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首页> 外文期刊>Physics in medicine and biology. >Quantification of rat brain SPECT with 123I-ioflupane: Evaluation of different reconstruction methods and image degradation compensations using Monte Carlo simulation
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Quantification of rat brain SPECT with 123I-ioflupane: Evaluation of different reconstruction methods and image degradation compensations using Monte Carlo simulation

机译:用123i-Ioflupane定量大鼠脑SPECT:使用Monte Carlo仿真评估不同重建方法和图像劣化补偿

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摘要

SPECT studies with 123I-ioflupane facilitate the diagnosis of Parkinson's disease (PD). The effect on quantification of image degradations has been extensively evaluated in human studies but their impact on studies of experimental PD models is still unclear. The aim of this work was to assess the effect of compensating for the degrading phenomena on the quantification of small animal SPECT studies using 123I-ioflupane. This assessment enabled us to evaluate the feasibility of quantitatively detecting small pathological changes using different reconstruction methods and levels of compensation for the image degrading phenomena. Monte Carlo simulated studies of a rat phantom were reconstructed and quantified. Compensations for point spread function (PSF), scattering, attenuation and partial volume effect were progressively included in the quantification protocol. A linear relationship was found between calculated and simulated specific uptake ratio (SUR) in all cases. In order to significantly distinguish disease stages, noise-reduction during the reconstruction process was the most relevant factor, followed by PSF compensation. The smallest detectable SUR interval was determined by biological variability rather than by image degradations or coregistration errors. The quantification methods that gave the best results allowed us to distinguish PD stages with SUR values that are as close as 0.5 using groups of six rats to represent each stage.
机译:123i-Ioflupane的SPECT研究促进了帕金森病(PD)的诊断。在人类研究中广泛评估了对图像降解的定量的影响,但它们对实验PD模型的研究的影响尚不清楚。这项工作的目的是评估使用123i-Ioflupane进行小动物SPECT研究的降解现象的效果。该评估使我们能够评估使用不同的重建方法和图像降级现象的补偿水平定量检测小病理变化的可行性。重建和量化蒙特卡罗模拟大鼠幻影的研究。点扩散功能(PSF)的补偿,散射,衰减和部分体积效应逐渐包括在量化方案中。在所有情况下计算和模拟特定摄取比(SUR)之间发现了线性关系。为了显着区分疾病阶段,重建过程中的降噪是最相关的因素,其次是PSF补偿。通过生物可变性而不是通过图像降解或核记分误差来确定最小的可检测的Sur间隔。提供了最佳结果的量化方法使我们能够将PD阶段与SUR值区分开,其使用六只大鼠组代表每个阶段的组。

著录项

  • 来源
    《Physics in medicine and biology.》 |2014年第16期|共16页
  • 作者单位

    Unitat de Biofísica i Bioenginyeria Universitat de Barcelona Casanova 143 Barcelona 08036 Spain;

    Unitat de Biofísica i Bioenginyeria Universitat de Barcelona Casanova 143 Barcelona 08036 Spain;

    CIBER de Bioingeniería Biomateriales y Nanomedicina (CIBER-BBN) Villarroel 170 Barcelona 08036;

    Unitat de Biofísica i Bioenginyeria Universitat de Barcelona Casanova 143 Barcelona 08036 Spain;

    CIBER de Bioingeniería Biomateriales y Nanomedicina (CIBER-BBN) Villarroel 170 Barcelona 08036;

    INGENIO IRCE Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS-CELLEX);

    CIBER de Bioingeniería Biomateriales y Nanomedicina (CIBER-BBN) Villarroel 170 Barcelona 08036;

    Unitat de Biofísica i Bioenginyeria Universitat de Barcelona Casanova 143 Barcelona 08036 Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 R35;
  • 关键词

    123I-ioflupane; animal models; Parkinson's disease; quantification; reconstruction; simulation; SPECT;

    机译:123i-ioflupane;动物模型;帕金森病;量化;重建;模拟;SPECT;

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