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Flattening Filter-Free Volumetric-Modulated Arc Radiotherapy for Left-Sided Whole-Breast, Partial-Breast, and Postmastectomy Irradiations

Publication ,  Journal Article
Zhang, R; Xie, Y; Ditusa, C; Ohler, R; Heins, D; Bourgeois, D; Guo, B
Published in: Journal of Medical Physics
April 1, 2022

Purpose: Unflattened photon beams exhibit many benefits over traditional flattened beams for radiotherapy (RT), but comprehensive evaluations of dosimetric results and beam-on time using flattening filter-free (FFF) beams for all types of breast irradiations are still lacking. The purpose of this study was to investigate if FFF RT can maintain equal or better dose coverage than standard flattened-beam RT while reducing doses to organs at risk (OARs) and beam-on time for various types of breast cancer irradiations. Methods and Materials: FFF volumetric-modulated arc therapy (FFF-VMAT) and standard VMAT (STD-VMAT) treatment plans were created for 15 whole-breast irradiation (WBI) patients with 50 Gy/25 fractions, 13 partial-breast irradiation (PBI) patients with 38.5 Gy/10 fractions, and 9 postmastectomy irradiation (PMI) patients with 50 Gy/25 fractions. Planning target volume (PTV) coverage and dose to OARs were evaluated. Results: Both techniques produced clinically acceptable plans for all three types of irradiations. For WBI, FFF-VMAT plans exhibited similar PTV and OARs evaluation metrics as STD-VMAT. For PBI, FFF-VMAT plans showed significantly lower mean and maximum doses for ipsilateral and contralateral lungs, contralateral breast, and heart. For PMI, FFF-VMAT plans showed significantly lower mean dose and V 5 for contralateral breast but significantly higher D mean, D max, and V 20 for ipsilateral lung and significantly higher D mean, V 22.5, and V 30 for heart. FFF-VMAT techniques significantly reduced beam-on time than STD-VMAT for all cases. Conclusion: This work has shown that FFF beams are most beneficial for small-field irradiation such as PBI, and breast cancer patients could potentially benefit from the shortened beam-on time.

Duke Scholars

Published In

Journal of Medical Physics

DOI

EISSN

1998-3913

ISSN

0971-6203

Publication Date

April 1, 2022

Volume

47

Issue

2

Start / End Page

166 / 172

Related Subject Headings

  • 3211 Oncology and carcinogenesis
  • 3202 Clinical sciences
  • 1112 Oncology and Carcinogenesis
  • 1103 Clinical Sciences
 

Citation

APA
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MLA
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Zhang, R., Xie, Y., Ditusa, C., Ohler, R., Heins, D., Bourgeois, D., & Guo, B. (2022). Flattening Filter-Free Volumetric-Modulated Arc Radiotherapy for Left-Sided Whole-Breast, Partial-Breast, and Postmastectomy Irradiations. Journal of Medical Physics, 47(2), 166–172. https://doi.org/10.4103/jmp.jmp_146_21
Zhang, R., Y. Xie, C. Ditusa, R. Ohler, D. Heins, D. Bourgeois, and B. Guo. “Flattening Filter-Free Volumetric-Modulated Arc Radiotherapy for Left-Sided Whole-Breast, Partial-Breast, and Postmastectomy Irradiations.” Journal of Medical Physics 47, no. 2 (April 1, 2022): 166–72. https://doi.org/10.4103/jmp.jmp_146_21.
Zhang R, Xie Y, Ditusa C, Ohler R, Heins D, Bourgeois D, et al. Flattening Filter-Free Volumetric-Modulated Arc Radiotherapy for Left-Sided Whole-Breast, Partial-Breast, and Postmastectomy Irradiations. Journal of Medical Physics. 2022 Apr 1;47(2):166–72.
Zhang, R., et al. “Flattening Filter-Free Volumetric-Modulated Arc Radiotherapy for Left-Sided Whole-Breast, Partial-Breast, and Postmastectomy Irradiations.” Journal of Medical Physics, vol. 47, no. 2, Apr. 2022, pp. 166–72. Scopus, doi:10.4103/jmp.jmp_146_21.
Zhang R, Xie Y, Ditusa C, Ohler R, Heins D, Bourgeois D, Guo B. Flattening Filter-Free Volumetric-Modulated Arc Radiotherapy for Left-Sided Whole-Breast, Partial-Breast, and Postmastectomy Irradiations. Journal of Medical Physics. 2022 Apr 1;47(2):166–172.

Published In

Journal of Medical Physics

DOI

EISSN

1998-3913

ISSN

0971-6203

Publication Date

April 1, 2022

Volume

47

Issue

2

Start / End Page

166 / 172

Related Subject Headings

  • 3211 Oncology and carcinogenesis
  • 3202 Clinical sciences
  • 1112 Oncology and Carcinogenesis
  • 1103 Clinical Sciences