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Design of a neutron applicator to reduce damage in cardiac implantable electronic devices

机译:设计中子施加器,以减少心脏植入电子设备的损坏

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摘要

The purpose of this study was to design a simple neutron applicator to reduce neutron damage in CIEDs from high energy photon beams. MCNP was used to simulate gantry mounted neutron applicators with different dimensions and composition. Applicator mass was fixed at 10kg and mounted to the wedge accessory mount. Polyethylene and borated polyethylene with different boron weight composition were considered. Using silicon damage response functions, the probability of neutron damage induced in CIEDs was calculated. The applicators reduced the probability of damage to the CIED. The probability of damage was reduced by up to a factor of 3.4 depending on the off axis distance. Applicators with a thickness of 4cm and a boron composition of 3.5% demonstrated the greatest reduction in neutron damage probability. The applicator also reduced the in-field damage probability up to 170%. Using simple neutron applicators can decrease the CIED damage probability both in field and out of field for patients who would benefit from high energy photon therapy.
机译:本研究的目的是设计一个简单的中子涂抹器,以减少来自高能光子束的CIEDS中的中子损伤。 MCNP用于模拟具有不同尺寸和组成的龙门安装中子涂器。涂抹器质量固定在10kg上并安装在楔形配件安装架上。考虑聚乙烯和硼酸化聚乙烯,具有不同的硼重量组合物。利用硅损伤响应函数,计算了CIEDS中子损伤的概率。涂抹器将损坏损坏的损坏损坏。根据轴距距离,损坏的概率降低至3.4倍。厚度为4cm的涂抹器和3.5%的硼组成表明中子损伤概率最大的降低。涂抹器还将现场损伤概率降低至170%。使用简单的中子涂抹器可以降低现场和缺乏可能从高能光子疗法中受益的患者的CIE损伤概率。

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