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A real-time applicator position monitoring system for gynecologic intracavitary brachytherapy

机译:妇科腔内近距离放射治疗的实时涂药器位置监测系统

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Purpose: To develop a real-time applicator position monitoring system (RAPS) for intracavitary brachytherapy using an infrared camera and reflective markers. Methods: 3D image-guided brachytherapy requires high accuracy of applicator localization; however, applicator displacement can happen during patient transfer for imaging and treatment delivery. No continuous applicator position monitoring system is currently available. The RAPS system was developed for real-time applicator position monitoring without additional radiation dose to patients. It includes an infrared camera, reflective markers, an infrared illuminator, and image processing software. After reflective markers are firmly attached to the applicator and the patient body, applicator displacement can be measured by computing the relative change in distance between the markers. The reflective markers are magnetic resonance imaging (MRI) compatible, which is suitable for MRI-guided HDR brachytherapy paradigm. In our prototype, a Microsoft Kinect sensor with a resolution of 640 by 480 pixels is used as an infrared camera. A phantom study was carried out to compare RAPS measurements with known displacements ranging from -15 to 15 mm. A reproducibility test was also conducted. Results: The RAPS can achieve 4 frames/s using a laptop with Intel? Core?2 Duo processor. When the pixel size is 0.95 mm, the difference between RAPS measurements and known shift values varied from 0 to 0.8 mm with the mean value of 0.1 mm and a standard deviation of 0.44 mm. The system reproducibility was within 0.6 mm after ten reposition trials. Conclusions: This work demonstrates the feasibility of a real-time infrared camera based gynecologic intracavitary brachytherapy applicator monitoring system. Less than 1 mm accuracy is achieved when using an off-the-shelf infrared camera.
机译:目的:开发使用红外摄像机和反光标记物进行腔内近距离放射治疗的实时涂药器位置监测系统(RAPS)。方法:3D图像引导的近距离放射治疗要求涂药器定位的准确性高;但是,在患者转移进行成像和治疗时可能会发生涂药器移位。当前没有连续的涂药器位置监控系统。 RAPS系统是为实时涂药器位置监测而开发的,无需向患者施加额外的辐射剂量。它包括一个红外摄像机,反射标记,一个红外照明器和图像处理软件。在将反射性标记牢固地附着到施药器和患者身体之后,可以通过计算标记之间距离的相对变化来测量施药器的位移。反射标记兼容磁共振成像(MRI),适用于MRI指导的HDR近距离放射治疗范例。在我们的原型中,分辨率为640 x 480像素的Microsoft Kinect传感器用作红外摄像机。进行了幻像研究,以比较RAPS测量值与已知位移范围从-15到15 mm的情况。还进行了再现性测试。结果:使用配备Intel的笔记本电脑,RAPS可以达到4帧/秒。 Core?2 Duo处理器。当像素大小为0.95 mm时,RAPS测量值与已知偏移值之间的差异从0到0.8 mm变化,平均值为0.1 mm,标准偏差为0.44 mm。经过十次重新定位试验,系统重现性在0.6毫米以内。结论:这项工作证明了基于实时红外摄像机的妇科腔内近距离放射治疗器监测系统的可行性。使用现成的红外热像仪时,精度不到1毫米。

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