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Noninvasive measurement of regional cerebral blood flow change with H/sub 2//sup 15/O and positron emission tomography using a mechanical injector and a standard arterial input function

机译:使用机械注射器和标准动脉输入功能,通过H / sub 2 // sup 15 / O和正电子发射断层扫描技术对区域性脑血流变化进行无创测量

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摘要

To estimate changes in regional cerebral blood flow (rCBF) without arterial sampling in the study of functional-anatomical correlations in the human brain, using /sup 15/O-labeled water and PET, a standard arterial input function was generated from the input function in 10 normal volunteers with dose calibration and peak time normalization. The speed and volume of injection were precisely controlled with a mechanical injector. After global normalization of each tissue activity image, the standard arterial input function was applied to obtain estimated CBF images. Relative changes in estimated rCBF to whole brain mean CBF( Delta Fest) and those in regional tissue activity ( Delta C) were compared with true relative rCBF changes ( Delta F) in 40 pairs of images obtained from 6 normal volunteers. Delta Fest correlated well with Delta F, whereas Delta C consistently underestimated Delta F. This noninvasive method simplifies the activation studies and provides the accurate estimation of relative flow changes.
机译:为了在研究未进行动脉采样的情况下评估人脑的功能解剖相关性时局部脑血流量(rCBF)的变化,使用/ sup 15 / O标记的水和PET,从输入函数中生成了标准的动脉输入函数在10名正常志愿者中进行剂量校准和峰值时间标准化。注射速度和注射量通过机械注射器精确控制。在对每个组织活动图像进行全局归一化之后,应用标准动脉输入函数来获取估计的CBF图像。在从6名正常志愿者获得的40对图像中,将估计的rCBF相对于全脑平均CBF(Delta Fest)的相对变化和区域组织活动(Delta C)的相对变化与真实相对rCBF变化(Delta F)进行了比较。 Delta Fest与Delta F相关性很好,而Delta C始终低估了DeltaF。这种非侵入性方法简化了激活研究,并提供了相对流量变化的准确估算。

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