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Imaging regional renal function parameters using radionuclide tracers.

机译:使用放射性核素示踪剂成像区域肾功能参数。

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摘要

A compartmental model is given for evaluating kidney function accurately and noninvasively. This model is cast into a parallel multi-compartment structure and each pixel region (picture element) of kidneys is considered as a single kidney compartment. The loss of radionuclide tracers from the blood to the kidney and from the kidney to the bladder are modelled in great detail. Both the uptake function and the excretion function of the kidneys can be evaluated pixel by pixel, and regional diagnostic information on renal function is obtained. Gamma Camera image data are required by this model and a screening test based renal function measurement is provided.;The regional blood background is subtracted from the kidney region of interest (ROI) and the kidney regional rate constants are estimated analytically using the Kuhn-Pucker multiplier method in convex programming by considering the input/output behavior of the kidney compartments. The detailed physiological model of the peripheral compartments of the system, which is not available for most radionuclide tracers, is not required in the determination of the kidney regional rate constants and the regional blood background factors within the kidney ROI. Moreover, the statistical significance of measurements is considered to assure the improved statistical properties of the estimated kidney rate constants. The relations between various renal function parameters and the kidney rate constants are established. Multiple renal function measurements can be found from the renal compartmental model.;The blood radioactivity curve and the regional (or total) radiorenogram determining the regional (or total) summed behavior of the kidneys are obtained analytically with the consideration of the statistical significance of measurements using convex programming methods for a single peripheral compartment system. In addition, a new technique for the determination of 'initial conditions' in both the blood compartment and the kidney compartment is presented. The blood curve and the radiorenogram are analyzed in great detail and a physiological analysis from the radiorenogram is given.;Applications of Kuhn-Tucker multiplier methods are illustrated for the renal compartmental model in the field of nuclear medicine. Conventional kinetic data analysis methods, the maximum likehood method, and the weighted integration method are investigated and used for comparisons. Moreover, the effect of the blood background subtraction is shown by using the gamma camera images in man.;Several functional images are calculated and the functional imaging technique is applied for evaluating renal function in man quantitatively and visually and compared with comments from a physician.
机译:给出了一个隔室模型,用于准确无创地评估肾脏功能。该模型被转换为平行的多隔室结构,肾脏的每个像素区域(像素)都被视为单个肾脏隔室。对从血液到肾脏以及从肾脏到膀胱的放射性核素示踪剂的损失进行了详细建模。可以逐个像素地评估肾脏的摄取功能和排泄功能,并获得有关肾脏功能的区域诊断信息。该模型需要Gamma相机图像数据,并提供基于筛选测试的肾功能测量。;从感兴趣的肾脏区域(ROI)减去区域血液背景,并使用Kuhn-Pucker分析性地估计肾脏区域速率常数凸编程中的乘数法,要考虑肾脏隔室的输入/输出行为。在确定肾脏ROI内的肾脏区域速率常数和区域血液背景因素时,不需要系统的外围隔室的详细生理模型(大多数放射性核素示踪剂无法提供)。此外,测量的统计意义被认为是为了确保估计的肾速率常数的改善的统计特性。建立了各种肾功能参数与肾速率常数之间的关系。可以从肾区室模型中找到多个肾功能的测量值。考虑到测量值的统计意义,可以通过分析获得确定肾脏区域(或总)总行为的血液放射性曲线和区域(或总)放射性肾图对单个外围隔间系统使用凸编程方法。另外,提出了一种用于确定血液隔室和肾脏隔室中“初始状态”的新技术。详细分析了血液曲线和放射线图,并给出了放射线图的生理分析。举例说明了Kuhn-Tucker乘数法在核医学领域中肾区室模型中的应用。研究了常规动力学数据分析方法,最大似然法和加权积分法,并将其用于比较。此外,通过使用人的伽玛相机图像显示了血液背景减影的效果。;计算了几个功能图像,并将功能成像技术应用于定量和视觉评估人体的肾功能,并与医生的意见进行了比较。

著录项

  • 作者

    Qiao, Yi.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Engineering Biomedical.;Engineering Nuclear.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

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