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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Stimulation of prefrontal cortex at physiologically relevant frequencies inhibits dopamine release in the nucleus accumbens.
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Stimulation of prefrontal cortex at physiologically relevant frequencies inhibits dopamine release in the nucleus accumbens.

机译:在生理上相关的频率刺激前额叶皮层抑制伏隔核中多巴胺的释放。

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The prefrontal cortex (PFC) is thought to provide an excitatory influence on the output of mesoaccumbens dopamine neurons. The evidence for this influence primarily arises from findings in the rat that chemical or high-intensity and high-frequency (60-200 Hz) electrical stimulations of PFC increase burst activity of midbrain dopamine neurons, and augment terminal release of dopamine in the nucleus accumbens. However, PFC neurons in animals that are engaged in PFC-dependent cognitive tasks increase their firing frequency from a baseline of 1-3 Hz to 7-10 Hz, suggesting that the commonly used high-frequency stimulation parameters of the PFC may not be relevant to the behavioral states that are associated with PFC activation. We investigated the influence of PFC activation at lower physiologically relevant frequencies on the release of dopamine in the nucleus accumbens. Using rapid (5-min) microdialysis measures of extracellular dopamine in the nucleus accumbens, we found that although PFC stimulation at 60 Hz produces the expected increases in accumbal dopamine release, the same amplitude of PFC stimulation at 10 Hz significantly decreased these levels. These results indicate that activation of PFC, at frequencies that are associated with increased cognitive demand on this region, inhibits the mesoaccumbens dopamine system.
机译:前额叶皮层(PFC)被认为对中型累积多巴胺神经元的输出产生兴奋性影响。这种影响的证据主要来自大鼠的发现,即化学或高强度和高频(60-200 Hz)的PFC电刺激增加了中脑多巴胺神经元的爆发活性,并增加了伏隔核中多巴胺的最终释放。 。但是,从事依赖PFC的认知任务的动物中的PFC神经元将其放电频率从1-3 Hz的基线提高到7-10 Hz,这表明PFC的常用高频刺激参数可能不相关与PFC激活相关的行为状态。我们调查了在较低的生理相关频率下PFC活化对伏伏核中多巴胺释放的影响。使用伏隔核中细胞外多巴胺的快速(5分钟)微透析措施,我们发现尽管60 Hz的PFC刺激产生了预期的累积多巴胺释放增加,但10 Hz的相同幅度的PFC刺激显着降低了这些水平。这些结果表明,在与该区域认知需求增加相关的频率下激活PFC会抑制中累积多巴胺系统。

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