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Radiation dose reduction techniques for dynamic, contrast-enhanced cerebral computed tomography.

机译:动态,增强对比的脑部计算机断层扫描的辐射剂量减少技术。

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摘要

Dynamic, contrast-enhanced cerebral imaging protocols including Computed Tomography Angiography (CTA) and CT Perfusion (CTP) are vital diagnostic tools to assess neurovascular disease. However, radiation dose delivered to patients in time-resolved CT protocols is high and potential risk associated with the ionizing radiation dose exists. Thus, minimizing radiation dose is highly desirable for time-resolved CT imaging. In order to reduce the radiation dose delivered during dynamic, contrast-enhanced CT applications, the CT formulation of HighlY constrained back PRojection (HYPR) imaging is applied to dynamic cerebral CT imaging. Radiation dose reduction techniques of acquiring a reduced number of projections for each image and lowering the tube current used during acquisition are explored. HYPR image reconstruction is used to produce image sets at a reduced patient dose and with low image noise. Additionally, spatial resolution in the axial plane to eliminate the partial volume effect in CTP imaging is examined using HYPR image processing. Numerical phantom experiments and retrospective analysis of in vivo canine studies and human subject scan data are used to assess the accuracy and quality of HYPR reduced dose image sets and validate our approach. Experimental results demonstrate that a factor of 6--8 times radiation dose reduction for time-resolved CTA, a factor of 4 times radiation dose reduction for CTP and axial resolution improvements of a factor of 4 are possible when the HYPR algorithm is applied to time-resolved cerebral CT imaging protocols.
机译:动态,增强对比的脑成像方案,包括计算机断层扫描血管造影(CTA)和CT灌注成像(CTP),是评估神经血管疾病的重要诊断工具。然而,在时间分辨的CT方案中递送给患者的辐射剂量很高,并且存在与电离辐射剂量相关的潜在风险。因此,对于时间分辨的CT成像,非常希望使辐射剂量最小。为了减少在动态,增强对比度的CT应用过程中传递的辐射剂量,HighlY约束后背射影(HYPR)成像的CT公式应用于动态脑部CT成像。探索了减少辐射剂量的技术,该技术可获取每个图像的投影数量减少并降低在采集过程中使用的电子管电流。 HYPR图像重建用于以减少的患者剂量和低图像噪声产生图像集。此外,使用HYPR图像处理检查了轴向平面上的空间分辨率,以消除CTP成像中的局部体积效应。体内犬科研究的数字幻象实验和回顾性分析以及人类受试者扫描数据用于评估HYPR减剂量影像集的准确性和质量,并验证我们的方法。实验结果表明,将HYPR算法应用于时间分析时,时间分辨CTA的辐射剂量降低6--8倍,CTP的辐射剂量降低4倍,轴向分辨率提高4倍是可能的解析的脑部CT成像方案。

著录项

  • 作者

    Supanich, Mark.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Biomedical.;Biophysics Medical.;Physics Radiation.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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