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LOW-COST RESPIRATORY MOTION TRACKING SYSTEM

机译:低成本呼吸运动追踪系统

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Lung cancer is the cause of more than 150,000 deaths annually in the United States. Early and accurate detection of lung tumors with Positron Emission Tomography has enhanced lung tumor diagnosis. However, respiratory motion during the imaging period of PET results in the reduction of accuracy of detection due to blurring of the images. Chest motion can serve as a surrogate for tracking the motion of the tumor. For tracking chest motion, an optical laser system was designed which tracks the motion of a patterned card placed on the chest by illuminating the pattern with two structured light sources, generating 8 positional markers. The position of markers is used to determine the vertical, translational, and rotational motion of the card. Information from the markers is used to decide whether the patient's breath is abnormal compared to their normal breathing pattern. The system is developed with an inexpensive web-camera and two low-cost laser pointers. The experiments were carried out using a dynamic phantom developed in-house, to simulate chest movement with different amplitudes and breathing periods. Motion of the phantom was tracked by the system developed and also by a pressure transducer for comparison. The studies showed a correlation of 96.6% between the respiratory tracking waveforms by the two systems, demonstrating the capability of the system. Unlike the pressure transducer method, the new system tracks motion in 3 dimensions. The developed system also demonstrates the ability to track a sliding motion of the patient in the direction parallel to the bed and provides the potential to stop the PET scan in case of such motion.
机译:在美国,肺癌是每年导致15万多人死亡的原因。正电子发射断层扫描能尽早准确地检测出肺部肿瘤,增强了肺部肿瘤的诊断。然而,由于图像的模糊,在PET的成像期间的呼吸运动导致检测精度的降低。胸部运动可以作为跟踪肿瘤运动的替代物。为了跟踪胸部运动,设计了一种光学激光系统,该系统通过使用两个结构化光源照射图案来跟踪放置在胸部上的图案卡的运动,从而生成8个位置标记。标记的位置用于确定卡的垂直,平移和旋转运动。来自标记的信息用于确定患者的呼吸与其正常呼吸模式相比是否异常。该系统由廉价的网络摄像头和两个低成本的激光笔开发而成。实验是使用内部开发的动态幻像进行的,以模拟不同幅度和呼吸周期的胸部运动。幻影的运动由所开发的系统以及压力传感器进行跟踪以进行比较。研究表明,两个系统的呼吸跟踪波形之间有96.6%的相关性,证明了该系统的功能。与压力传感器方法不同,新系统在3个维度上跟踪运动。所开发的系统还展示了在平行于床的方向上跟踪患者滑动运动的能力,并提供了在这种运动情况下停止PET扫描的潜力。

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