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在单次正电子发射断层扫描(PET)期间通过双次给予(15)O标记的氧气和水对脑氧代谢率(CMRO₂)和脑血流量(CBF)进行快速定量测量——一项在麻醉猴中的验证研究和误差分析

Rapid quantitative measurement of CMRO(2) and CBF by dual administration of (15)O-labeled oxygen and water during a single PET scan-a validation study and error analysis in anesthetized monkeys.

作者信息

Kudomi Nobuyuki, Hayashi Takuya, Teramoto Noboru, Watabe Hiroshi, Kawachi Naoki, Ohta Youichirou, Kim Kyeong Min, Iida Hidehiro

机构信息

Department of Investigative Radiology, Advanced Medical-Engineering Center, National Cardiovascular Center-Research Institute, Fujishirodai, Suita, Osaka, Japan.

出版信息

J Cereb Blood Flow Metab. 2005 Sep;25(9):1209-24. doi: 10.1038/sj.jcbfm.9600118.

Abstract

Cerebral blood flow (CBF) and rate of oxygen metabolism (CMRO(2)) may be quantified using positron emission tomography (PET) with (15)O-tracers, but the conventional three-step technique requires a relatively long study period, attributed to the need for separate acquisition for each of (15)O(2), H(2)(15)O, and C(15)O tracers, which makes the multiple measurements at different physiologic conditions difficult. In this study, we present a novel, faster technique that provides a pixel-by-pixel calculation of CBF and CMRO(2) from a single PET acquisition with a sequential administration of (15)O(2) and H(2)(15)O. Experiments were performed on six anesthetized monkeys to validate this technique. The global CBF, oxygen extraction fraction (OEF), and CMRO(2) obtained by the present technique at rest were not significantly different from those obtained with three-step method. The global OEF (gOEF) also agreed with that determined by simultaneous arterio-sinus blood sampling (gOEF(A-V)) for a physiologically wide range when changing the arterial PaCO(2) (gOEF=1.03gOEF(A-V)+0.01, P<0.001). The regional values, as well as the image quality were identical between the present technique and three-step method for CBF, OEF, and CMRO(2). In addition, a simulation study showed that error sensitivity of the present technique to delay or dispersion of the input function, and the error in the partition coefficient was equivalent to that observed for three-step method. Error sensitivity to cerebral blood volume (CBV) was also identical to that in the three-step and reasonably small, suggesting that a single CBV assessment is sufficient for repeated measures of CBF/CMRO(2). These results show that this fast technique has an ability for accurate assessment of CBF/CMRO(2) and also allows multiple assessment at different physiologic conditions.

摘要

脑血流量(CBF)和氧代谢率(CMRO₂)可通过使用含¹⁵O示踪剂的正电子发射断层扫描(PET)进行量化,但传统的三步技术需要相对较长的研究时间,这归因于对¹⁵O₂、H₂¹⁵O和C¹⁵O示踪剂中的每一种都需要单独采集,这使得在不同生理条件下进行多次测量变得困难。在本研究中,我们提出了一种新颖、更快的技术,该技术通过顺序注射¹⁵O₂和H₂¹⁵O,从单次PET采集中逐像素计算CBF和CMRO₂。对六只麻醉的猴子进行了实验以验证该技术。本技术在静息状态下获得的全脑CBF、氧摄取分数(OEF)和CMRO₂与三步法获得的结果无显著差异。当改变动脉血二氧化碳分压(PaCO₂)时,在生理范围内,全脑OEF(gOEF)也与通过同步动脉 - 窦血样采集确定的值(gOEF(A - V))一致(gOEF = 1.03gOEF(A - V)+ 0.01,P < 0.001)。对于CBF、OEF和CMRO₂,本技术与三步法之间的区域值以及图像质量相同。此外,一项模拟研究表明,本技术对输入函数延迟或弥散以及分配系数误差的误差敏感性与三步法观察到的相当。对脑血容量(CBV)的误差敏感性也与三步法相同且相当小,这表明单次CBV评估足以进行CBF/CMRO₂的重复测量。这些结果表明,这种快速技术能够准确评估CBF/CMRO₂,并且还允许在不同生理条件下进行多次评估。

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