Literature DB >> 26520719

Technical Note: Fabricating Cerrobend grids with 3D printing for spatially modulated radiation therapy: A feasibility study.

Xiaofeng Zhu1, Joseph Driewer1, Sicong Li1, Vivek Verma1, Yu Lei1, Mutian Zhang1, Qinghui Zhang1, Dandan Zheng1, Timothy Cullip2, Sha X Chang2, Andrew Z Wang2, Sumin Zhou1, Charles A Enke1.   

Abstract

PURPOSE: Grid therapy has promising applications in the radiation treatment of large tumors. However, research and applications of grid therapy are limited by the accessibility of the specialized blocks that produce the grid of pencil-like radiation beams. In this study, a Cerrobend grid block was fabricated using the 3D printing technique.
METHODS: A grid block mold was designed with flared tubes which follow the divergence of the beam. The mold was 3D printed using a resin with the working temperature below 230 °C. The melted Cerrobend liquid at 120 °C was cast into the resin mold to yield a block with a thickness of 7.4 cm. At the isocenter plane, the grid had a hexagonal pattern, with each pencil beam diameter of 1.4 cm; the distance between the beam centers was 2.1 cm.
RESULTS: The dosimetric properties of the grid block were studied using small field dosimeters: a pinpoint ionization chamber and a stereotactic diode. For a 6 MV photon beam, its valley-to-peak ratio was 20% at dmax and 30% at 10 cm depth; the output factor was 84.9% at dmax and 65.1% at 10 cm depth.
CONCLUSIONS: This study demonstrates that it is feasible to implement 3D printing technique in applying grid therapy in clinic.

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Year:  2015        PMID: 26520719     DOI: 10.1118/1.4932223

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  3 in total

1.  Grid Block Design Based on Monte Carlo Simulated Dosimetry, the Linear Quadratic and Hug-Kellerer Radiobiological Models.

Authors:  Somayeh Gholami; Hassan Ali Nedaie; Francesco Longo; Mohammad Reza Ay; Sharifeh A Dini; Ali S Meigooni
Journal:  J Med Phys       Date:  2017 Oct-Dec

2.  Dosimetric evaluation of respiratory gated volumetric modulated arc therapy for lung stereotactic body radiation therapy using 3D printing technology.

Authors:  KyoungJun Yoon; Chiyoung Jeong; Sung-Woo Kim; Byungchul Cho; Jungwon Kwak; Su Ssan Kim; Si Yeol Song; Eun Kyung Choi; SeungDo Ahn; Sang-Wook Lee
Journal:  PLoS One       Date:  2018-12-26       Impact factor: 3.240

3.  Low-cost optical scanner and 3-dimensional printing technology to create lead shielding for radiation therapy of facial skin cancer: First clinical case series.

Authors:  Ankur Sharma; David Sasaki; Daniel W Rickey; Ahmet Leylek; Chad Harris; Kate Johnson; Jorge E Alpuche Aviles; Boyd McCurdy; Andy Egtberts; Rashmi Koul; Arbind Dubey
Journal:  Adv Radiat Oncol       Date:  2018-02-14
  3 in total

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