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[使用¹⁴C-IAP和¹⁸F-FDG同步测量局部脑血流量和局部脑葡萄糖利用率的定量双示踪剂放射自显影技术]

[Quantitative double tracer autoradiographic technique for the simultaneous measurement of local cerebral blood flow and local cerebral glucose utilization using 14C-IAP and 18F-FDG].

作者信息

Sako K, Kato A, Kobatake K, Diksic M, Yamamoto L, Yonemasu Y

出版信息

No To Shinkei. 1984 Jul;36(7):649-56.

PMID:6487434
Abstract

We have reported a quantitative double tracer autoradiographic technique for the simultaneous measurement of local cerebral blood flow (LCBF) and local cerebral glucose utilization (LCGU) using 14C-IAP and 18F-FDG respectively. Six awake normal rats and 3 left middle cerebral artery (MCA) occluded rats were used for this experiments. A 50-hold greater radioactivity of 18F was administered and the first exposure was done for 2 hours to obtain a 18F image. Three days later (39 half-lives of 18F), a second exposure was done for 5 to 6 days to obtain the 14C image. Tissue concentration of 14C was measured relative to the commercially available 14C-methyl methacrylate standards. 18F standards were prepared in each experiment. Cross contamination of 14C in the first exposure was less than 2% in the normal state and less than 4% even in the uncoupling condition. The values obtained by this methods for LCBF and LCGU agreed closely with those obtained by a single tracer technique previously reported in the literature. The technique outlined in this paper also provided local glucose utilization flow ratio (LGFR) for the first time. LGFR was obtained by dividing the LCGU image by LCBF image and was expressed as percent mumol/ml. The mean LGFR of control rats was 76 +/- 8% mumol/ml. In a MCA occlusion group, LGFR of ischemic cortex increased until 2 to 3 times higher than that of contralateral non-ischemic cortex. Oxygen glucose index image which was obtained from the LCGU and A-V differences of O2 showed that approximately half of the glucose was metabolized anerobically.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们报道了一种定量双示踪剂放射自显影技术,分别使用¹⁴C-IAP和¹⁸F-FDG同时测量局部脑血流量(LCBF)和局部脑葡萄糖利用率(LCGU)。本实验使用了6只清醒的正常大鼠和3只左大脑中动脉(MCA)闭塞的大鼠。给予¹⁸F的放射性比活度高50倍,并首次曝光2小时以获得¹⁸F图像。三天后(¹⁸F的39个半衰期),再次曝光5至6天以获得¹⁴C图像。相对于市售的¹⁴C-甲基丙烯酸甲酯标准物测量¹⁴C的组织浓度。每次实验都制备¹⁸F标准物。在正常状态下,首次曝光中¹⁴C的交叉污染小于2%,即使在解偶联状态下也小于4%。通过该方法获得的LCBF和LCGU值与文献中先前报道的单示踪剂技术获得的值非常接近。本文概述的技术还首次提供了局部葡萄糖利用率血流比(LGFR)。LGFR通过将LCGU图像除以LCBF图像获得,并以每毫升微摩尔百分比表示。对照大鼠的平均LGFR为76±8%微摩尔/毫升。在MCA闭塞组中,缺血皮层的LGFR增加,直至比同侧非缺血皮层高2至3倍。从LCGU和O₂的动静脉差值获得的氧葡萄糖指数图像显示,大约一半的葡萄糖通过无氧代谢。(摘要截断于250字)

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