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Dose Summation Strategies for External Beam Radiation Therapy and Brachytherapy in Gynecologic Malignancy: A Review from the NRG Oncology and NCTN Medical Physics Subcommittees

  • Hayeon Kim
  • , Yongsook C. Lee
  • , Stanley H. Benedict
  • , Brandon Dyer
  • , Michael Price
  • , Yi Rong
  • , Ananth Ravi
  • , Eric Leung
  • , Sushil Beriwal
  • , Mark E. Bernard
  • , Jyoti Mayadev
  • , Jessica R.L. Leif
  • , Ying Xiao

Producción científica: Review articlerevisión exhaustiva

25 Citas (Scopus)

Resumen

Definitive, nonsurgical management of gynecologic malignancies involves external beam radiation therapy (EBRT) and/or brachytherapy (BT). Summation of the cumulative dose is critical to assess the total biologic effective dose to targets and organs at risk. Cumulative dose calculation from EBRT and BT can be performed with or without image registration (IR) and biologic dose summation. Among these dose summation strategies, linear addition of dose-volume histogram (DVH) parameters without IR is the global standard for composite dose reporting. This approach stems from an era without image guidance and simple external beam and brachytherapy treatment approaches. With technological advances, EBRT and high-dose-rate BT have evolved to allow for volume-based treatment planning and delivery. Modern conformal therapeutic radiation involves volumetric or intensity modulated EBRT, capable of simultaneously treating multiple targets at different specified dose levels. Therefore, given the complexity of modern radiation treatment, the linear addition of DVH parameters from EBRT and high-dose-rate BT is challenging to represent the combined dose distribution. Deformable image registration (DIR) between EBRT and image guided brachytherapy (IGBT) data sets may provide a more nuanced calculation of multimodal dose accumulation. However, DIR is still nascent in this regard, and needs further development for accuracy and efficiency for clinical use. Biologic dose summation can combine physical dose maps from EBRT and each IGBT fraction, thereby generating a composite DVH from the biologic effective dose. However, accurate radiobiologic parameters are tissue-dependent and not well characterized. A combination of voxel-based DIR and biologic weighted dose maps may be the best approximation of dose accumulation but remains invalidated. The purpose of this report is to review dose summation strategies for EBRT and BT, including conventional equivalent dose in 2-Gy fractions dose summation without image registration, physical dose summation using 3-dimensional rigid IR and DIR, and biologic dose summation. We also provide general clinical workflows for IGBT with a focus on cervical cancer.

Idioma originalEnglish
Páginas (desde-hasta)999-1010
Número de páginas12
PublicaciónInternational Journal of Radiation Oncology Biology Physics
Volumen111
N.º4
DOI
EstadoPublished - nov 15 2021

Nota bibliográfica

Publisher Copyright:
© 2021 Elsevier Inc.

Financiación

Disclosures: S.H.B., M.E.B., B.D., H.K., Y.C.L., J.R.L.L., E.L., M.P., A.R., Y.R., and Y.X. have nothing to disclose. S.B. serves as a Varian consultant and Via oncology medical director. J.M. reports grants from NRG Oncology, as well as personal fees from Astra Zeneca, Varian Medical Systems, and GOG Foundation outside of the submitted work. This project was supported by grants U10CA180868 (NRG Oncology Operations) and U24CA180803 (IROC) from the National Cancer Institute.

FinanciadoresNúmero del financiador
NRG Oncology
National Childhood Cancer Registry – National Cancer InstituteU10CA180868, U24CA180803

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Good health and well being
      Good health and well being

    ASJC Scopus subject areas

    • Radiation
    • Oncology
    • Radiology Nuclear Medicine and imaging
    • Cancer Research

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