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婴幼儿早期的氟代脱氧葡萄糖正电子发射断层扫描:测量脑葡萄糖利用的简化定量方法。

FDG-PET in early infancy: simplified quantification methods to measure cerebral glucose utilization.

作者信息

Suhonen-Polvi H, Ruotsalainen U, Kinnala A, Bergman J, Haaparanta M, Teräs M, M akel a P, Solin O, Wegelius U

机构信息

Department of Pediatrics, Turku University Central Hospital, Finland.

出版信息

J Nucl Med. 1995 Jul;36(7):1249-54.

PMID:7790951
Abstract

UNLABELLED

For further insight into the physiology and pathogenesis of the developing brain, quantification of the cerebral glucose metabolism is needed. Arterial blood sampling or sampling of great volumes of blood is not justified for the purpose of PET studies in children. Therefore, we have developed simplified PET approaches to analyze brain FDG examinations during infancy.

METHODS

The study consisted of 18 FDG-PET examinations chosen from our research protocols concerning hypoxicischemic encephalopathy and severe neonatal hypoglycemia. The input function for graphical analysis according to Patlak was derived in two ways: (1) a combined time-activity curve derived from the left ventricular activity concentration (first 7-17 min of the study) and radioactivity concentration in venous whole-blood samples and; (2) activity concentration measured in whole-blood venous blood samples (arterial plasma in one case). As an alternative for semiquantitation, the standardized uptake values (SUV) were calculated and correlated to local cerebral metabolic rates for glucose (LCMRGlc).

RESULTS

The influx rate constants (Ki) and LCMRGlc values obtained using the combined curve versus venous curve did not differ statistically (p > 0.05). There was a good correlation between the SUV and LCMRGlc values (r = 0.83, p < 0.001).

CONCLUSION

Local cerebral metabolic rates for glucose can be accurately calculated by using the combined curve (left ventricular activity concentration during first 5 min of the study and 2-3 venous whole-blood samples at the end of the study) for even the smallest pediatric patients. When blood samples cannot be obtained, SUV values provide an alternative for estimation of the cerebral glucose uptake and interindividual comparison of the patients.

摘要

未标注

为了更深入了解发育中大脑的生理学和发病机制,需要对脑葡萄糖代谢进行量化。对于儿童的正电子发射断层扫描(PET)研究而言,动脉采血或采集大量血液并不合理。因此,我们开发了简化的PET方法来分析婴儿期的脑氟代脱氧葡萄糖(FDG)检查。

方法

该研究包括从我们关于缺氧缺血性脑病和严重新生儿低血糖的研究方案中选取的18次FDG-PET检查。根据Patlak进行图形分析的输入函数通过两种方式得出:(1)从左心室活动浓度(研究的前7 - 17分钟)和静脉全血样本中的放射性浓度得出的组合时间 - 活性曲线;(2)在静脉全血样本(1例为动脉血浆)中测量的活性浓度。作为半定量的替代方法,计算标准化摄取值(SUV)并将其与局部脑葡萄糖代谢率(LCMRGlc)相关联。

结果

使用组合曲线与静脉曲线获得的流入速率常数(Ki)和LCMRGlc值在统计学上没有差异(p > 0.05)。SUV和LCMRGlc值之间存在良好的相关性(r = 0.83,p < 0.001)。

结论

即使对于最小的儿科患者,通过使用组合曲线(研究前5分钟的左心室活动浓度和研究结束时的2 - 3份静脉全血样本)也可以准确计算局部脑葡萄糖代谢率。当无法获取血样时,SUV值可为估计脑葡萄糖摄取和患者间的个体比较提供替代方法。

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