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基于滤波反投影 PET 图像的三维形态结构算子的高效打击伪影减少。

Efficient Strike Artifact Reduction Based on 3D-Morphological Structure Operators from Filtered Back-Projection PET Images.

机构信息

Department of Radiology, Kaohsiung Veterans General Hospital, No. 386, Dazhong 1st Rd., Zuoying District, Kaohsiung City 81362, Taiwan.

Department of Information Engineering, I-Shou University, No. 1, Sec. 1, Xuecheng Rd., Dashu District, Kaohsiung City 84001, Taiwan.

出版信息

Sensors (Basel). 2021 Oct 30;21(21):7228. doi: 10.3390/s21217228.

Abstract

Positron emission tomography (PET) can provide functional images and identify abnormal metabolic regions of the whole-body to effectively detect tumor presence and distribution. The filtered back-projection (FBP) algorithm is one of the most common images reconstruction methods. However, it will generate strike artifacts on the reconstructed image and affect the clinical diagnosis of lesions. Past studies have shown reduction in strike artifacts and improvement in quality of images by two-dimensional morphological structure operators (2D-MSO). The morphological structure method merely processes the noise distribution of 2D space and never considers the noise distribution of 3D space. This study was designed to develop three-dimensional-morphological structure operators (3D MSO) for nuclear medicine imaging and effectively eliminating strike artifacts without reducing image quality. A parallel operation was also used to calculate the minimum background standard deviation of the images for three-dimensional morphological structure operators with the optimal response curve (3D-MSO/ORC). As a result of Jaszczak phantom and rat verification, 3D-MSO/ORC showed better denoising performance and image quality than the 2D-MSO method. Thus, 3D MSO/ORC with a 3 × 3 × 3 mask can reduce noise efficiently and provide stability in FBP images.

摘要

正电子发射断层扫描(PET)可以提供功能图像并识别全身异常代谢区域,从而有效地检测肿瘤的存在和分布。滤波反投影(FBP)算法是最常用的图像重建方法之一。然而,它会在重建图像上产生条纹伪影,影响病变的临床诊断。过去的研究表明,二维形态结构算子(2D-MSO)可以减少条纹伪影并提高图像质量。形态结构方法仅处理二维空间的噪声分布,而从不考虑三维空间的噪声分布。本研究旨在开发核医学成像的三维形态结构算子(3D-MSO),在不降低图像质量的情况下有效消除条纹伪影。还使用并行操作来计算具有最佳响应曲线(3D-MSO/ORC)的三维形态结构算子的图像的最小背景标准偏差。通过 Jaszczak 体模和大鼠验证,3D-MSO/ORC 显示出比 2D-MSO 方法更好的降噪性能和图像质量。因此,具有 3×3×3 掩模的 3D-MSO/ORC 可以有效地降低噪声并提供 FBP 图像的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cde/8587286/9d40e169e8b5/sensors-21-07228-g001.jpg

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