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通过[18F]2-氟-2-脱氧-D-葡萄糖正电子发射断层扫描术估算局部脑葡萄糖利用率:优化程序的批判性评估

Estimation of local cerebral glucose utilization by positron emission tomography of [18F]2-fluoro-2-deoxy-D-glucose: a critical appraisal of optimization procedures.

作者信息

Wienhard K, Pawlik G, Herholz K, Wagner R, Heiss W D

出版信息

J Cereb Blood Flow Metab. 1985 Mar;5(1):115-25. doi: 10.1038/jcbfm.1985.15.

Abstract

Various approaches estimating local cerebral glucose utilization by positron emission tomography of labeled deoxyglucose are compared. Autoradiographic methods that predict the glucose utilization rate from a single scan are unreliable in pathologic tissue because of abnormal values of the model rate constants. A normalization procedure using the ratio of measured tissue activity to activity calculated with standard rate constants is proposed to readjust the values of the rate constants. Reliable estimates of metabolic rates can be obtained from dynamic recordings of tracer uptake. In the graphic approach, metabolic rate can be derived from the slope of a segment of a transformed uptake curve, which becomes linear at 15-20 min after intravenous tracer injection, with an accuracy comparable with that in complete dynamic studies. However, by recording and analyzing full-length uptake curves, in addition to metabolic rate, the model rate constants can be determined regionally. The physiological significance of those parameters is demonstrated in crossed cerebellar deactivation in 30 patients with supratentorial infarcts. Mild hypometabolism both within the ischemic lesion and in the morphologically intact cerebellum is accompanied by a reduction of the phosphorylation rate only. Severe metabolic depression, by contrast, affects both cerebellar transport and phosphorylation processes, whereas in the cerebrum, only the rate constant k1 is significantly correlated with the degree of metabolic disturbance.

摘要

比较了通过标记脱氧葡萄糖的正电子发射断层扫描估算局部脑葡萄糖利用率的各种方法。由于模型速率常数的值异常,在病理组织中,从单次扫描预测葡萄糖利用率的放射自显影方法不可靠。提出了一种使用测量的组织活性与用标准速率常数计算的活性之比的归一化程序来重新调整速率常数的值。可以从示踪剂摄取的动态记录中获得可靠的代谢率估计值。在图形方法中,代谢率可以从转换后的摄取曲线的一段斜率得出,该曲线在静脉注射示踪剂后15 - 20分钟变为线性,其准确性与完整动态研究相当。然而,通过记录和分析全长摄取曲线,除了代谢率之外,还可以在区域内确定模型速率常数。在30例幕上梗死患者的交叉小脑失活中证明了这些参数的生理意义。缺血性病变内和形态学上完整的小脑中的轻度代谢减退仅伴有磷酸化率的降低。相比之下,严重的代谢抑制会影响小脑的转运和磷酸化过程,而在大脑中,只有速率常数k1与代谢紊乱程度显著相关。

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