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Three dimensional co-registration between a positron emission tracking system and a C-arm x-ray imaging system.

机译:正电子发射跟踪系统和C臂X射线成像系统之间的三维共配准。

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摘要

Real-time motion tracking is required for accurate delivery of radiation therapy to tumours undergoing motion due to respiration, as well as for the precise guidance, manipulation, and operation of surgical tools or devices used during non-invasive interventional procedures. Positron emission real-time three-dimensional (3D) tracking (PeTrack) is a proposed solution to these problems which is currently being developed at Carleton University. The technique involves the localization and tracking of positron emission fiducial markers which could be implanted into a tumour volume or integrated into a surgical tool or instrument. The research presented here describes the co-registration of the PeTrack localization and tracking system with a C-arm x-ray imaging system capable of 3D cone-beam imaging. This co-registration allows the display of objects tracked in 3D by the PeTrack system on to a 3D reconstructed image.;The results presented in this work show that distortion correction is essential for the acquisition of high quality 3D image reconstructions. The method of x-ray scanner geometric calibration implemented was validated for the the first time with real data. A method of PeTrack geometric calibration was developed and evaluated. A simulation study showed that under ideal conditions the calibration performs exceptionally well. The x-ray and PeTrack geometric calibration were used along with the dual calibration phantom to successfully co-register the two systems. Evaluations of the co-registration exhibited an error of 1.8 +/- 0.2 mm between the location of sources identified on an image and their locations projected on to the image using the two geometric calibrations. A few sources of systematic error are discussed and subject to further investigation.;The acquisition of accurate 3D images from the x-ray imaging system requires: x-ray detector distortion correction, geometric calibration of the C-arm x-ray scanner, and then a method to reconstruct 3D images. PeTrack localization and tracking of positron sources requires a detector system capable of detecting positron sources, and an algorithm which can localize and track positron sources based on the information provided by the detector system. This tracking algorithm has previously been developed. The co-registration of the x-ray imaging system and the PeTrack tracking system requires the geometric calibrations of the PeTrack and the x-ray imaging systems both defined in a common 3D reference frame.
机译:实时运动跟踪对于将放射疗法准确地传递到由于呼吸而运动的肿瘤以及精确引导,操纵和操作非侵入性介入手术中使用的手术工具或设备是必需的。正电子发射实时三维(3D)跟踪(PeTrack)是针对这些问题的拟议解决方案,目前正由卡尔顿大学开发。该技术涉及对正电子发射基准标记物的定位和跟踪,这些标记物可以植入肿瘤体积或整合到手术工具或仪器中。本文介绍的研究描述了PeTrack定位和跟踪系统与能够进行3D锥束成像的C型臂X射线成像系统的共配准。这种共配准可以将PeTrack系统在3D中跟踪的对象显示到3D重建图像上。本研究结果表明,畸变校正对于获取高质量3D图像重建至关重要。首次使用实际数据验证了所实施的X射线扫描仪几何校准方法。开发并评估了PeTrack几何校准方法。仿真研究表明,在理想条件下,校准性能非常好。 X射线和PeTrack几何校准与双重校准体模一起使用,可以成功地将两个系统共同注册。对共配准的评估显示,在图像上识别出的光源位置与使用两次几何校准投射到图像上的光源位置之间存在1.8 +/- 0.2 mm的误差。讨论了一些系统错误的来源,并有待进一步研究。从X射线成像系统获取准确的3D图像需要:X射线检测器畸变校正,C型臂X射线扫描仪的几何校正以及然后是一种重建3D图像的方法。 PeTrack对正电子源进行定位和跟踪需要一种能够检测正电子源的检测器系统,以及一种基于检测器系统提供的信息可以对正电子源进行定位和跟踪的算法。先前已经开发了这种跟踪算法。 X射线成像系统和PeTrack跟踪系统的共同配准需要对PeTrack和X射线成像系统的几何校准,这两个校准都定义在共同的3D参考框架中。

著录项

  • 作者

    Spencer, Benjamin A.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Physics Radiation.;Health Sciences Medicine and Surgery.
  • 学位 M.Sc.
  • 年度 2012
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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