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Motion Based X-Ray Imaging Modality

机译:基于运动的X射线成像模态

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摘要

A new X-ray imaging method (patent pending) was developed to visualize function-related motion information. We modify existing X-ray imaging methods to provide four images without increasing the necessary measurement time or radiation dose. The most important of these images is a new “kinetic” image that represents motions inside the object or living body. The motion-based contrast of the kinetic image can help visualize details that were not accessible before. The broad range of the movements and high sensitivity of the method are illustrated by imaging the mechanics of a working clock and the chest of a living African clawed frog (Xenopus laevis). The heart, valves, aorta, and lungs of the frog are clearly visualized in spite of the low soft tissue contrast of the animal. The new technology also reconstructs a “static” image similar to the existing conventional X-ray image. The static image shows practically the same information as the conventional image. The new technology presents two more images which show the point-wise errors of the static and kinetic images. This technique gives a better estimation of errors than present methods because it is based entirely on measured data. The new technology could be used in imaging cardiopulmonary movements, nondestructive testing, or port security screening.
机译:开发了一种新的X射线成像方法(正在申请专利)以可视化与功能有关的运动信息。我们修改了现有的X射线成像方法,以提供四幅图像,而无需增加必要的测量时间或辐射剂量。这些图像中最重要的是代表对象或生物体内运动的新“运动”图像。动态图像的基于运动的对比度可以帮助可视化以前无法访问的细节。该方法的动作范围广,灵敏度高,可通过对一只活着的非洲爪蛙(Xenopus laevis)的工作钟和胸部进行成像来说明。尽管动物的软组织对比度较低,但青蛙的心脏,瓣膜,主动脉和肺仍清晰可见。新技术还可以重建“静态”图像,类似于现有的常规X射线图像。静态图像实际上显示与常规图像相同的信息。这项新技术还提供了另外两个图像,分别显示了静态和动态图像的逐点误差。与目前的方法相比,该技术可以更好地估计错误,因为它完全基于测量数据。这项新技术可以用于心肺运动成像,无损检测或港口安全检查。

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