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首页> 外文期刊>Nuclear Medicine Communications >Non-invasive quantification of cerebral blood flow for rats by microPET imaging of 15O labelled water: the application of a cardiac time-activity curve for the tracer arterial input function.
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Non-invasive quantification of cerebral blood flow for rats by microPET imaging of 15O labelled water: the application of a cardiac time-activity curve for the tracer arterial input function.

机译:通过15O标记水的microPET成像对大鼠的脑血流进行非侵入式量化:示踪动脉输入功能的心脏时间-活动曲线的应用。

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OBJECTIVE: In-vivo quantitative cerebral blood flow (CBF) measurement using positron emission tomography (PET) has typically employed invasive arterial blood sampling procedure to determine the arterial input function (AIF). The present study was performed to provide a non-invasive quantitative CBF measurement technique for rats using a dedicated animal PET. METHODS: CBF was measured in 10 male rats (Fischer 344, 247-290 g) under alpha-chloralose anesthesia (30 mg . kg . h, intravenous infusion) by dynamic PET imaging employing the intravenous bolus injection of H2O. Unlike other conventional PET methods, no arterial blood sampling was employed. Instead, a cardiac time-activity curve (TAC) obtained from the dynamic PET imaging was used to determine the AIF. For the validation of this technique, CBF was also measured by calculating the washout rate of the tracer (H2O) following an intracarotid bolus injection. CBF measurements by two independent methods were done while modulating and maintaining the body temperature at two different levels (32+/-1 and 37+/-1 degrees C by the rectal temperature). Two methods were compared by the linear regression analysis. RESULTS: CBF (ml . 100 g . min) values (mean+/-SD) were 45.2+/-6.05 (intravenous) and 47.4+/-8.64 (intracarotid) at the hypothermic condition (32 degrees C), and 55.1+/-4.88 (intravenous) and 54.4+/-4.60 (intracarotid) at the normothermic condition (37 degrees C). There was a good agreement between the two methods (r=0.70). CONCLUSIONS: Our cardiac TAC analysis technique for small animals can be used for the non-invasive quantification of CBF using the PET-based in-vivo imaging technique.
机译:目的:使用正电子发射断层扫描(PET)进行体内定量脑血流量(CBF)测量通常采用侵入性动脉血采样程序来确定动脉输入功能(AIF)。进行本研究以提供使用专用动物PET的大鼠的非侵入性定量CBF测量技术。方法:通过动态PET显像,通过静脉推注H 2 O,在10只雄性大鼠(Fischer 344,247-290 g)的α-氯醛糖麻醉下(30 mg。kg。h,静脉内输注)测量CBF。与其他常规PET方法不同,没有采用动脉血采样。取而代之的是,从动态PET成像获得的心脏时间活动曲线(TAC)用于确定AIF。为了验证该技术,还通过计算颈动脉推注后示踪剂(H2O)的清除率来测量CBF。通过两种独立方法进行CBF测量,同时将体温调节和维持在两个不同水平(直肠温度为32 +/- 1和37 +/- 1摄氏度)。通过线性回归分析比较了两种方法。结果:在低温条件下(32摄氏度),CBF(毫升。100克。分钟)值(平均值±标准差)分别为45.2 +/- 6.05(静脉内)和47.4 +/- 8.64(颈内动脉),和55.1 + /在常温条件下(37摄氏度)为-4.88(静脉)和54.4 +/- 4.60(颈内)。两种方法之间有很好的一致性(r = 0.70)。结论:我们的小型动物心脏TAC分析技术可用于基于PET的体内成像技术的CBF的无创定量分析。

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