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Sensitivity studies of beam directionality, beam size, and neutron spectrum for a fission converter-based epithermal neutron beam for boron neutron capture therapy.

机译:基于裂变转换器的超热中子束用于硼中子俘获治疗的束方向性,束大小和中子光谱的敏感性研究。

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Sensitivity studies of epithermal neutron beam performance in boron neutron capture therapy are presented for realistic neutron beams with varying filter/moderator and collimator/delimiter designs to examine the relative importance of neutron beam spectrum, directionality, and size. Figures of merit for in-air and in-phantom beam performance are calculated via the Monte Carlo technique for different well-optimized designs of a fission converter-based epithermal neutron beam with head phantoms as the irradiation target. It is shown that increasing J/phi, a measure of beam directionality, does not always lead to corresponding monotonic improvements in beam performance. Due to the relatively low significance, for most configurations, of its effect on in-phantom performance and the large intensity losses required to produce beams with very high J/phi, beam directionality should not be considered an important figure of merit in epithermal neutron beam design except in terms of its consequences on patient positioning and collateral dose. Hardening the epithermal beam spectrum, while maintaining the specific fast neutron dose well below the inherent hydrogen capture dose, improves beam penetration and advantage depth and, as a desirable by-product, significantly increases beam intensity. Beam figures of merit are shown to be strongly dependent on beam size relative to target size. Beam designs with J/phi approximately 0.65-0.7, specific fast neutron doses of 2-2.6x10(-13) Gy cm2 and beam sizes equal to or larger than the size of the head target produced the deepest useful penetration, highest therapeutic ratios, and highest intensities.
机译:提出了对于中子束具有变化的滤光器/减速器和准直器/定界器设计的现实中子束,用于研究中子束光谱,方向性和尺寸的相对重要性的对硼中子俘获疗法中超热中子束性能的敏感性研究。空中和幻像束性能的品质因数是通过蒙特卡洛技术针对以头部幻像为辐照目标的基于裂变变矩的超热中子束的不同优化设计而计算得出的。结果表明,增加J / phi(衡量光束方向性)并不总是会导致光束性能的单调提高。由于对于大多数配置而言,其对幻像性能的影响以及产生具有很高J / phi的光束所需的较大强度损失的重要性相对较低,因此,不应将光束方向性视为超热中子束的重要品质因数除了对患者定位和附带剂量的影响外,还应进行其他设计。硬化超热射束光谱,同时保持特定的快速中子剂量远低于固有的氢捕获剂量,可提高射束穿透力和优势深度,并作为理想的副产物显着增加射束强度。光束的品质因数显示为与光束尺寸相对于目标尺寸有很大关系。射束设计的J / phi约为0.65-0.7,特定快速中子剂量为2-2.6x10(-13)Gy cm2 / n,并且射束尺寸等于或大于头部靶标的尺寸,可产生最深的有用穿透力,最高治疗效果比率和最高强度。

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