首页> 美国卫生研究院文献>Journal of Applied Clinical Medical Physics >Monte Carlo characterization of biocompatible beta‐emitting 90Y glass seed incorporated with the radionuclide 153Sm as a SPECT marker for brachytherapy applications
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Monte Carlo characterization of biocompatible beta‐emitting 90Y glass seed incorporated with the radionuclide 153Sm as a SPECT marker for brachytherapy applications

机译:蒙特卡洛表征结合了放射性核素153Sm的SPECT标记物的生物相容性发射β的90Y玻璃种子用于近距离放射治疗应用

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摘要

A glass seed consisting of the β‐emitting radionuclide 90Y incorporated with radionuclide 153Sm as SPECT marker is proposed for potential application in brachytherapy in order to reduce the undesirable dose to healthy adjacent organs. The aim of this work is to determine the dosimetric characteristics, as suggested in the AAPM TG‐60/TG‐149 reports, for this seed using Monte Carlo simulation. Monte Carlo codes MCNP5, EGSnrc, and FLUKA were used to calculate the absorbed dose distribution around the seed. Dosimetric parameters, such as reference absorbed dose rate, radial dose function, and one‐dimensional (1D) and two‐dimensional (2D) anisotropy functions, were obtained. The computational results from these three codes are in agreement within 5.4% difference on average. The absorbed dose rate at the reference point was estimated to be 5.01 cGy h−1 μCi−1 and self absorption of YAS glass seed amounted to 30.51%. The results showed that, with thermal neutron bombardment of 5 hours in a typical flux, sufficient activity for applications in brachytherapy may be achieved. With a 5 mCi initial activity, the total dose of a YAS glass seed was estimated to be 1.38 Gy at 1.0 cm from the seed center. Comparing with gamma emitting seeds, the 90Y seed could reduce undesirable doses to adjacent organs, because of the rapid dose falloff of beta ray. Because of the high R90 value of 5.5 mm, fewer number of 90Y seeds will be required for an interstitial brachytherapy treatment using permanent implant, in comparison with other beta‐emitting seeds. The results would be helpful in the development of the radioactive implants using 90Y glass seeds for the brachytherapy treatment.PACS numbers: 87.53.Jw, 87.56.bg
机译:提出了一种由β--发射放射性核素 90 Y掺入放射性核素 153 Sm作为SPECT标记物的玻璃种子,有望用于近距离放射治疗。为了减少对健康的邻近器官的不良剂量。这项工作的目的是使用蒙特卡罗模拟方法确定该种子的AAPM TG-60 / TG-149报告中建议的剂量特性。蒙特卡罗代码MCNP5,EGSnrc和FLUKA用于计算种子周围的吸收剂量分布。获得了剂量学参数,例如参考吸收剂量率,径向剂量函数以及一维(1D)和二维(2D)各向异性函数。这三个代码的计算结果平均相差5.4%以内。估计在参考点的吸收剂量率为5.01 cGy h -1 μCi -1 ,YAS玻璃种子的自吸收率为30.51%。结果表明,用典型的通量轰击中子5小时,可以实现近距离放射治疗的足够活性。初始活性为5 mCi,在离种子中心1.0 cm处,YAS玻璃种子的总剂量估计为1.38 Gy。与发射伽马射线的种子相比, 90 Y种子由于β射线剂量迅速下降,可以减少向邻近器官的不希望有的剂量。由于5.5 mm的高R90值,与其他发射β的种子相比,使用永久性植入物进行间质近距离放射治疗所需的 90 Y种子数量更少。该结果将有助于使用 90 Y玻璃种子进行近距离放射治疗的放射性植入物的开发。PACS编号:87.53.Jw,87.56.bg

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