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切伦科夫成像与闪烁剂量测定相结合,可为植入心脏电子设备的放疗患者提供实时位置和剂量监测。

Cherenkov imaging combined with scintillation dosimetry provides real-time positional and dose monitoring for radiotherapy patients with cardiac implanted electronic devices.

作者信息

Decker Savannah M, Matous Allison L, Zhang Rongxiao, Gladstone David J, Grove Evan K, Williams Benjamin B, Jermyn Michael, McVorran Shauna, Jarvis Lesley A

机构信息

Thayer School of Engineering, Dartmouth College, Hanover, NH 03755, United States.

Radiation Oncology, Dartmouth Cancer Center, Dartmouth-Health, Lebanon, NH 03765, United States.

出版信息

Phys Imaging Radiat Oncol. 2024 Sep 12;32:100642. doi: 10.1016/j.phro.2024.100642. eCollection 2024 Oct.

Abstract

BACKGROUND AND PURPOSE

Cardiac implanted electronic devices (CIED) require dose monitoring during each fraction of radiotherapy, which can be time consuming and may have delayed read-out times. This study explores the potential of Cherenkov imaging combined with scintillation dosimetry as an alternative verification system.

METHODS AND MATERIALS

Time-gated, complementary metal-oxide-semiconductor (iCMOS) cameras were used to collect video images of anthropomorphic phantoms and patients undergoing radiation treatment near chest wall cardiac devices. Scintillator discs and optically stimulated luminescence dosimeters (OSLDs) were used for dose measurement. Accuracy of spatial delivery was assessed by overlaying predicted surface dose outlines derived from the treatment planning system (TPS) with the Cherenkov images. Dose measurements from OSLDs and scintillators were compared.

RESULTS

In phantom studies, Cherenkov images visibly indicated when dose was delivered to the CIED as compared to non-overlapping dose deliveries. Comparison with dose overlays revealed congruence at the planned position and non-congruence when the phantom was shifted from the initial position. Absolute doses derived from scintillator discs aligned well with the OSLD measurements and TPS predictions for three different positions, measuring within 10 % for in-field positions and within 5 % for out-of-field positions. For two patients with CIEDs imaged over 18 fractions, Cherenkov imaging confirmed positional accuracy for all fractions, and dose measured by scintillator discs deviated by <0.015 Gy from the OSLD measurements.

CONCLUSIONS

Cherenkov imaging combined with scintillation dosimetry presents an alternative methodology for CIED monitoring with the added benefit of instantly detecting deviations, enabling timely corrective actions or proper patient triage.

摘要

背景与目的

心脏植入式电子设备(CIED)在每次放疗过程中都需要进行剂量监测,这可能很耗时,而且读出时间可能会延迟。本研究探讨了切伦科夫成像结合闪烁剂量测定法作为一种替代验证系统的潜力。

方法与材料

使用时间门控互补金属氧化物半导体(iCMOS)相机收集拟人化体模和胸壁心脏设备附近接受放射治疗患者的视频图像。使用闪烁体圆盘和光激励发光剂量计(OSLD)进行剂量测量。通过将治疗计划系统(TPS)得出的预测表面剂量轮廓与切伦科夫图像叠加来评估空间剂量传递的准确性。比较了OSLD和闪烁体的剂量测量结果。

结果

在体模研究中,与非重叠剂量传递相比,切伦科夫图像能明显显示何时向CIED传递了剂量。与剂量叠加图比较发现,在计划位置时两者相符,而当体模从初始位置移动时则不相符。闪烁体圆盘得出的绝对剂量与OSLD测量结果以及TPS对三个不同位置的预测结果吻合良好,场内位置测量误差在10%以内,场外位置测量误差在5%以内。对于两名接受了18次成像的CIED患者,切伦科夫成像证实了所有分次的位置准确性,闪烁体圆盘测量的剂量与OSLD测量结果的偏差小于0.015 Gy。

结论

切伦科夫成像结合闪烁剂量测定法为CIED监测提供了一种替代方法,其额外的好处是能即时检测偏差,从而能够及时采取纠正措施或进行适当的患者分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e313/11417574/b2939cb5e68c/gr1.jpg

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