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Target motion management in breast cancer radiation therapy Cover

Target motion management in breast cancer radiation therapy

Open Access
|Oct 2021

Figures & Tables

Figure 1

Anterior (left) and lateral (right) views of 3D surface images of the target left-sided breast using a 3D surface camera. With permission.27

Figure 2

Heart position on axial CT slices of the same patient with breast cancer at free-breathing (left) and deep-inspiration breath-hold (DIBH) (right). The red line indicates the tangential treatment field border for whole-breast irradiation (WBI). With permission.75

Figure 3

Comparison of whole heart dose-volume histogram in breathing adaptive radiotherapy for the same left-sided breast cancer patient for free-breathing (FB), end-expiration breath-hold (EBH), end-expiration gating (EG), end inspiration gating (IG), and DIBH plans. With permission.96

Figure 4

Comparison of cardiac sparing in prone (left) and supine (right) positions. The virtual blue box illustrates the in-field volume of the heart and lung by the Eclipse TPS. With permission.115

Figure 5

Heat map of fractional time that the surgical cavity occupies a given position during the MR-guided accelerated partial-breast irradiation (APBI) for two different patients with small (left) and large (right) displacements during the treatment delivery. With permission.158

Figure 6

Schematics of iso-layered repainting in active scanning particle therapy. Three rescanning is applied within each respiration cycle. The middle rescanning (no. 2) has a reverse scheme as the scanning starts from the bottom and ends at the top. With permission.33
DOI: https://doi.org/10.2478/raon-2021-0040 | Journal eISSN: 1581-3207 | Journal ISSN: 1318-2099
Language: English
Page range: 393 - 408
Submitted on: Jun 10, 2021
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Accepted on: Aug 4, 2021
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Published on: Oct 8, 2021
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2021 Elham Piruzan, Naser Vosoughi, Seied Rabi Mahdavi, Leila Khalafi, Hojjat Mahani, published by Association of Radiology and Oncology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.