Morris Evan D, Normandin Marc D, Schiffer Wynne K
Biomedical Engineering Department, Indiana University-Purdue University, Indianapolis, IN, USA.
Mol Imaging Biol. 2008 Mar-Apr;10(2):67-73. doi: 10.1007/s11307-007-0124-1. Epub 2008 Jan 4.
A recently introduced mathematical method for extracting temporal characteristics of neurotransmitter release from dynamic positron emission tomography (PET) data was tested. The method was developed with the hope that by uncovering temporal information about neurotransmitter (nt) dynamics in PET data, researchers could shed new light on mechanisms of psychiatric diseases such as drug abuse and its treatment. In this study, we apply our model-based method, "ntPET", to (11)C-raclopride PET scans of rats in which the dopaminergic response to a microinfusion of methamphetamine in one striatum was assayed simultaneously by microdialysis and PET. Uptake of (11)C-raclopride into the untreated contralateral striatum was used as an input to the ntPET model. Direct comparisons of the model-based ntPET analysis and the microdialysis measurements confirmed that ntPET produced dopamine curves that were very similar in timing (takeoff and peak times) to the microdialysis curves. Variances in takeoff and peak times were comparable for the two methods. Neither method detected a false dopamine response to drug in a control animal. The high degree of correspondence between ntPET estimates and microdialysis measurements lends strong support to the idea that temporal information regarding dopamine release exists in dynamic (11)C-raclopride PET data and that it can be estimated reliably via ntPET. The method is entirely translatable to human PET imaging.
对一种最近引入的从动态正电子发射断层扫描(PET)数据中提取神经递质释放时间特征的数学方法进行了测试。开发该方法的目的是,希望通过揭示PET数据中有关神经递质(nt)动态的时间信息,研究人员能够为诸如药物滥用及其治疗等精神疾病的机制提供新的线索。在本研究中,我们将基于模型的方法“ntPET”应用于大鼠的(11)C-雷氯必利PET扫描,其中通过微透析和PET同时测定了一侧纹状体中微量注射甲基苯丙胺后的多巴胺能反应。将未处理的对侧纹状体中(11)C-雷氯必利的摄取用作ntPET模型的输入。基于模型的ntPET分析与微透析测量的直接比较证实,ntPET产生的多巴胺曲线在时间(起始和峰值时间)上与微透析曲线非常相似。两种方法在起始和峰值时间的差异具有可比性。两种方法均未在对照动物中检测到对药物的假多巴胺反应。ntPET估计值与微透析测量之间的高度一致性有力地支持了这样一种观点,即动态(11)C-雷氯必利PET数据中存在有关多巴胺释放的时间信息,并且可以通过ntPET可靠地进行估计。该方法完全可转化为人体PET成像。