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Gantry rotational motion-induced blur in cone-beam computed tomography

机译:锥体旋转运动诱导的锥形束计算机断层扫描的模糊

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As neuro-endovascular image-guided interventions (EIGIs) make use of higher resolution detectors, gantry rotational motion-induced blur becomes more noticeable in acquired projections as well as reconstructed images by reducing the visibility of vascular and device features whose visualization could be critical in the treatment of vascular pathology. Motion-induced blur in projections views is a function of an object's position in the field-of-view (FOV), gantry rotational speed, and frame capture or exposure time. In this work different frame rates were used to investigate the effects of blurring from individual projections on the reconstructed image. To test the effects of these parameters on reconstructed images, a regular pattern phantom of small objects was simulated and projection views were generated at various different frame rates for a given simulated rotational velocity. The reconstruction was made using a linear interpolation of filtered backprojections. Images reconstructed from lower frame rates showed significant blurring in the azimuthal direction, increasingly worse towards the periphery of the image. However, those reconstructed from higher frame rates showed significantly less blur throughout the entire FOV. While lower frame rates could be used with slower gantry speeds this would increase the risk of voluntary or involuntary patient motion contributing to blur over the entire FOV. A high frame rate used with high gantry speeds could reliable provide images without gantry-motion blur while reducing the risk of patient-motion blur. Frame rates exceeding 2000 fps available with photon counting detectors such as the X-counter Actaeon~1 are available.
机译:作为神经血管血管图像引导的干预(EIGI)利用更高的分辨率探测器,通过降低血管和器件特征的可视性,龙门旋转运动诱导的模糊在获取的投影中变得更明显,并且通过降低其可视化可能是至关重要的血管和装置特征的可见性血管病理学的治疗。投影中的运动诱导的模糊是对象在视野(FOV),龙门架转速和帧捕获或曝光时间中的对象位置的函数。在这项工作中,使用不同的帧速率来研究模糊从重建图像上的各个突起的效果。为了测试这些参数对重建图像的影响,模拟了小物体的常规模式幻像,并以针对给定的模拟旋转速度以各种不同的帧速率产生投影视图。使用滤波反射的线性插值进行重建。从下帧速率重建的图像在方位角方向上显示出显着的模糊,朝向图像的周边越来越差。然而,从较高帧速率重建的那些在整个FOV中显示出明显更少的模糊。虽然较低的帧速率可用于较慢的龙门速度,但这会增加志愿或非自愿患者运动的风险,有助于模糊整个FOV。高龙门速度使用的高帧速率可以可靠地提供没有龙门运动模糊的图像,同时降低了患者运动模糊的风险。帧速率超过2000 FPS可提供光子计数检测器,如X-Counter Actaeon〜1。

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