Chang J Y, Duara R, Barker W, Apicella A, Yoshii F, Kelley R E, Ginsberg M D, Boothe T E
Baumritter Institute of Nuclear Medicine, Mount Sinai Medical Center, Miami Beach, Florida.
J Nucl Med. 1989 Jan;30(1):93-105.
In a previous publication the theory, procedure, and results of a method were described for making two sequential measurements of cerebral metabolic rate for glucose (CMRglc), within a 2-hr period, using [18F]fluorodeoxyglucose. The error that is specific to this technique was estimated using computer simulations. CMRglc for the second state was sensitive to errors in (a) the values of the rate constants, (b) alignment of PET slices between the two scans, and (c) subtraction of one PET image from another. The root mean square of the average error from each error source was 6.4%, which gives the theoretical reliability of this method. The measured reproducibility, taken from our previous publication, was 4.2-6.2%, which is in good agreement with the present result. This method contributes a small additional error above that expected for two independent scans. However, independent scans done on different days are likely to be subject to larger physiological variations in CMRglc than would occur using this method.
在之前的一篇出版物中,描述了一种方法的理论、步骤和结果,该方法使用[18F]氟脱氧葡萄糖在2小时内对脑葡萄糖代谢率(CMRglc)进行两次连续测量。使用计算机模拟估计了该技术特有的误差。第二种状态下的CMRglc对以下方面的误差敏感:(a)速率常数的值,(b)两次扫描之间PET切片的对齐,以及(c)从一个PET图像中减去另一个PET图像。每个误差源的平均误差的均方根为6.4%,这给出了该方法的理论可靠性。从我们之前的出版物中得出的测量重现性为4.2-6.2%,与目前的结果非常一致。该方法除了两次独立扫描预期的误差外,还会产生少量额外误差。然而,与使用该方法相比,在不同日期进行的独立扫描可能会受到CMRglc中更大的生理变化的影响。