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光子束剂量学中塑料闪烁探测器的特性。

Characteristics of a plastic scintillation detector in photon beam dosimetry.

机构信息

Department of Radiation Oncology, Northwest Memorial Hospital, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.

Blue Physics LLC, Lutz, Florida, USA.

出版信息

J Appl Clin Med Phys. 2024 Jan;25(1):e14209. doi: 10.1002/acm2.14209. Epub 2023 Nov 20.

Abstract

BACKGROUND

Plastic scintillating detectors (PSD) have gained popularity due to small size and are ideally suited in small-field dosimetry due to no correction needed and hence detector reading can be compared to dose. Likewise, these detectors are active and water equivalent. A new PSD from Blue Physics is characterized in photon beam.

PURPOSE

Innovation in small-field dosimetry detector has led us to examine Blue Physics PSD (BP-PSD) for use in photon beams from linear accelerator.

METHODS

BP-PSD was acquired and its characteristics were evaluated in photon beams from a Varian TrueBeam. Data were collected in a 3D water tank. Standard parameters; dose, dose rate, energy, angular dependence and temperature dependence were studied. Depth dose, profiles and output in a reference condition as well as small fields were measured.

RESULTS

BP-PSD is versatile and provides data very similar to an ion chamber when Cerenkov radiation is properly accounted. This device measures data pulse by pulse which very few detectors can perform. The differences between ion chamber data and PSD are < 2% in most cases. The angular dependence is a bit pronounces to 1.5% which is due to PSD housing. Depth dose and profiles are comparable within < 1% to an ion chamber. For small fields this detector provides suitable field output factor compared to other detectors and Monte Carlo (MC) simulated data without any added correction factor.

CONCLUSIONS

The characteristics of Blue Physics PSD is uniquely suitable in photon beam and more so in small fields. The data are reproducible compared to ion chamber for most parameters and ideally suitable for small-field dosimetry without any correction factor.

摘要

背景

由于尺寸小,塑料闪烁探测器(PSD)已广受欢迎,由于无需校正,因此非常适合小场剂量测量,因此可以将探测器读数与剂量进行比较。同样,这些探测器是有源的且与水等效。Blue Physics 的一种新型 PSD 已在光子束中进行了特征描述。

目的

小场剂量测量探测器的创新促使我们研究 Blue Physics PSD(BP-PSD)在医用直线加速器产生的光子束中的应用。

方法

获取 BP-PSD 并在瓦里安 TrueBeam 光子束中评估其特性。在 3D 水箱中收集数据。研究了标准参数;剂量、剂量率、能量、角度依赖性和温度依赖性。测量参考条件以及小射野下的深度剂量、曲线和输出。

结果

BP-PSD 用途广泛,当正确考虑契伦科夫辐射时,它可以提供与电离室非常相似的数据。该设备逐脉冲测量数据,很少有探测器能够做到这一点。在大多数情况下,电离室数据与 PSD 之间的差异<2%。角度依赖性略高,为 1.5%,这是由于 PSD 外壳所致。深度剂量和曲线与电离室相比,在<1%的范围内可比较。对于小射野,与其他探测器和无任何附加校正因子的蒙特卡罗(MC)模拟数据相比,该探测器提供了合适的射野输出因子。

结论

Blue Physics PSD 的特性在光子束中独一无二,在小射野中更是如此。与电离室相比,大多数参数的数据都具有可重复性,并且无需任何校正因子,非常适合小场剂量测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bfd/10795454/7ccd39fbce38/ACM2-25-e14209-g005.jpg

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