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KMID : 1164220210330010099
Journal of Korean Society for Radiotherapeutic Technology
2021 Volume.33 No. 1 p.99 ~ p.108
Evaluation of usefulness for Stereotactic Partial Breast Irradiation(S-PBI) by using Surface Fiducial Marker
Kim Jong-Yeol

Jung Dong-Min
Kim Se-Young
Yoo Hyun-Jong
Choi Jung-Hoan
Park Hyo-Kuk
Baek Jong-Geol
Lee Sang-Kyu
Cho Jeong-Hee
Abstract
Purpose: The goal of this study is to evaluate usefulness of noninvasive method instead of previous inserting Fiducial Marker Method when performing Stereotactic Partial Breast Irradiation in CyberKnife.

Material and methods: For consistency of Imaging Center, we evaluated both oblique images at angle 45 and 315 acquired from 2D Simulator and CyberKnife quantitatively through dice similarity coefficient. Also, location reproducibility of Surface Fiducial Marker was analyzed from 2D Simulator, treatment plans and CyberKinfe images by using 8 Fiducial Markers made of gold attached to ATOM Phantom based on our institution's protocols.

Results: The results of the estimated consistency were 0.87 and 0.9 at the oblique angle 45 and 315, respectively. For location consistency of Surface Fiducial Markers, values of horizontal vertical direction of left breast were Superior/Inferior 0.3 mm, Left/Right -0.3 mm, Anterior/Posterior 0.4 mm, and the values of rotational direction were Roll 0.3 ¡Æ, Pitch 0.2 ¡Æ, Yaw 0.4 ¡Æ. The values of horizontal vertical direction of right breast were Superior/Inferior -0.1 mm, Left/Right -0.1 mm, Anterior/Posterior -0.1 mm, and the values of rotational direction were Roll 0.2¡Æ, Pitch 0.1¡Æ, Yaw 0.1¡Æ.

Conclusions: We expect that the protocols used by Surface Fiducial Markers when performing Stereotactic Partial Breast Irradiation in CyberKnife will provide protection from pain and cut expenses for treatment and reduce treatment errors and make treatment more accurate by suggesting treatment protocols based on high consistency of Imaging Center and reproducibility of Fiducial Markers.
KEYWORD
Cyberknife, Stereotactic Partial Breast Irradiation, Surface Fiducial Marker, Protocol
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