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治疗性碳离子束中大角度散射粒子的剂量贡献。

Dose contributions from large-angle scattered particles in therapeutic carbon beams.

作者信息

Kusano Yohsuke, Kanai Tatsuaki, Kase Yuki, Matsufuji Naruhiro, Komori Masataka, Kanematsu Nobuyuki, Ito Atsushi, Uchida Hirohisa

机构信息

Tokai University Unified Graduate School, Graduate School of Science and Technology, 1117 Kitakaname, Hiratsuka, Kanagawa, 259-1292, Japan.

出版信息

Med Phys. 2007 Jan;34(1):193-8. doi: 10.1118/1.2402328.

Abstract

In carbon therapy, doses at center of spread-out Bragg peaks depend on field size. For a small field of 5 x 5 cm2, the central dose reduces to 96% of the central dose for the open field in case of 400 MeV/n carbon beam. Assuming the broad beam injected to the water phantom is made up of many pencil beams, the transverse dose distribution can be reconstructed by summing the dose distribution of the pencil beams. We estimated dose profiles of this pencil beam through measurements of dose distributions of broad uniform beams blocked half of the irradiation fields. The dose at a distance of a few cm from the edge of the irradiation field reaches up to a few percent of the central dose. From radiation quality measurements of this penumbra, the large-angle scattered particles were found to be secondary fragments which have lower LET than primary carbon beams. Carbon ions break up in beam modifying devices or in water phantom through nuclear interaction with target nuclei. The angular distributions of these fragmented nuclei are much broader than those of primary carbon particles. The transverse dose distribution of the pencil beam can be approximated by a function of the three-Gaussian form. For a simplest case of mono-energetic beam, contributions of the Gaussian components which have large mean deviations become larger as the depth in the water phantom increases.

摘要

在碳疗法中,扩展布拉格峰中心处的剂量取决于射野大小。对于5×5平方厘米的小射野,在400兆电子伏/核子碳束的情况下,中心剂量降至开放射野中心剂量的96%。假设注入水模体的宽束由许多笔形束组成,则可通过将笔形束的剂量分布相加来重建横向剂量分布。我们通过测量宽均匀束遮挡一半照射野时的剂量分布来估计该笔形束的剂量分布曲线。在距照射野边缘几厘米处的剂量可达中心剂量的百分之几。通过对该半值层的辐射质量测量,发现大角度散射粒子是比初级碳束具有更低传能线密度的次级碎片。碳离子在束流修正装置中或在水模体中通过与靶核的核相互作用而分裂。这些分裂核的角分布比初级碳粒子的角分布宽得多。笔形束的横向剂量分布可用三高斯形式的函数近似。对于单能束的最简单情况,平均偏差大的高斯分量的贡献随着在水模体中的深度增加而变大。

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