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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Effects of flow changes on radiotracer binding: Simultaneous measurement of neuroreceptor binding and cerebral blood flow modulation
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Effects of flow changes on radiotracer binding: Simultaneous measurement of neuroreceptor binding and cerebral blood flow modulation

机译:流动变化对放射性反射液结合的影响:同时测量神经聚糖和脑血流量调制

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The potential effects of changes in blood flow on the delivery and washout of radiotracers has been an ongoing question in PET bolus injection studies. This study provides practical insight into this topic by experimentally measuring cerebral blood flow (CBF) and neuroreceptor binding using simultaneous PET/MRI. Hypercapnic challenges (7% CO2) were administered to non-human primates in order to induce controlled increases in CBF, measured with pseudo-continuous arterial spin labeling. Simultaneously, dopamine D-2/D-3 receptor binding of [C-11]raclopride or [F-18]fallypride was monitored with dynamic PET. Experiments showed that neither time activity curves nor quantification of binding through binding potentials (BPND) were measurably affected by CBF increases, which were larger than two-fold. Simulations of experimental procedures showed that even large changes in CBF should have little effect on the time activity curves of radiotracers, given a set of realistic assumptions. The proposed method can be applied to experimentally assess the flow sensitivity of other radiotracers. Results demonstrate that CBF changes, which often occur due to behavioral tasks or pharmacological challenges, do not affect PET [C-11]raclopride or [F-18]fallypride binding studies and their quantification. The results from this study suggest flow effects may have limited impact on many PET neuroreceptor tracers with similar properties.
机译:血流变化对放射反射器的递送和冲洗的潜在影响是宠物推注研究的持续问题。本研究通过通过同时宠物/ MRI通过实验测量脑血流(CBF)和神经聚集体结合来提供对该主题的实际洞察。通过伪连续动脉旋转标记测量的CBF测量以诱导CBF的受控增加,给予非人类原始化的抗高碳灾害(7%CO 2)。同时,用动态宠物监测[C-11]丙烯普肽或[F-18]芳丙酮的多巴胺D-2 / D-3受体结合。实验表明,既不经过二倍的CBF增加,既不是通过结合电位(BPND)的结合的定量术也不会有大于两倍。微量实验程序表明,鉴于一组现实假设,CBF的甚至巨大的变化应该对放射性机构的时间活性曲线影响很小。该提出的方法可以应用于通过实验评估其他放射机构的流动敏感性。结果表明,由于行为任务或药理学挑战而经常发生的CBF变化,不会影响PET [C-11]丙烯普肽或[F-18]芳丙烯丙烯酰亚胺结合研究及其定量。本研究的结果表明流量效应可能对具有相似性质的许多宠物神经聚类示踪剂产生有限的影响。

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