首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Reconstruction of input functions from a dynamic PET image with sequential administration of 15O2 and ... formula ... for noninvasive and ultra-rapid measurement of CBF OEF and CMRO2
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Reconstruction of input functions from a dynamic PET image with sequential administration of 15O2 and ... formula ... for noninvasive and ultra-rapid measurement of CBF OEF and CMRO2

机译:从动态PET图像重建输入功能并依次给药15O2和...公式用于无创和超快速测量CBFOEF和CMRO2

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摘要

CBF, OEF, and CMRO2 images can be quantitatively assessed using PET. Their image calculation requires arterial input functions, which require invasive procedure. The aim of the present study was to develop a non-invasive approach with image-derived input functions (IDIFs) using an image from an ultra-rapid O2 and C15O2 protocol. Our technique consists of using a formula to express the input using tissue curve with rate constants. For multiple tissue curves, the rate constants were estimated so as to minimize the differences of the inputs using the multiple tissue curves. The estimated rates were used to express the inputs and the mean of the estimated inputs was used as an IDIF. The method was tested in human subjects (n = 24). The estimated IDIFs were well-reproduced against the measured ones. The difference in the calculated CBF, OEF, and CMRO2 values by the two methods was small (<10%) against the invasive method, and the values showed tight correlations (r = 0.97). The simulation showed errors associated with the assumed parameters were less than ∼10%. Our results demonstrate that IDIFs can be reconstructed from tissue curves, suggesting the possibility of using a non-invasive technique to assess CBF, OEF, and CMRO2.
机译:可以使用PET定量评估CBF,OEF和CMRO2图像。他们的图像计算需要动脉输入功能,这需要侵入性程序。本研究的目的是使用来自超快O2和C 15 O2协议的图像开发一种具有图像衍生输入功能(IDIF)的非侵入性方法。我们的技术包括使用公式通过具有速率常数的组织曲线来表示输入。对于多个组织曲线,估计速率常数,以便最小化使用多个组织曲线的输入差异。估计比率用于表示输入,估计输入的平均值用作IDIF。该方法在人类受试者中进行了测试(n = 24)。估计的IDIF与测得的IDIF相吻合。与侵入式方法相比,两种方法计算的CBF,OEF和CMRO2值的差异很小(<10%),并且这些值显示出紧密的相关性(r = 0.97)。仿真表明,与假定参数相关的误差小于10%。我们的结果表明,可以从组织曲线中重建IDIF,这表明使用非侵入性技术评估CBF,OEF和CMRO2的可能性。

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