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用于生成可重复功能性脑血流量(CBF)图像的动态与积分方法相结合

Combination of dynamic and integral methods for generating reproducible functional CBF images.

作者信息

Lammertsma A A, Cunningham V J, Deiber M P, Heather J D, Bloomfield P M, Nutt J, Frackowiak R S, Jones T

机构信息

MRC Cyclotron Unit, Hammersmith Hospital, London, England.

出版信息

J Cereb Blood Flow Metab. 1990 Sep;10(5):675-86. doi: 10.1038/jcbfm.1990.121.

Abstract

A new method to measure regional CBF is presented, applying both dynamic and integral analyses to a dynamic sequence of positron emission tomographic scans collected during and following the administration of H2(15)O (inhalation of C15O2). The dynamic analysis is used to correct continuously monitored arterial whole-blood activity for delay and dispersion relative to tissue scans. An integral analysis including corrections for this delay and dispersion is then used to calculate CBF on a pixel-by-pixel basis. Normal values and reproducibility over a 2-h period are presented, together with the results of validation and simulation studies. The results indicate that the single-tissue compartment model adequately describes the distribution of H2(15)O in the brain, without recourse to postulating a nonexchanging water pool.

摘要

本文介绍了一种测量局部脑血流量(CBF)的新方法,该方法将动态分析和积分分析应用于在吸入C15O2期间及之后采集的正电子发射断层扫描动态序列。动态分析用于对连续监测的动脉全血活性进行校正,以消除相对于组织扫描的延迟和弥散。然后,使用包括对这种延迟和弥散进行校正的积分分析,逐像素计算CBF。给出了2小时内的正常值和重现性,以及验证和模拟研究的结果。结果表明,单组织隔室模型能够充分描述H2(15)O在脑中的分布,无需假设一个不交换的水池。

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