首页> 美国卫生研究院文献>Frontiers in Behavioral Neuroscience >Infusion of D1 Dopamine Receptor Agonist into Medial Frontal Cortex Disrupts Neural Correlates of Interval Timing
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Infusion of D1 Dopamine Receptor Agonist into Medial Frontal Cortex Disrupts Neural Correlates of Interval Timing

机译:向内侧额叶皮质中注入D1多巴胺受体激动剂会破坏间隔时间的神经相关性

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摘要

Medial frontal cortical (MFC) dopamine is essential for the organization of behavior in time. Our prior work indicates that blocking D1 dopamine receptors (D1DR) attenuates temporal processing and low-frequency oscillations by MFC neuronal networks. Here we investigate the effects of focal infusion of the D1DR agonist into MFC during interval timing. MFC D1DR agonist infusion impaired interval timing performance without changing overall firing rates of MFC neurons. MFC ramping patterns of neuronal activity that reflect temporal processing were attenuated following infusion of MFC D1DR agonist. MFC D1DR agonist infusion also altered MFC field potentials by enhancing delta activity between 1 and 4 Hz and attenuating alpha activity between 8 and 15 Hz. These data support the idea that the influence of D1-dopamine signals on frontal neuronal activity adheres to a U-shaped curve, and that cognition requires optimal levels of dopamine in frontal cortex.
机译:内侧额叶皮质(MFC)多巴胺对于及时组织行为至关重要。我们先前的工作表明,阻断D1多巴胺受体(D1DR)会减弱MFC神经元网络的时间处理和低频振荡。在这里,我们研究了在间隔定时将D1DR激动剂局部注入MFC的效果。 MFC D1DR激动剂输注会损害间隔定时性能,而不会改变MFC神经元的总放电速率。输注MFC D1DR激动剂后,反映时间过程的神经活动的MFC斜坡模式减弱。 MFC D1DR激动剂输注还通过增强1-4 Hz之间的增量活性和减弱8-15 Hz之间的α活性来改变MFC场电势。这些数据支持这样的想法,即D1-多巴胺信号对额叶神经元活动的影响遵循U形曲线,并且认知需要额叶皮质中多巴胺的最佳水平。

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