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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Relationships between the prefrontal cortex and the basal ganglia in the rat: physiology of the cortico-nigral circuits.
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Relationships between the prefrontal cortex and the basal ganglia in the rat: physiology of the cortico-nigral circuits.

机译:大鼠前额叶皮层和基底神经节之间的关系:皮质-黑色回路的生理学。

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摘要

The prelimbic/medial orbital areas (PL/MO) of the rat prefrontal cortex are connected to substantia nigra pars reticulata (SNR) through three main circuits: a direct nucleus accumbens (NAcc)-SNR pathway, an indirect NAcc-SNR pathway involving the ventral pallidum (VP) and the subthalamic nucleus (STN), and a disynaptic cortico-STN-SNR pathway. The present study was undertaken to characterize the effect of PL/MO stimulation on SNR cells and to determine the contribution of these different pathways. The major pattern of responses observed in the SNR was an inhibition preceded by an early excitation and followed or not by a late excitation. The inhibition resulted from the activation of the direct NAcc-SNR pathway because it disappeared after acute blockade of the glutamatergic cortico-striatal transmission by CNQX application into the NAcc. The late excitation resulted from the activation of the indirect NAcc-VP-STN-SNR pathway via a disinhibition of the STN because it disappeared after either CNQX application into the NAcc or blockade of the GABAergic striato-pallidal transmission by bicuculline application into the VP. The early excitation, which was markedly decreased after blockade of the cortico-STN transmission by CNQX application into the STN, resulted from the activation of the disynaptic cortico-STN-SNR pathway. Finally, the blockade of the cortico-STN-VP circuit by CNQX application into STN or VP modified the influence of the trans-striatal circuits on SNR cells. This study suggests that, in the prefrontal cortex-basal ganglia circuits, the trans-subthalamic pathways, by their excitatory effects, participate in the shaping of the inhibitory influence of the direct striato-nigral pathway on SNR neurons.
机译:大鼠前额叶皮层的前缘/内侧眼眶区域(PL / MO)通过三个主要回路连接至黑质网状体(SNR):伏隔直核(NAcc)-SNR通路,间接NAcc-SNR通路腹侧苍白球(VP)和丘脑下核(STN),以及突触性皮质STN-SNR通路。进行本研究以表征PL / MO刺激对SNR细胞的影响并确定这些不同途径的作用。在SNR中观察到的响应的主要模式是在抑制之前先进行激发,然后再进行或不进行后期激发。该抑制作用是由于直接NAcc-SNR途径的激活所致,因为在CNQX应用于NAcc后,谷氨酸能皮质-纹状体传播被急性阻断后消失了。晚期激发是由于通过抑制STN激活了间接NAcc-VP-STN-SNR途径而引起的,因为在将CNQX应用于NAcc或通过将双小分子应用于VP阻断了GABA能性纹状体-苍白质传播后,它消失了。 CNQX阻滞皮层STN传递进入STN后,早期兴奋明显减弱,这是由于突触皮层STN-SNR通路的激活所致。最后,CNQX应用对STN或VP的皮质STN-VP电路的阻滞改变了跨纹状电路对SNR单元的影响。这项研究表明,在前额叶皮层-基底神经节回路中,跨丘脑下通路通过其兴奋作用参与了直接纹状体-黑纹通路对SNR神经元的抑制作用的形成。

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