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Development of a beam hardening filter and characterization of the spatial resolution for a Cone Beam CT imaging system

机译:锥形光束CT成像系统的光束硬化滤波器的开发及其空间分辨率的表征

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Generally, Cone Beam CT imaging systems utilize polychromatic x-ray beams since they are easier to generate and their output power is larger than those from monochromatic beams. However, polychromatic beams have main drawbacks in medical imaging. For example, the relative high content of low energy photons induced two main phenomena that degrade the image quality. First, most of the low energy photons are absorbed within the soft tissue hardening the beam. This beam hardening deteriorates the image quality by decreasing the uniformity. Second, due to the polychromatic nature of the beam and beam hardening, the image is degraded by high contrast objects. In order to solve these problems, a filter was developed and implemented in a Flat Panel Detector-based cone Beam CT. First, the energy spectrum was acquired and computer simulations were done to evaluate and to develop the best suitable filter to harden the x-ray beam. Second, experiments were performed to evaluate the improvements on image quality based on the reduction of artifacts due to high contrast objects on two objects, namely a bone with titanium screws and a hand phantom. Lastly, the spatial resolution was evaluated to investigate the effects of this filter. The results demonstrate that the new developed filter improves the image quality in this area. The high contrast artifacts were also reduced as the images from the bone phantom with the metal implant illustrates. Evidently, the use of this filter to harden to beam has increased the image quality when metal implants are present.
机译:通常,锥梁CT成像系统利用多色X射线束,因为它们更容易产生,并且它们的输出功率大于来自单色光束的输出功率。然而,多色梁在医学成像中具有主要缺点。例如,低能量光子的相对高含量诱导了两个主要现象,这使得图像质量降低。首先,大多数低能量光子被吸收在梁硬化的软组织内。该光束硬化通过降低均匀性来降低图像质量。其次,由于光束和光束硬化的多色性质,图像通过高对比物体降低。为了解决这些问题,在基于平板探测器的锥形光束CT中开发并实现过滤器。首先,获得能量谱并进行计算机仿真来评估并开发最佳合适的过滤器以硬化X射线束。其次,进行实验以评估由于两个物体上的高对比物体而减少了伪像的图像质量的改善,即用钛螺钉和手幻影的骨骼。最后,评估空间分辨率以研究该过滤器的影响。结果表明,新的发发过滤器可提高该区域的图像质量。对于来自金属植入物的骨模图示出了高对比度伪影也被降低。显然,当存在金属植入物时,使用该过滤器将其硬化为光束的图像质量增加。

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