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A novel 3-D segmentation algorithm for anatomic liver and tumor volume calculations for liver cancer treatment planning.

机译:一种用于解剖肝和肿瘤体积计算的新型3D分割算法,用于肝癌治疗计划。

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摘要

Three-Dimensional (3-D) imaging is vital in computer-assisted surgical planning including minimal invasive surgery, targeted drug delivery, and tumor resection. Selective Internal Radiation Therapy (SIRT) is a liver directed radiation therapy for the treatment of liver cancer. Accurate calculation of anatomical liver and tumor volumes are essential for the determination of the tumor to normal liver ratio and for the calculation of the dose of Y-90 microspheres that will result in high concentration of the radiation in the tumor region as compared to nearby healthy tissue. Present manual techniques for segmentation of the liver from Computed Tomography (CT) tend to be tedious and greatly dependent on the skill of the technician/doctor performing the task.;This dissertation presents the development and implementation of a fully integrated algorithm for 3-D liver and tumor segmentation from tri-phase CT that yield highly accurate estimations of the respective volumes of the liver and tumor(s). The algorithm as designed requires minimal human intervention without compromising the accuracy of the segmentation results. Embedded within this algorithm is an effective method for extracting blood vessels that feed the tumor(s) in order to plan effectively the appropriate treatment.;Segmentation of the liver led to an accuracy in excess of 95% in estimating liver volumes in 20 datasets in comparison to the manual gold standard volumes. In a similar comparison, tumor segmentation exhibited an accuracy of 86% in estimating tumor(s) volume(s). Qualitative results of the blood vessel segmentation algorithm demonstrated the effectiveness of the algorithm in extracting and rendering the vasculature structure of the liver. Results of the parallel computing process, using a single workstation, showed a 78% gain. Also, statistical analysis carried out to determine if the manual initialization has any impact on the accuracy showed user initialization independence in the results.;The dissertation thus provides a complete 3-D solution towards liver cancer treatment planning with the opportunity to extract, visualize and quantify the needed statistics for liver cancer treatment. Since SIRT requires highly accurate calculation of the liver and tumor volumes, this new method provides an effective and computationally efficient process required of such challenging clinical requirements.
机译:三维(3-D)成像在计算机辅助手术计划中至关重要,包括微创手术,靶向药物输送和肿瘤切除。选择性内部放射疗法(SIRT)是一种针对肝脏的放射疗法,用于治疗肝癌。准确计算解剖肝脏和肿瘤的体积对于确定肿瘤与正常肝脏的比例以及计算与周围健康人相比将导致肿瘤区域辐射集中的Y-90微球剂量至关重要组织。目前从计算机断层扫描(CT)进行肝脏分割的手动技术往往很繁琐,并且在很大程度上取决于技术人员/医生完成这项任务的技术。本论文介绍了3-D完全集成算法的开发和实现。通过三相CT对肝脏和肿瘤进行分割,可以对肝脏和肿瘤各自的体积进行高度准确的估算。设计的算法需要最少的人工干预,而不会影响分割结果的准确性。嵌入该算法是一种提取提供肿瘤的血管的有效方法,以便有效地规划适当的治疗方法。肝的分割导致估计20个数据集中的肝体积的准确性超过95%。与手册黄金标准卷比较。在类似的比较中,肿瘤分割在估计肿瘤体积方面显示出86%的准确性。血管分割算法的定性结果证明了该算法在提取和渲染肝脏血管结构方面的有效性。使用单个工作站的并行计算过程的结果显示出78%的收益。此外,进行统​​计分析以确定手动初始化是否对准确性有任何影响,从而表明用户初始化结果的独立性。因此,本文为肝癌治疗计划提供了完整的3-D解决方案,并有机会提取,可视化和量化肝癌治疗所需的统计数据。由于SIRT需要高度准确地计算肝脏和肿瘤的体积,因此这种新方法可提供有效且计算高效的过程,以应对此类具有挑战性的临床需求。

著录项

  • 作者

    Goryawala, Mohammed Z.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Biomedical.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:51

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