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利用[68Ga]乙二胺四乙酸和正电子计算机断层扫描对人脑肿瘤血脑屏障通透性进行动力学评估。

A kinetic evaluation of blood-brain barrier permeability in human brain tumors with [68Ga]EDTA and positron computed tomography.

作者信息

Hawkins R A, Phelps M E, Huang S C, Wapenski J A, Grimm P D, Parker R G, Juillard G, Greenberg P

出版信息

J Cereb Blood Flow Metab. 1984 Dec;4(4):507-15. doi: 10.1038/jcbfm.1984.75.

Abstract

Twelve patients with primary and metastatic brain tumors were evaluated with [68Ga]ethylenediaminetetraacetate (EDTA) and positron computed tomography. Using a two-compartment tracer kinetic model, forward (K1) and reverse (k2) rate constants for molecular diffusion across the blood-brain barrier (BBB) were obtained and averaged 0.0029 +/- 0.0016 (mean +/- SD) ml/min/g for K1 and 0.0310 +/- 0.0156 min-1 for k2. Most tracer kinetic models are based on the assumption that tissue radioactivity contains no vascular component or require independent measures of cerebral blood volume (CBV) which are then subtracted from the measure tissue activity. The model in this work differs from that approach by assuming a vascular compartment in the tissue kinetic data. This vascular parameter is estimated from sequential measurements of activity concentrations in regions with an intact BBB or from measurements of 68Ga concentrations in the plasma (the input function). Thus, this approach does not require the assumption of a zero vascular contribution, does not require a separate measurement of CBV, and uses the criteria of constrained estimation to provide estimates of the local CBV and molecular diffusion through the BBB. Estimates of the relative CBV of the lesions in four studies (three subjects) with [68Ga]EDTA correlated well with those obtained with the C15O hemoglobin technique (correlation coefficient of 0.97).

摘要

12例原发性和转移性脑肿瘤患者接受了[68Ga]乙二胺四乙酸(EDTA)和正电子计算机断层扫描评估。采用双室示踪剂动力学模型,获得了分子跨血脑屏障(BBB)扩散的正向(K1)和反向(k2)速率常数,K1平均为0.0029±0.0016(均值±标准差)ml/min/g,k2平均为0.0310±0.0156 min-1。大多数示踪剂动力学模型基于组织放射性不包含血管成分这一假设,或者需要独立测量脑血容量(CBV),然后从测量的组织活性中减去。本研究中的模型与该方法不同,它在组织动力学数据中假设了一个血管隔室。该血管参数可根据对血脑屏障完整区域活性浓度的连续测量或血浆中68Ga浓度的测量(输入函数)来估计。因此,这种方法不需要假设血管贡献为零,不需要单独测量CBV,并使用约束估计标准来提供局部CBV和通过血脑屏障的分子扩散的估计值。在四项研究(三名受试者)中,用[68Ga]EDTA对病变相对CBV的估计与用C15O血红蛋白技术获得的估计值相关性良好(相关系数为0.97)。

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