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首页> 外文期刊>Physics in medicine and biology. >Design and construction of a ripple filter for a smoothed depth dose distribution in conformal particle therapy.
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Design and construction of a ripple filter for a smoothed depth dose distribution in conformal particle therapy.

机译:保形粒子治疗中用于平滑深度剂量分布的波纹滤波器的设计和构造。

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The ripple filter was designed to broaden the Bragg maximum of carbon beams for the raster-scan technique, a special type of tumour-conformal ion beam treatment. In this technique the target volume is divided into individual layers that are treated sequentially by varying the energy from the accelerator stepwise. Because the unmodified Bragg maximum has a small half-width, below 1 mm for small energies (< 160 MeV u(-1)), homogeneous irradiation at small penetration depths of 2-6 cm can only be obtained by using a large number of energy steps. If the energy step is too large, ripples are produced in the superimposed depth dose distribution. The ripple filter widens a Bragg peak to a Gaussian peak with a half-width of more than 2 mm. This helps to smooth the extended Bragg peak and to reduce the number of energy steps required by a factor of two to three, leading to significantly shorter overall irradiation times and a higher particle fluence per layer. The ripple filter consists of a 2 mm thick Plexiglass (PMMA) plate with a periodic structure of fine grooves. It can be mounted 60 cm upstream of the patient as a stationary device, because the fine structure of the grooves is completely washed out by the lateral scattering of the beam.
机译:波纹滤波器的设计是为了扩展光栅扫描技术的碳束的布拉格最大值,光栅扫描技术是一种特殊的肿瘤保形离子束治疗方法。在该技术中,目标体积被分为多个单独的层,这些层通过逐步改变加速器的能量依次进行处理。由于未修饰的布拉格最大值具有较小的半宽度,对于小能量(<160 MeV u(-1)),其小于1毫米,因此只能通过使用大量的2到6厘米的小穿透深度来获得均匀的辐照。能量台阶。如果能量步长太大,则在叠加的深度剂量分布中会产生波纹。纹波滤波器将Bragg峰加宽为高斯峰,半峰宽超过2 mm。这有助于平滑扩展的布拉格峰,并将所需的能量步数减少两倍至三倍,从而显着缩短了总辐照时间,并提高了每层的粒子通量。波纹滤波器由一块2毫米厚的有机玻璃(PMMA)板组成,该板具有周期性的细槽结构。它可以作为固定设备安装在患者上游60厘米处,因为凹槽的精细结构会由于光束的横向散射而被完全冲洗掉。

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