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首页> 外文期刊>Current Directions in Biomedical Engineering >An improved tracking framework for ultrasound probe localization in image-guided radiosurgery
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An improved tracking framework for ultrasound probe localization in image-guided radiosurgery

机译:图像引导放射外科中超声探头定位的改进跟踪框架

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Real-time target localization with ultrasound holds high potential for image guidance and motion compensation in radiosurgery due to its non-invasive image acquisition free from ionizing radiation. However, a two-step localization has to be performed when integrating ultrasound into the existing radiosurgery workflow. In addition to target localization inside the ultrasound volume, the probe itself has to be localized in order to transform the target position into treatment room coordinates. By adapting existing camera calibration tools, we have developed a method to extend the stereoscopic X-ray tracking system of a radiosurgery platform in order to locate objects such as marker geometries with six degrees of freedom. The calibration was performed with 0.1 mm reprojection error. By using the full area of the flat-panel detectors without pre-processing the extended software increased the tracking volume and resolution by up to 80%, substantially improving patient localization and marker detectability. Furthermore, marker-tracking showed sub-millimeter accuracy and rotational errors below 0.1°. This demonstrates that the developed extension framework can accurately localize marker geometries using an integrated X-ray system, establishing the link for the integration of real-time ultrasound image guidance into the existing system.
机译:超声的实时目标定位技术具有无电离辐射的无创图像采集技术,因此在放射外科中具有很高的图像指导和运动补偿潜力。但是,将超声整合到现有的放射外科工作流程中时,必须执行两步定位。除了超声体积内的目标定位外,还必须对探头本身进行定位,以将目标位置转换为治疗室坐标。通过改编现有的相机校准工具,我们开发了一种方法来扩展放射外科平台的立体X射线跟踪系统,以便以六个自由度定位诸如标记几何等对象。校准以0.1毫米的重投影误差进行。通过使用平板检测器的整个区域而不进行预处理,扩展软件将跟踪量和分辨率提高了多达80%,从而大大改善了患者的定位和标记的可检测性。此外,标记跟踪显示亚毫米精度和低于0.1°的旋转误差。这表明开发的扩展框架可以使用集成的X射线系统准确定位标记的几何形状,从而建立了将实时超声图像引导集成到现有系统中的链接。

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