Vol.11 (1), p.1556-1556, Article 1556
Hauptverfasser: Lee, Dong Soo, Lee, Young Kyu, Kang, Young Nam, Won, Yong Gyun, Park, Seung Hwan, Kim, Yong Seok, Kim, Jeong Soo, Won, Hye Sung
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Sprache:eng
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Zusammenfassung:The three-dimensional field-in-field (3-D FIF) technique for radiotherapy is an advanced, state-of-the-art method that uses multileaf collimators to generate a homogeneous and conformal dose distribution via segmental subfields. The purpose of this study is to evaluate the dosimetric reproducibility of 3-D FIF plans using the original simulation computed tomography (iCT) scans and re-simulation CT (rCT) scans for whole breast irradiation (WBI) schedule. This study enrolled a total of 34 patients. The study population underwent iCT scans for standard WBI and took rCT scans after 45 Gy of WBI for cone down boost plans. The dosimetric parameters (V 105% , V 103% , V 100% , V 98% , V 95% , V 90% , V 50% ), plan quality indices (conformity index, homogeneity index) and clinical parameters (isocenter-breast axis, isocenter-lung axis, soft tissue volumes within radiation field, lung volumes within radiation field) were assessed. The median time interval from surgery to iCT was 33 days and from iCT to rCT was 35 days. All dosimetric parameters exhibited statistically significant differences between iCT and rCT among cohorts with a surgery-iCT interval of 
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-020-78666-8