Suppr超能文献

一种基于部分射束阻挡数据的加权重排反投影-滤波算法,用于具有混合散射校正的单次扫描锥形束 CT。

A weighted rebinned backprojection-filtration algorithm from partially beam-blocked data for a single-scan cone-beam CT with hybrid type scatter correction.

机构信息

Department of Nuclear and Quantum Engineering, Korea Advanced Institute of Science and Technology(KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.

Medical Imaging R&D Group, Health&Medical Equipment Business, Samsung Electronics, Suwon, 16677, Republic of Korea.

出版信息

Med Phys. 2019 Mar;46(3):1182-1197. doi: 10.1002/mp.13365. Epub 2019 Jan 25.

Abstract

PURPOSE

Scatter contamination constitutes a dominant source of degradation of image quality in cone-beam computed tomography (CBCT). We have recently developed an analytic image reconstruction method with a scatter correction capability from the partially blocked cone-beam data out of a single scan. Despite its easy implementation and its computational efficiency, the developed method may result in additional image artifacts for a large cone angle geometry due to data inconsistency. To improve the image quality at a large cone angle, we propose a weighted rebinned backprojection-filtration (wrBPF) algorithm in conjunction with a hybrid type scatter correction approach.

METHODS

The proposed method uses a beam-blocker array that provides partial data for scatter correction and image reconstruction and that only blocks the beam within a limited cone angle. This design allows a chance to keep the image quality at larger cone angles by use of data redundancy since the projection data corresponding to larger cone angles are not blocked. However, the scatter correction would not be straightforward. In order to correct for the scatter in the projections at larger cone angles, we propose a novel scatter correction method combining a measurement-based and a convolution-based method. We first estimated the scatter signal using a measurement-based method in the partially beam-blocked regions, and then optimized the fitting parameters of a convolution-kernel that can be used for scatter correction in the projections at larger cone angles. For image reconstruction, we developed a wrBPF with butterfly filtering. We have conducted an experimental study to validate the proposed algorithm for image reconstruction and scatter correction.

RESULTS

The experimental results revealed that the developed reconstruction method makes full use of the benefits of partial beam-blocking for scatter correction and image reconstruction and at the same time enhances image quality at larger cone angles by use of an optimized convolution-based scatter correction.

CONCLUSIONS

The proposed method that enjoys the advantages of both measurement-based and convolution-based methods for scatter correction has successfully demonstrated its capability of reconstructing accurate images out of a single scan in circular CBCT.

摘要

目的

散射污染是锥形束 CT(CBCT)图像质量下降的主要原因。我们最近开发了一种解析图像重建方法,该方法具有从单次扫描的部分被遮挡的锥形束数据中进行散射校正的能力。尽管该方法易于实现且计算效率高,但由于数据不一致,对于大锥角几何形状,该方法可能会导致额外的图像伪影。为了在大锥角处提高图像质量,我们提出了一种加权重排反投影-滤波(wrBPF)算法,并结合了一种混合散射校正方法。

方法

该方法使用光束阻挡器阵列,该阵列提供了散射校正和图像重建的部分数据,并且仅在有限的锥角范围内阻挡光束。这种设计允许通过使用数据冗余来保持较大锥角处的图像质量,因为较大锥角对应的投影数据不受阻挡。然而,散射校正并非易事。为了校正较大锥角处的投影中的散射,我们提出了一种新的散射校正方法,该方法结合了基于测量和基于卷积的方法。我们首先在部分被光束阻挡的区域中使用基于测量的方法估计散射信号,然后优化可以用于较大锥角处投影散射校正的卷积核的拟合参数。对于图像重建,我们开发了具有蝴蝶滤波的 wrBPF。我们进行了实验研究,以验证该算法在图像重建和散射校正方面的有效性。

结果

实验结果表明,所开发的重建方法充分利用了部分光束阻挡对于散射校正和图像重建的优势,同时通过使用优化的基于卷积的散射校正来提高较大锥角处的图像质量。

结论

该方法结合了基于测量和基于卷积的散射校正方法的优点,成功地证明了其在圆形 CBCT 中从单次扫描重建准确图像的能力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验