Literature DB >> 14680273

Ridge filter design for proton therapy at Hyogo Ion Beam Medical Center.

Takashi Akagi1, Akio Higashi, Hironobu Tsugami, Hidenobu Sakamoto, Yasutaka Masuda, Yoshio Hishikawa.   

Abstract

At the Hyogo Ion Beam Medical Center (HIBMC) we have developed a new design method for the bar ridge filter used in proton therapy, taking into consideration the scattering and nuclear interaction effects within the filter itself, which are introduced in the design. In our beam delivery system, the bar ridge filter is employed as the range modulator. It is combined with the wobbler system, and produces a three-dimensionally uniform spread-out Bragg peak (SOBP). The design program predicts the three-dimensional dose distribution. Ridge filters of 3-12 cm SOBP in 1 cm increments were designed in the maximum radiation field for 150 MeV and 190 MeV proton beams so that a uniform physical dose area is obtained in the SOBP region three-dimensionally. Measurements were performed with the constructed ridge filters to verify the uniformity and these were compared with the predictions of the design program. The predictions and measurements were found to be in agreement except for the 12 cm SOBP. The uniformities were better than +/- 3.0% for all SOBPs produced. The ridge filters are now clinically in use.

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Year:  2003        PMID: 14680273     DOI: 10.1088/0031-9155/48/22/n01

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  7 in total

1.  Adjustment of the lateral and longitudinal size of scanned proton beam spots using a pre-absorber to optimize penumbrae and delivery efficiency.

Authors:  Uwe Titt; Dragan Mirkovic; Gabriel O Sawakuchi; Luis A Perles; Wayne D Newhauser; Phillip J Taddei; Radhe Mohan
Journal:  Phys Med Biol       Date:  2010-11-12       Impact factor: 3.609

2.  Ultra-high dose rate radiation production and delivery systems intended for FLASH.

Authors:  Jonathan Farr; Veljko Grilj; Victor Malka; Srinivasan Sudharsan; Marco Schippers
Journal:  Med Phys       Date:  2022-05-05       Impact factor: 4.506

3.  A revision of proton machine quality assurance for wobbled-proton-beam therapy.

Authors:  Yuki Kase; Haruo Yamashita; Masumi Numano; Hiroshi Fuji; Shigeyuki Murayama
Journal:  Radiol Phys Technol       Date:  2013-05-21

4.  Proton beam therapy for bone sarcomas of the skull base and spine: A retrospective nationwide multicenter study in Japan.

Authors:  Yusuke Demizu; Masashi Mizumoto; Tsuyoshi Onoe; Naoki Nakamura; Yasuhiro Kikuchi; Tetsushi Shibata; Tomoaki Okimoto; Hideyuki Sakurai; Tetsuo Akimoto; Kota Ono; Takashi Daimon; Shigeyuki Murayama
Journal:  Cancer Sci       Date:  2017-04-24       Impact factor: 6.716

5.  Performances of the beam monitoring system and quality assurance equipment for the HIMM of carbon-ion therapy.

Authors:  Kun Wei; Zhiguo Xu; Ruishi Mao; Zulong Zhao; Tiecheng Zhao; Qianshun She; Xincai Kang; Jianli Wang; Shengpeng Li; Min Li; Kai Song; Herun Yang; Limin Duan
Journal:  J Appl Clin Med Phys       Date:  2020-07-02       Impact factor: 2.102

6.  The comparison of acute toxicities associated with craniospinal irradiation between photon beam therapy and proton beam therapy in children with brain tumors.

Authors:  Suguru Uemura; Yusuke Demizu; Daiichiro Hasegawa; Tomoko Fujikawa; Shotaro Inoue; Akihiro Nishimura; Ryunosuke Tojyo; Sayaka Nakamura; Aiko Kozaki; Atsuro Saito; Kenji Kishimoto; Toshiaki Ishida; Takeshi Mori; Jyunji Koyama; Atsufumi Kawamura; Yoshinobu Akasaka; Makiko Yoshida; Nobuyoshi Fukumitsu; Toshinori Soejima; Yoshiyuki Kosaka
Journal:  Cancer Med       Date:  2022-02-09       Impact factor: 4.452

7.  Conformal Dose Modulator for Proton Beam Therapy Part 1: A Simulation Study.

Authors:  Zhexuan Zhang; Weizhao Zhao; Michael Butkus; Xiaodong Wu
Journal:  Front Oncol       Date:  2022-04-11       Impact factor: 5.738

  7 in total

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