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应用能量依赖和常规减影方法的 X 射线血管造影图像质量的理论比较。

A theoretical comparison of x-ray angiographic image quality using energy-dependent and conventional subtraction methods.

机构信息

Imaging Research Laboratories, Robarts Research Institute, London, Ontario N6A 5K8, Canada.

出版信息

Med Phys. 2012 Jan;39(1):132-42. doi: 10.1118/1.3658728.

Abstract

PURPOSE

X-ray digital subtraction angiography (DSA) is widely used for vascular imaging. However, the need to subtract a mask image can result in motion artifacts and compromised image quality. The current interest in energy-resolving photon-counting (EPC) detectors offers the promise of eliminating motion artifacts and other advanced applications using a single exposure. The authors describe a method of assessing the iodine signal-to-noise ratio (SNR) that may be achieved with energy-resolved angiography (ERA) to enable a direct comparison with other approaches including DSA and dual-energy angiography for the same patient exposure.

METHODS

A linearized noise-propagation approach, combined with linear expressions of dual-energy and energy-resolved imaging, is used to describe the iodine SNR. The results were validated by a Monte Carlo calculation for all three approaches and compared visually for dual-energy and DSA imaging using a simple angiographic phantom with a CsI-based flat-panel detector.

RESULTS

The linearized SNR calculations show excellent agreement with Monte Carlo results. While dual-energy methods require an increased tube heat load of 2× to 4× compared to DSA, and photon-counting detectors are not yet ready for angiographic imaging, the available iodine SNR for both methods as tested is within 10% of that of conventional DSA for the same patient exposure over a wide range of patient thicknesses and iodine concentrations.

CONCLUSIONS

While the energy-based methods are not necessarily optimized and further improvements are likely, the linearized noise-propagation analysis provides the theoretical framework of a level playing field for optimization studies and comparison with conventional DSA. It is concluded that both dual-energy and photon-counting approaches have the potential to provide similar angiographic image quality to DSA.

摘要

目的

X 射线数字减影血管造影(DSA)广泛用于血管成像。然而,需要减去掩模图像会导致运动伪影和图像质量受损。当前对能量分辨光子计数(EPC)探测器的兴趣提供了使用单次曝光消除运动伪影和其他高级应用的承诺。作者描述了一种评估能量分辨血管造影(ERA)中碘信号噪声比(SNR)的方法,以便能够与其他方法(包括 DSA 和双能血管造影)直接比较,为相同患者的曝光获得相同的 SNR。

方法

采用线性化噪声传播方法,结合双能和能量分辨成像的线性表达式,描述碘 SNR。通过对所有三种方法进行蒙特卡罗计算验证了结果,并使用基于 CsI 的平板探测器的简单血管造影体模对双能和 DSA 成像进行了直观比较。

结果

线性 SNR 计算与蒙特卡罗结果吻合良好。虽然双能方法需要比 DSA 增加 2 到 4 倍的管热负荷,并且光子计数探测器还没有准备好用于血管造影成像,但在测试的两种方法中,对于相同的患者曝光,在广泛的患者厚度和碘浓度范围内,两者的可用碘 SNR 都在传统 DSA 的 10%以内。

结论

虽然基于能量的方法不一定是最优的,并且可能会有进一步的改进,但线性化噪声传播分析为优化研究和与传统 DSA 的比较提供了公平的理论框架。可以得出结论,双能和光子计数方法都有可能提供与 DSA 相似的血管造影图像质量。

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