首页> 外文会议>Pan-Sydney area workshop on Visual information processing >Numerical deconvolution by a Monte Carlo approach with application to dynamic cardiac perfusion Tc-99m SPECT
【24h】

Numerical deconvolution by a Monte Carlo approach with application to dynamic cardiac perfusion Tc-99m SPECT

机译:蒙特卡罗方法对动态心脏灌注TC-99M Spect的数值折叠方法

获取原文

摘要

Accurate determination of the input function is essential for absolute quantification of physiological parameters in PET and SPECT imaging but it requires an invasive and tedious procedure of blood sampling that is impractical in clinical studies. We previously proposed a technique that simultaneously estimates kinetic parameters and the input function from the tissue impulse response functions and which, requires only two blood samples. A nonlinear least squares method was used to estimate all the parameters in the impulse response functions and the input function but it fails occasionally due to high noise levels in the data causing an ill-conditioned cost function. This study investigates the feasibility of applying a Monte Carlo method called simulated annealing to estimate kinetic parameters in the impulse response functions and the input function. Time-activity curves of teboroxime, which is very sensitive to changes in the input function, were simulated based on published data obtained froma canine model. The equations describing the tracer kinetics in different regions were minimised simultaneously by simulated annealing and nonlinear least squares. We found that the physiological parameters obtained with simulated annealing are more accurate and the estimated input function more closely resembled the simulated curve. We conclude that simulated annealing reduces bias in the estimation of physiological parameters and determination of the input function.
机译:准确测定输入功能对于PET和SPECT成像中的生理参数的绝对量化是必不可少的,但它需要一种在临床研究中是不切实际的血液抽样的侵入性和繁琐的过程。我们之前提出了一种同时估计动力学参数和来自组织脉冲响应函数的输入功能的技术,并且只需要两个血样。非线性最小二乘法用于估计脉冲响应函数和输入功能中的所有参数,而是由于数据中的高噪声水平导致不良成本函数,因此偶尔会出现故障。本研究调查应用称为模拟退火的蒙特卡罗方法的可行性来估计脉冲响应函数和输入功能中的动力学参数。基于从AININE模型获得的已发布数据模拟了对输入功能变化非常敏感的Teboroxime的时间 - 活动曲线。通过模拟的退火和非线性最小二乘来同时描述描述不同区域中的示踪动力学的等式。我们发现,使用模拟退火获得的生理参数更准确,并且估计的输入功能更紧密地类似于模拟曲线。我们得出结论,模拟退火减少了生理参数估计和输入功能的测定中的偏差。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号