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使用标准动脉输入函数对小动物[18F]FDG PET研究进行简化定量分析。

Simplified quantification of small animal [18F]FDG PET studies using a standard arterial input function.

作者信息

Meyer Philipp T, Circiumaru Valentina, Cardi Christopher A, Thomas Daniel H, Bal Harshali, Acton Paul D

机构信息

Department of Neurology, University Hospital Aachen, Pauwelsstrasse 30, 52074, Aachen, Germany.

出版信息

Eur J Nucl Med Mol Imaging. 2006 Aug;33(8):948-54. doi: 10.1007/s00259-006-0121-7. Epub 2006 May 13.

Abstract

PURPOSE

Arterial input function (AIF) measurement for quantification of small animal PET studies is technically challenging and limited by the small blood volume of small laboratory animals. The present study investigated the use of a standard arterial input function (SAIF) to simplify the experimental procedure.

METHODS

Twelve [(18)F]fluorodeoxyglucose ([(18)F]FDG) PET studies accompanied by serial arterial blood sampling were acquired in seven male Sprague-Dawley rats under isoflurane anaesthesia without (every rat) and with additional (five rats) vibrissae stimulation. A leave-one-out procedure was employed to validate the use of a SAIF with individual scaling by one (1S) or two (2S) arterial blood samples.

RESULTS

Automatic slow bolus infusion of [(18)F]FDG resulted in highly similar AIF in all rats. The average differences of the area under the curve of the measured AIF and the individually scaled SAIF were 0.11+/-4.26% and 0.04+/-2.61% for the 1S (6-min sample) and the 2S (4-min/43-min samples) approach, respectively. The average differences between the cerebral metabolic rates of glucose (CMR(glc)) calculated using the measured AIF and the scaled SAIF were 1.31+/-5.45% and 1.30+/-3.84% for the 1S and the 2S approach, respectively.

CONCLUSION

The use of a SAIF scaled by one or (preferably) two arterial blood samples can serve as a valid substitute for individual AIF measurements to quantify [(18)F]FDG PET studies in rats. The SAIF approach minimises the loss of blood and should be ideally suited for longitudinal quantitative small animal [(18)F]FDG PET studies.

摘要

目的

在小动物PET研究中,测量动脉输入函数(AIF)以进行定量分析在技术上具有挑战性,并且受到小型实验动物小血容量的限制。本研究探讨了使用标准动脉输入函数(SAIF)来简化实验程序。

方法

在七只雄性Sprague-Dawley大鼠中,于异氟烷麻醉下进行了十二次[(18)F]氟脱氧葡萄糖([(18)F]FDG)PET研究,并伴有连续动脉血采样,其中未进行(每只大鼠)和额外进行(五只大鼠)触须刺激。采用留一法程序来验证通过一(1S)或两(2S)个动脉血样本进行个体缩放的SAIF的使用。

结果

[(18)F]FDG的自动缓慢推注输注在所有大鼠中产生了高度相似的AIF。对于1S(6分钟样本)和2S(4分钟/43分钟样本)方法,测量的AIF曲线下面积与个体缩放的SAIF的平均差异分别为0.11±4.26%和0.04±2.61%。使用测量的AIF和缩放的SAIF计算的脑葡萄糖代谢率(CMR(glc))之间的平均差异,对于1S和2S方法分别为1.31±5.45%和1.30±3.84%。

结论

通过一或(最好)两个动脉血样本进行缩放的SAIF的使用可以作为个体AIF测量的有效替代方法,以对大鼠的[(18)F]FDG PET研究进行定量分析。SAIF方法可将失血降至最低,应非常适合于纵向定量小动物[(18)F]FDG PET研究。

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