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使用连续床动开发放射治疗中监测治疗床速度的外部系统。

Development of an external system for monitoring the couch speed in radiotherapy using continuous bed movement.

机构信息

Department of Radiation Oncology, Aichi Cancer Center Hospital, Nagoya, Aichi, Japan.

QUALITA Co., Ltd., Matsumoto, Nagano, Japan.

出版信息

J Appl Clin Med Phys. 2024 Nov;25(11):e14497. doi: 10.1002/acm2.14497. Epub 2024 Sep 12.

Abstract

PURPOSE

Total body irradiation before bone marrow transplantation for hematological malignancies using Radixact, a high-precision radiotherapy machine, can potentially reduce side effects and the risk of secondary malignancies. However, stable control of couch speed is critical, and direct assessment methods outlined in quality assurance guidelines are lacking. This study aims to develop a real-time couch speed verification system for the Radixact.

METHODS

The developed system used a linear encoder to measure couch speed directly. Accuracy was verified via a linear stage, comparing measurements with a laser distance sensor. After placing a phantom simulating the human body on the Radixact couch, the couch speed was verified using predefined speed plans.

RESULTS

Operating the linear stage at 0.1, 0.5, and 1.0 mm/s revealed that the maximum position error of the developed verification system compared to the laser distance sensor was nearly equivalent to the distance resolution of the system (0.05 mm/pulse), with negligible average speed error. When the Radixact couch operated at 0.1, 0.5, and 1.0 mm/s, the values obtained by the verification system agreed with the theoretical values within the sampling period (0.01 s) and distance resolution (0.05 mm).

CONCLUSION

The verification system developed provides real-time monitoring of the speed of the Radixact table, ensuring treatment effectiveness and patient safety. It would guarantee the couch speed's soundness and contribute to the "visualization" of safety.

摘要

目的

在进行血液恶性肿瘤的骨髓移植前,使用 Radixact 这一高精度放疗设备进行全身照射,可能会降低副作用和二次恶性肿瘤的风险。然而,稳定控制治疗床速度至关重要,且质量保证指南中并未详细列出直接评估方法。本研究旨在为 Radixact 开发一种实时治疗床速度验证系统。

方法

所开发的系统使用线性编码器直接测量治疗床速度。通过线性平台进行准确性验证,将测量结果与激光距离传感器进行比较。在 Radixact 治疗床上放置模拟人体的体模后,使用预设速度方案验证治疗床速度。

结果

以 0.1、0.5 和 1.0 mm/s 的速度操作线性平台,与激光距离传感器相比,所开发的验证系统的最大位置误差几乎等同于系统的距离分辨率(0.05 mm/脉冲),平均速度误差可忽略不计。当 Radixact 治疗床以 0.1、0.5 和 1.0 mm/s 的速度运行时,验证系统获得的值与采样周期(0.01 s)和距离分辨率(0.05 mm)内的理论值相符。

结论

所开发的验证系统可实时监测 Radixact 治疗床的速度,确保治疗效果和患者安全。它将确保治疗床速度的稳健性,并有助于实现安全性的“可视化”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e890/11540012/57a2024819b9/ACM2-25-e14497-g005.jpg

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