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Dual Energy with Dual Source CT and kVp Switching with Single Source CT: A Comparison of Dual Energy Performance

机译:具有双源CT的双能量和具有单源CT的kVp开关:双能量性能的比较

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Stimulated by the introduction of clinical dual source CT, the interest in dual energy methods has been increasing in the past years. Whereas the potential of material decomposition by dual energy methods is known since the early 1980ies, the realization of dual energy methods is a wide field of today's research. Energy separation can be achieved with energy selective detectors or by varying X-ray source spectra. This paper focuses on dual energy techniques with varying X-ray spectra. These can be provided by dual source CT devices, operated with different kVp settings on each tube. Excellent spectral separation is the key property for use in clinical routine. The drawback of higher cost for two tubes and two detectors leads to an alternative realization, where a single source CT yields different spectra by fast kVp switching from reading to reading. This provides access to dual-energy methods in single source CT. However, this technique comes with some intrinsic limitations. The maximum X-ray flux is reduced in comparison to the dual source system. The kVp rise and fall time between each reading reduces the spectral separation. In comparison to dual source CT, for a constant number of projections per energy spectrum the temporal resolution is reduced; a reasonable trade of between reduced numbers of projection and limited temporal resolution has to be found. The overall dual energy performance is the guiding line for our investigations. We present simulations and measurements which benchmark both solutions in terms of spectral behavior, especially of spectral separation.
机译:在临床上引入双源CT的刺激下,对双能方法的兴趣在过去几年中不断增长。自1980年代初期以来,人们就已经知道利用双能量方法分解材料的潜力,而双能量方法的实现是当今研究的一个广泛领域。能量分离可以通过能量选择探测器或通过改变X射线源光谱来实现。本文着重介绍具有不同X射线光谱的双能技术。这些可以由双源CT设备提供,并在每个管上以不同的kVp设置进行操作。出色的光谱分离是临床常规操作的关键特性。两个电子管和两个检测器成本较高的缺点导致了另一种实现方式,其中单个源CT通过从读取到读取的快速kVp切换产生不同的光谱。这样就可以在单源CT中访问双能量方法。但是,此技术具有一些固有的局限性。与双源系统相比,最大的X射线通量降低了。每次读数之间的kVp上升和下降时间会减少光谱分离。与双源CT相比,对于每个能量谱恒定数量的投影,时间分辨率会降低;必须找到减少的投影数量和有限的时间分辨率之间的合理平衡。整体双能源性能是我们研究的指导方针。我们提供了模拟和测量,它们根据光谱特性(尤其是光谱分离)对这两种解决方案进行了基准测试。

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