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Improving the temporal response of computed tomography fluoroscopy

机译:提高计算断层扫描荧光透视的时间响应

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Interventional procedures with the guidance of computed tomography have attracted significant interest among clinicians in recent years. The application of computed tomography fluoroscopy (CTF) to interventional procedures has not only significantly improved the patient safety and reduced the probability of procedure complication, but also significantly shortened the procedure time. Recent studies, however, have indicated that a significant time delay exists in the CTF due to the nature of tomographic reconstruction process. This inherent limitation could lead to either confusions to the operator or prolonged interventional procedure time. A detailed comparison of various tomographic reconstruction algorithms indicates that the halfscan algorithm provides one of the best performance in terms of time delay. To further improve the temporal response of the CTF system, we propose an optimized halfscan (OHS) algorithm. The OHS algorithm suppresses information at the start of the scan by applying non-positive weights to the projections. At the same time, the projections near the end of the scan are given weights larger than unity. The weighting function is designed such that the overall contribution from the redundant samples remains constant. The parameters of the weighting function are selected to achieve a proper balance between the temporal response of the system and the acceptable level of image artifacts. Theoretical analysis and phantom experiments have shown that a significant improvement in CTF temporal response can be achieved with the proposed scheme.
机译:近年来临床医生的介入程序引导了临床医生的显着兴趣。计算机断层扫描荧光透视(CTF)介入程序的应用不仅显着提高了患者安全性并降低了程序并发症的可能性,但也显着缩短了程序时间。然而,最近的研究表明,由于断层切断过程的性质,CTF存在显着的时间延迟。这种固有的限制可能导致操作员或长期介入程序时间的混淆。各种断层切断重建算法的详细比较表明,HAPSCAN算法在时间延迟方面提供了最佳性能之一。为了进一步提高CTF系统的时间响应,我们提出了一种优化的Halfscan(OHS)算法。 OHS算法通过向投影应用非正权重来抑制扫描开始时的信息。同时,扫描末端附近的突起被给予重量大于Unity。设计加权功能,使得冗余样品的总贡献保持恒定。选择加权功能的参数来在系统的时间响应和可接受的图像伪影级之间实现适当的平衡。理论分析和幻像实验表明,可以通过所提出的方案实现CTF时间响应的显着改善。

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