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用脱氧葡萄糖进行正电子断层扫描以评估局部心肌葡萄糖代谢。

Positron tomography with deoxyglucose for estimating local myocardial glucose metabolism.

作者信息

Ratib O, Phelps M E, Huang S C, Henze E, Selin C E, Schelbert H R

出版信息

J Nucl Med. 1982 Jul;23(7):577-86.

PMID:6979614
Abstract

The deoxyglucose method originally developed for measurements of the local cerebral metabolic rate for glucose has been investigated in terms of its application to cardiac studies with positron computed tomography (PCT) and fluorodeoxyglucose (FDG). Studies were performed in dogs to measure the tissue kinetics of FDG with PCT and by arterial and venous sampling. The operational equation developed in our laboratory as an extension of the Sokoloff model was used to analyze the data. Error propagation, primarily from corrections applied to remove spillover of activity from the myocardial blood pool to tissue and from partial-volume effects in the PCT images, limited accuracy in the estimation of the individual rate constants for transport, phosphorylation, and dephosphorylation. However, a constant representing the combination of transport and phosphorylation was accurately determined and yielded measured values of the myocardial metabolic rate for glucose (MMRGlc) that were in good agreement with direct determinations using the Fick method over a wide range of glucose metabolic rates (from 1.7 to 21.1 mg/min-100 g). The lumped constant (0.67 +/- 0.10) was also found accurate and stable over this range of metabolism. The FDG method accurately predicted the true MMRGlc even when the glucose metabolic rate was normal but myocardial blood flow (MBF) was five times the control value, or when metabolism was reduced to 10% of normal and MBF increased to five times normal. Improvements of PCT resolution are required to improve the accuracy of the estimates of the rate constant and the MMRGlc.

摘要

最初为测量局部脑葡萄糖代谢率而开发的脱氧葡萄糖法,已针对其在正电子计算机断层扫描(PCT)和氟脱氧葡萄糖(FDG)心脏研究中的应用进行了研究。在犬类中进行了研究,以通过PCT以及动脉和静脉采样来测量FDG的组织动力学。我们实验室作为Sokoloff模型的扩展而开发的运算方程被用于分析数据。误差传播主要来自为消除活性从心肌血池向组织的溢出以及PCT图像中的部分容积效应而应用的校正,这限制了对转运、磷酸化和去磷酸化的各个速率常数估计的准确性。然而,代表转运和磷酸化组合的一个常数被准确确定,并得出了心肌葡萄糖代谢率(MMRGlc)的测量值,该值在广泛的葡萄糖代谢率范围(从1.7至21.1毫克/分钟-100克)内与使用Fick法的直接测定结果高度一致。在这个代谢范围内,集总常数(0.67±0.10)也被发现是准确且稳定的。即使在葡萄糖代谢率正常但心肌血流量(MBF)是对照值的五倍时,或者当代谢降低至正常的10%且MBF增加至正常的五倍时,FDG法也能准确预测真实的MMRGlc。需要提高PCT分辨率以提高速率常数和MMRGlc估计的准确性。

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J Nucl Med. 1982 Jul;23(7):577-86.
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