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Thermoplastic wrapped lead sheet to reduce cardiac device cumulative dose

机译:热塑性包裹铅板,减少心脏装置累积剂量

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The objective of this project is to evaluate the percentage dose reduction in cardiac implantable electronic devices (CIEDs) using a thermoplastic wrapped lead sheet. The dose to CIED is evaluated in various situations with and without a lead shield. The efficiency of this type of shielding is supported by measurements made with a commercial plastic scintillation detector (PSD). Percentage depth dose (PDD) curve and lateral dose measurements (LDMs) were made with and without shielding for photon and electron beams. Photon LDMs were made at a depth of 0.5 cm. PSD measurements were compared with dose calculation from the treatment planning system (TPS). The benefit of shielding is greater at 23 MV than at 6 MV, with an average reduction of 71% and 59% of dose, respectively, for out-of-field distance range between 3 and 15 cm. Measurement of posterior beams shows there is no significant increase in skin dose due to backscatter from the lead sheet even when the field intercepts it. Large deviations between TPS calculation and measurements have been observed. The use of lead shielding with an anterior field is advised and provides an easy way to decrease the cumulative dose to CIEDs. Interception of shielding by an electron beam would increase significantly the cumulative dose to CIED for high energies or decrease the quality of the treatment. For a posterior out-of-field, shielding does not have a significant impact on CIED dose. (C) 2018 American Association of Medical Dosimetrists. Published by Elsevier B.V. All rights reserved.
机译:该项目的目的是使用热塑性包裹的铅板评估心脏可植入电子设备(CIEDS)的剂量减少百分比减少。 CIED的剂量在具有和没有引线屏蔽的各种情况下评估。通过用商业塑料闪烁探测器(PSD)制成的测量来支持这种屏蔽的效率。用且没有屏蔽光子和电子束,制造百分比深度剂量(PDD)曲线和横向剂量测量(LDMS)。光子LDMS在0.5厘米的深度下进行。将PSD测量与治疗计划系统(TPS)的剂​​量计算进行比较。屏蔽的益处在23mV的较高比6mV为6mV,平均降低71%和59%的剂量,用于外场距离范围3-15cm。后梁的测量表明,即使当场截留时,由于铅板的反向散射,皮肤剂量没有显着增加。已经观察到TPS计算和测量之间的较大偏差。建议使用带有前场的引线屏蔽,并提供一种减少累积剂量的简单方法。通过电子束拦截屏蔽将显着增加累积剂量以获得高能量或降低治疗质量的累积剂量。对于外部外部,屏蔽对CIED剂量没有显着影响。 (c)2018年美国医疗剂量分子协会。 elsevier b.v出版。保留所有权利。

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