Kuhl D E, Metter E J, Riege W H, Phelps M E
J Cereb Blood Flow Metab. 1982;2(2):163-71. doi: 10.1038/jcbfm.1982.15.
The [18F]fluorodeoxyglucose (FDG) scan method with positron emission computed tomography was used to determine patterns of local cerebral glucose utilization (LCMRglu) in 40 normal volunteer subjects aged 18 to 78 years. Throughout all the studies, each subject was quiet, without movement, with eyes open and ears unplugged, exposed only to ambient room light and sound. For the entire group, whole brain mean CMRglu was 26.1 +/- 6.1 mumol 100 g-1 min-1 (mean +/- SD, n = 40). At age 78, mean CMRglu was, on the average, 26% less than at age 18, an alteration of the same order as the variance among subjects at any age. The gradual decline of mean CMRglu with advancing age occurred at a faster rate than was reported for mean cerebral oxygen utilization, possibly due to increasingly altered pathways for glucose utilization, or to increasing oxidation of ketone bodies or other alternative substrates. Glucose utilization in the hemispheres was symmetrical and mean CMRglu of overall cortex, caudate, and thalamus was equal in individuals at all ages. The slopes of decline with age were similar when LCMRglu was averaged over zones corresponding to centrum semiovale, caudate, putamen, and frontal, temporal, parietal, occipital, and primary visual cortex. However, the metabolic ratio of superior frontal cortex to superior parietal cortex declined with age, possibly due to selective degeneration of superior frontal cortex or to differences between age groups in the sensory and cognitive response to the study. These results should be useful in distinguishing age from disease effects when the FDG scan method is used.
采用正电子发射计算机断层扫描的[18F]氟脱氧葡萄糖(FDG)扫描方法,测定了40名年龄在18至78岁之间的正常志愿者的局部脑葡萄糖利用率(LCMRglu)模式。在所有研究中,每个受试者保持安静、无运动、睁眼且不堵塞耳朵,仅暴露于室内的自然光线和声音中。对于整个研究组,全脑平均CMRglu为26.1±6.1μmol·100g-1·min-1(平均值±标准差,n = 40)。78岁时的平均CMRglu平均比18岁时低26%,这种变化幅度与任何年龄受试者之间的差异程度相当。随着年龄的增长,平均CMRglu逐渐下降,其下降速度比报道的平均脑氧利用率下降速度更快,这可能是由于葡萄糖利用途径的改变日益增加,或者是由于酮体或其他替代底物的氧化增加所致。大脑半球的葡萄糖利用是对称的,所有年龄段个体的整个皮质、尾状核和丘脑的平均CMRglu相等。当将对应于半卵圆中心、尾状核、壳核以及额叶、颞叶、顶叶、枕叶和初级视觉皮质区域的LCMRglu平均计算时,其随年龄下降的斜率相似。然而,额上回皮质与顶上回皮质的代谢率随年龄下降,这可能是由于额上回皮质的选择性退化,或者是由于不同年龄组对该研究的感觉和认知反应存在差异。当使用FDG扫描方法时,这些结果将有助于区分年龄与疾病的影响。