McGeer P L, Kamo H, Harrop R, Li D K, Tuokko H, McGeer E G, Adam M J, Ammann W, Beattie B L, Calne D B
CMAJ. 1986 Mar 15;134(6):597-607.
Fourteen patients who had clinically diagnosed Alzheimer's disease with mild to severe dementia (mean age 69.1 years) were evaluated by calculation of local cerebral metabolic rate for glucose (LCMR-gl) based on uptake of 18F-2-fluoro-2-deoxyglucose (FDG) detected with positron emission tomography (PET). PET scanning showed that the patients had significantly lower LCMR-gl values than 11 age-matched neurologically normal volunteers (mean age 66.3 years). The differences were most marked in the temporal cortex, followed by the frontal, parietal and occipital cortex. In each case the LCMR-gl value was below the lowest control value in at least one cortical area and usually in several; the reduction in LCMR-gl and the number of regions involved in the patients increased with the severity of the dementia. Deficits noted in neuropsychologic testing generally correlated with those predicted from loss of regional cortical metabolism. The patients with Alzheimer's disease were also examined with magnetic resonance imaging, computed tomography or both; the degree of atrophy found showed only a poor correlation with the neuropsychologic deficit. Significant atrophy was also noted in some of the controls. A detailed analysis of LCMR-gl values in selected cerebral regions of various sizes refuted the hypothesis that the reduction in cortical glucose metabolism in Alzheimer's disease is due to the filling by metabolically inert cerebrospinal fluid of space created by tissue atrophy.
对14例临床诊断为阿尔茨海默病且患有轻至重度痴呆的患者(平均年龄69.1岁)进行了评估,通过基于正电子发射断层扫描(PET)检测到的18F-2-氟-2-脱氧葡萄糖(FDG)摄取量来计算局部脑葡萄糖代谢率(LCMR-gl)。PET扫描显示,这些患者的LCMR-gl值显著低于11名年龄匹配的神经功能正常志愿者(平均年龄66.3岁)。差异在颞叶皮质最为明显,其次是额叶、顶叶和枕叶皮质。在每种情况下,LCMR-gl值在至少一个皮质区域且通常在几个皮质区域低于最低对照值;患者中LCMR-gl的降低以及受累区域的数量随着痴呆严重程度的增加而增加。神经心理学测试中发现的缺陷通常与根据区域皮质代谢丧失所预测的缺陷相关。还对阿尔茨海默病患者进行了磁共振成像、计算机断层扫描或两者检查;发现的萎缩程度与神经心理学缺陷仅存在较弱的相关性。在一些对照中也发现了明显的萎缩。对不同大小的选定脑区LCMR-gl值的详细分析驳斥了以下假设,即阿尔茨海默病中皮质葡萄糖代谢降低是由于代谢惰性脑脊液填充了组织萎缩所产生的空间。