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首页> 外文期刊>Investigative ophthalmology & visual science >Cerenkov Luminescence Imaging for Accurate Placement of Radioactive Plaques in Episcleral Brachytherapy of Intraocular Tumors
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Cerenkov Luminescence Imaging for Accurate Placement of Radioactive Plaques in Episcleral Brachytherapy of Intraocular Tumors

机译:Cerenkov发光成像在眼内肿瘤巩膜近距离放射治疗中放射性斑块的准确放置

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Purpose: The purpose of this study was to determine the feasibility of using Cerenkov luminescence imaging (CLI) to facilitate plaque placement during episcleral brachytherapy of intraocular tumors. Methods: Ruthenium-106 (Ru-106) decays to rhodium-106, which in turn emits high-energy beta particles. When the electrons propagate through the eyewall, the so-called Cerenkov effect leads to emission of weak light, which can be captured by high-sensitivity charge-couple device (CCD) cameras. Enucleated porcine eyes were prepared with tumor phantoms made of melanin-containing gelatin. The anterior portion of the globe was removed, and different Ru-106 plaque types (designated CCA, CCB, COB, and CIA) with activities ranging from 6.8 to 16.7 MBq were sutured to the sclera overlying the tumor phantom. The globe was placed in a transparent container with saline. CLI was performed through the anterior opening of the eye using a cooled electron-multiplying CCD camera. Results: Exposure times between 5 and 60 seconds produced good quality images of the Cerenkov light. There was a linear relationship between plaque activity and Cerenkov radiance. The perimeters of the CCA and CCB plaques could be seen clearly as circles of light symmetrically surrounding the tumor phantoms. Notched COB and CIA plaques led to images revealing their actual positions in relation to the optic disc and ciliary body, respectively. Simulated plaque tilting resulted in diffuse demarcation of the light. Conclusions: The study indicates that CLI is a feasible method to ensure accurate placement of Ru-106 plaques in brachytherapy of intraocular tumors. CLI may offer a new tool to improve and document plaque placement, both perioperatively and postoperatively.
机译:目的:本研究的目的是确定在眼内肿瘤的巩膜近距离放射治疗期间使用Cerenkov发光成像(CLI)促进斑块放置的可行性。方法:钌106(Ru-106)衰减为铑106,后者发出高能β粒子。当电子传播通过眼壁时,所谓的切伦科夫效应会导致发出弱光,该弱光可以被高灵敏度电荷耦合器件(CCD)相机捕获。用含黑色素的明胶制成的肿瘤模型制备去核猪眼。球体的前部被去除,并且将活动范围为6.8至16.7MBq的不同Ru-106斑块类型(指定为CCA,CCB,COB和CIA)缝合到覆盖在肿瘤体模上的巩膜。将地球仪放置在装有盐水的透明容器中。使用冷却的电子倍增CCD相机通过眼睛的前开口进行CLI。结果:5到60秒之间的曝光时间产生了切伦科夫光的高质量图像。菌斑活性和切伦科夫辐射率之间存在线性关系。 CCA和CCB斑块的周界可以清楚地看到,是对称围绕肿瘤体模的光圈。带缺口的COB和CIA斑块产生的图像分别显示了它们相对于视盘和睫状体的实际位置。模拟的斑块倾斜导致光的漫射分界。结论:该研究表明CLI是确保Ru-106斑块在眼内肿瘤近距离治疗中准确放置的可行方法。 CLI可能为围手术期和术后改善和记录斑块放置提供了一种新工具。

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