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首页> 外文期刊>Annals of nuclear medicine >Optimal scan time of oxygen-15-labeled gas inhalation autoradiographic method for measurement of cerebral oxygen extraction fraction and cerebral oxygen metabolic rate.
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Optimal scan time of oxygen-15-labeled gas inhalation autoradiographic method for measurement of cerebral oxygen extraction fraction and cerebral oxygen metabolic rate.

机译:氧15标记的气体吸入放射自显影方法的最佳扫描时间,用于测量脑氧提取分数和脑氧代谢率。

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摘要

OBJECTIVE: Regional cerebral blood flow (CBF), cerebral blood volume, oxygen extraction fraction (OEF), and cerebral metabolic rate of oxygen (CMRO2) can be estimated from C15O, H(2)15O, and 15O2 tracers and positron emission tomography (PET) using an autoradiographic (ARG) method. Our objective in this study was to optimize the scan time for 15O2 gas study for accurate estimation of OEF and CMRO2. METHODS: We evaluated statistical noise in OEF by varying the scan time and error caused by the tissue heterogeneity in estimated OEF and CMRO2 using computer simulations. The characteristics of statistical noise were investigated by signal-to-noise (S/N) ratio from repeated tissue time activity curves with noise, which were generated using measured averaged arterial input function and assuming CBF=20, 50, and 80 (ml/100 g per minute). Error caused by tissue heterogeneity was also investigated by estimated OEF and CMRO2 from tissue time activity curve with mixture of gray and white matter varying fraction of mixture. In the simulations, three conditions were assumed (i) CBF in gray and white matter (CBFg and CBFw) was 80 and 20, OEF in gray and white matter (Eg and Ew) was 0.4 and 0.3, (ii) CBFg and CBFw decreased by 50%, and Eg and Ew increased by 50% when compared with conditions (i) and (iii). CBFg and CBFw decreased by 80%, and Eg and Ew increased by 50% when compared with condition (i). RESULTS: The longer scan time produced the better S/N ratio of estimated OEF value from three CBF values (20, 50, and 80). Errors of estimated OEF for three conditions owing to tissue heterogeneity decreased, as scan time took longer. Meanwhile in the case of CMRO2, 3 min of scan time was desirable. CONCLUSIONS: The optimal scan time of 15O2 inhalation study with the ARG method was concluded to be 3 min from taking into account for maintaining the S/N ratio and the quantification of accurate OEF and CMRO2.
机译:目的:可以通过C15O,H(2)15O和15O2示踪剂和正电子发射断层显像技术估算局部脑血流量(CBF),脑血容量,氧提取分数(OEF)和脑氧代谢率(CMRO2)( PET)使用放射自显影(ARG)方法。我们在这项研究中的目标是优化15O2气体研究的扫描时间,以准确估计OEF和CMRO2。方法:我们通过使用计算机模拟来改变估计的OEF和CMRO2中组织异质性的扫描时间和误差,从而评估OEF中的统计噪声。统计噪声的特征通过信噪比(S / N)从具有噪声的重复组织时间活动曲线中进行调查,该曲线是使用测量的平均动脉输入函数并假设CBF = 20、50和80(ml /每分钟100克)。由组织异质性引起的误差也通过根据组织时间活动曲线估计的OEF和CMRO2进行了研究,其中灰色和白色物质的混合物的混合比例各不相同。在模拟中,假定了以下三个条件:(i)灰色和白色物质(CBFg和CBFw)的CBF为80和20,灰色和白色物质(Eg和Ew)的OEF为0.4和0.3,(ii)CBFg和CBFw降低与条件(i)和(iii)相比,Eg和Ew增加了50%。与条件(i)相比,CBFg和CBFw降低了80%,Eg和Ew升高了50%。结果:扫描时间越长,来自三个CBF值(20、50和80)的OEF估计值的信噪比越好。由于组织异质性,三种情况下估计的OEF误差减少,这是因为扫描时间更长。同时,对于CMRO2,希望扫描时间为3分钟。结论:考虑到保持信噪比和定量准确的OEF和CMRO2,使用ARG方法进行15O2吸入研究的最佳扫描时间为3分钟。

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