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Three-dimensional image fusion across PET+MRI modalities based on the approach of characteristic coregistration

机译:基于特征融合方法的跨PET + MRI模式的三维图像融合

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摘要

Background and aims: Because there is no complete three-dimensional (3D) hybrid detector integrated PET+MRI internationally, this study aims to investigate a registration approach for a two-dimensional (2D) hybrid based on characteristic localization to achieve a 3D fusion from the images of PET and MRI as a whole. Methods: A cubic-oriented scheme of "9-point and 3-plane" for a coregistration design was verified to be geometrically practical. Through 3D reconstruction and virtual dissection, human internal feature points were sorted to combine with preselected external feature points for matching process. By following the procedure of feature extraction and image mapping, the processes of "picking points to form planes" and "picking planes for segmentation" were executed. Eventually, the image fusion was implemented at the real-time workstation Mimics based on auto-fuse techniques called "information exchange" and "signal overlay". Results: A complementary 3D image across PET+MRI modalities, which simultaneously present metabolic activities and anatomic structures, was created with a detectable rate of 56%. This is equivalent to the detectable rate of PET+CT or MRI+CT with no statistically significant difference, and it facilitates a 3D vision that is not yet functional for 2D hybrid imaging. Conclusions: This cross-modality fusion is doubtless an essential complement for the existing toolkit of a 2D hybrid device. Thus, it would potentially improve the efficiency of diagnosis and therapy for oncology.
机译:背景与目的:由于国际上尚无完整的集成PET + MRI的三维(3D)混合探测器,本研究旨在研究基于特征定位的二维(2D)混合器的配准方法,以实现3D融合。整个PET和MRI的图像。方法:验证了用于定向设计的立方定向“ 9点和3平面”方案在几何上是可行的。通过3D重建和虚拟解剖,将人的内部特征点与预选的外部特征点进行分类,以进行匹配过程。通过遵循特征提取和图像映射的过程,执行“拾取点以形成平面”和“拾取用于分割的平面”的处理。最终,图像融合是基于称为“信息交换”和“信号覆盖”的自动融合技术在实时工作站Mimics上实现的。结果:创建了跨PET + MRI方式的互补3D图像,同时显示了代谢活动和解剖结构,可检出率达56%。这等效于PET + CT或MRI + CT的可检出率,无统计学显着性差异,并且可促进尚不适用于2D混合成像的3D视觉。结论:这种跨模态融合无疑是2D混合设备现有工具包的必要补充。因此,它将潜在地提高肿瘤学的诊断和治疗效率。

著录项

  • 来源
    《Biomedizinische Technik》 |2012年第5期|413-422|共10页
  • 作者单位

    Department of joint Surgery, 1st Affiliated Hospital of Guangzhou Medical College and Orthopedic Implantation Key Lab of Guangdong Province, Guangzhou, Guangdong, China;

    Guangzhou Research Institute of Respiratory Disease and China Key Lab of Respiratory Disease, Guangzhou, Guangdong, China;

    Glasgow Dental Hospital and School, University of Glasgow, UK Medical Device Unit, NHS Greater Glasgow and Clyde, Glasgow, UK;

    Glasgow Dental Hospital and School, University of Glasgow, UK;

    Glasgow Dental Hospital and School, University of Glasgow, UK;

    Functional and Molecular Imaging Research Institute, Pritzker Medical School, University of Chicago, Chicago, IL, USA;

    Guangzhou Research Institute of Respiratory Disease and China Key Lab of Respiratory Disease, Guangzhou, Guangdong, China;

    Department of Nuclear Radiology, 1st Affiliated Hospital of Guangzhou Medical College, Guangzhou, Guangdong, China;

    Department of Orthopedic Surgery, 1st Affiliated Hospital of Guangzhou Medical College, 151 YanJianXi Road, Guangzhou City, Guangdong Province, China 510120;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    characteristic; registration; cross-modality; image fusion; hybrid radiodetector; PET/MRI/CT;

    机译:特性;注册;跨模式图像融合混合无线电探测器PET /核磁共振/ CT;
  • 入库时间 2022-08-18 03:48:07

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