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A novel near real-time laser scanning device for geometrical determination of pleural cavity surface

机译:用于胸膜腔几何定位的新型近实时激光扫描装置

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During HPPH-mediated pleural photodynamic therapy (PDT), it is critical to determine the anatomic geometry of the pleural surface quickly as there may be movement during treatment resulting in changes with the cavity. We have developed a laser scanning device for this purpose, which has the potential to obtain the surface geometry in real-time. A red diode laser with a holographic template to create a pattern and a camera with auto-focusing abilities are used to scan the cavity. In conjunction with a calibration with a known surface, we can use methods of triangulation to reconstruct the surface. Using a chest phantom, we are able to obtain a 360 degree scan of the interior in under 1 minute. The chest phantom scan was compared to an existing CT scan to determine its accuracy. The laser-camera separation can be determined through the calibration with 2mm accuracy. The device is best suited for environments that are on the scale of a chest cavity (between 10cm and 40cm). This technique has the potential to produce cavity geometry in real-time during treatment. This would enable PDT treatment dosage to be determined with greater accuracy. Works are ongoing to build a miniaturized device that moves the light source and camera via a fiber-optics bundle commonly used for endoscopy with increased accuracy.
机译:在HPPH介导的胸膜光动力疗法(PDT)期间,至关重要的是迅速确定胸膜表面的解剖结构,因为在治疗过程中可能会发生运动,从而导致腔变。为此,我们已经开发了一种激光扫描设备,它具有实时获取表面几何形状的潜力。具有全息模板以创建图案的红色二极管激光器和具有自动聚焦功能的照相机用于扫描腔体。结合已知表面的校准,我们可以使用三角剖分的方法来重建表面。使用胸部模型,我们可以在不到1分钟的时间内完成360度内部扫描。将胸部体模扫描与现有的CT扫描进行比较,以确定其准确性。可以通过校准以2mm的精度确定激光相机的间距。该设备最适合胸腔规模(10cm至40cm之间)的环境。该技术具有在治疗期间实时产生腔体几何形状的潜力。这将使得能够更准确地确定PDT治疗剂量。正在努力制造一种小型化的设备,该设备可通过通常用于内窥镜检查的光纤束来提高光源和照相机的准确性。

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