用于粒子放疗中无创广域灵活眼定位和跟踪的机器人辅助系统。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Dequan Shi, Xue Ming, Kundong Wang, Xu Wang, Yinxiangzi Sheng, Shouqiang Jia, Jinzhong Zhang
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引用次数: 0

摘要

眼部肿瘤的粒子(质子、碳离子或其他粒子)放射治疗高度依赖于精确的剂量分布,任何错位都可能导致严重的并发症。拟议中的眼球定位和跟踪系统(EPTS)旨在通过引导注视方向和跟踪眼球运动,对眼球进行无创定位,并具有足够的可重复性,以确保精确的剂量分布。眼球定位是通过单独控制的光源引导注视方向来实现的。眼球跟踪由一个带有摄像头和镜子的机械臂完成。连接在机械臂末端的摄像头通过镜面反射接收图像。为了保持重量轻,尽可能使用碳纤维等材料。机械臂由机器人操作系统控制。机械臂、转盘和光源都是实时主动远程控制的。摄像机拍摄的视频可进行注释、保存并加载到软件中。注视引导的可用范围为 360°(方位角)。EPTS 的总重量为 18.55 千克,可在 10 秒内完成安装或卸载。EPTS 具有非侵入式大范围灵活眼定位和跟踪、重量轻、不与其他设备相撞、与 CT 成像和剂量输送兼容等优点,因此显示出一定的潜力。EPTS 还可以实时远程控制,并具有足够的可重复性。该系统有望对眼部粒子放射治疗产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Robot-assisted system for non-invasive wide-range flexible eye positioning and tracking in particle radiotherapy.

Robot-assisted system for non-invasive wide-range flexible eye positioning and tracking in particle radiotherapy.

Particle (proton, carbon ion, or others) radiotherapy for ocular tumors is highly dependent on precise dose distribution, and any misalignment can result in severe complications. The proposed eye positioning and tracking system (EPTS) was designed to non-invasively position eyeballs and is reproducible enough to ensure accurate dose distribution by guiding gaze direction and tracking eye motion. Eye positioning was performed by guiding the gaze direction with separately controlled light sources. Eye tracking was performed by a robotic arm with cameras and a mirror. The cameras attached to its end received images through mirror reflection. To maintain a light weight, certain materials, such as carbon fiber, were utilized where possible. The robotic arm was controlled by a robot operating system. The robotic arm, turntables, and light source were actively and remotely controlled in real time. The videos captured by the cameras could be annotated, saved, and loaded into software. The available range of gaze guidance is 360° (azimuth). Weighing a total of 18.55 kg, the EPTS could be installed or uninstalled in 10 s. The structure, motion, and electromagnetic compatibility were verified via experiments. The EPTS shows some potential due to its non-invasive wide-range flexible eye positioning and tracking, light weight, non-collision with other equipment, and compatibility with CT imaging and dose delivery. The EPTS can also be remotely controlled in real time and offers sufficient reproducibility. This system is expected to have a positive impact on ocular particle radiotherapy.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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