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Real-time measurement of dopamine fluctuations after cocaine in the brain of behaving rats

机译:行为大鼠大脑中可卡因后多巴胺波动的实时测量

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Dopamine neurotransmission has been implicated in the modulation of many cognitive processes. Both rapid (phasic) and slower (tonic) changes in its extracellular concentration contribute to its complex actions. Fast in vivo electrochemical techniques can measure extracellular dopamine on a rapid time scale but without the selectivity afforded with slower techniques that use chemical separations. Cyclic voltammetry improves chemical resolution over other electrochemical methods, and it can resolve dopamine changes in the brains of behaving rodents over short epochs (<10 s). With this method, however, selective detection of slower dopamine changes is still elusive. Here we demonstrate that principal component regression of cyclic voltammetry data enables quantification of changes in dopamine and extracellular pH. Using this method, we show that cocaine modifies dopamine release in two ways: dopamine concentration transients increase in frequency and magnitude, whereas a gradual increase in steady-state dopamine concentration occurs over 90 s.
机译:多巴胺神经传递与许多认知过程的调节有关。其细胞外浓度的快速(阶段性)和较慢的(紧张性)变化都有助于其复杂的作用。快速的体内电化学技术可以快速地测量细胞外多巴胺,但没有使用化学分离的较慢技术所能提供的选择性。与其他电化学方法相比,循环伏安法提高了化学分辨率,并且可以在短时期内(<10 s)解决行为啮齿动物大脑中的多巴胺变化。然而,采用这种方法,选择性检测较慢的多巴胺变化仍然难以实现。在这里,我们证明了循环伏安法数据的主成分回归能够量化多巴胺和细胞外pH的变化。使用这种方法,我们显示可卡因以两种方式修饰多巴胺的释放:多巴胺浓度瞬变的频率和幅度增加,而稳态多巴胺浓度在90 s内逐渐增加。

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