@article{oai:repo.qst.go.jp:00046576, author = {Tajiri, Minoru and Maeda, Takamasa and Koba, Yusuke and Isobe, Yosiharu and Kuroiwa, Toshitaka and Fukuda, Shigekazu and Tanimoto, Katsuyuki and Shibayama, Kouichi and 田尻 稔 and 前田 貴雅 and 古場 裕介 and 磯部 喜治 and 黒岩 俊隆 and 福田 茂一 and 谷本 克之 and 柴山 晃一}, issue = {7}, journal = {Medical Physics}, month = {Jul}, note = {Purpose: In broad-beam carbon-ion radiotherapy performed using the heavy-ion medical accelerator in Chiba, the number of monitor units is determined by measuring the physical dose at the center of the spread-out Bragg peak (SOBP) for the treatment beam. The total measurement time increases as the number of treatment beams increases, which hinders the treatment of an increased number of patients. Hence, Kusano et al.[Jpn. J. Med. Phys. 23 (Suppl. 2), 65-68 (2003)] proposed a method to calculate the physical dose at the center of the SOBP for a treatment beam. Based on a recent study, the authors here propose a more accurate calculation method. Methods: The authors measured the physical dose at the center of the SOBP while varying the circular field size and range-shifter thickness. The authors obtained the physical dose at the center of the SOBP for an irregularly shaped beam using Clarkson integration based on these measurements. Results: The difference between the calculated and measured physical doses at the center of the SOBP varied with a change in the central angle of the sector segment. The differences between the calculated and measured physical doses at the center of the SOBP were within 1% for all irregularly shaped beams that were used to validate the calculation method. Conclusions: The accuracy of the proposed method depends on both the number of angular intervals used for Clarkson integration and the fineness of the basic data used for calculations: sampling numbers for the field size and thickness of the range shifter. If those parameters are properly chosen, the authors can obtain a calculated monitor unit number with high accuracy sufficient for clinical applications.}, pages = {071733-1--071733-5}, title = {Calculation method using Clarkson integration for the physical dose at the center of the spread-out Bragg peak in carbon-ion radiotherapy}, volume = {40}, year = {2013} }