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Relationships between the Prefrontal Cortex and the Basal Ganglia in the Rat: Physiology of the Corticosubthalamic Circuits

机译:大鼠前额叶皮层和基底神经节之间的关系:丘脑皮质下丘脑回路的生理。

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摘要

The prelimbic–medial orbital areas (PL/MO) of the prefrontal cortex are connected to the medial part of the subthalamic nucleus (STN) through a direct projection and an indirect circuit that involves the core of the nucleus accumbens (NAcc) and the ventral pallidum (VP). In the present study, the influence of the PL/MO on the discharge of STN cells has been characterized. The major pattern of the responses observed after stimulation of PL/MO consisted of two excitatory peaks often separated by a brief inhibitory period. The early excitation was most likely to be caused by the activation of direct cortical inputs because its latency matches the conduction time of the prefrontal STN projections. The late excitation resulted from the activation of the indirect PL/MO–STN pathway that operates through a disinhibitory process. Indeed, the late excitation was no longer observed after acute blockade of the glutamatergic corticostriatal transmission by CNQX application into the NAcc. A similar effect was obtained after the blockade of the GABAergic striatopallidal transmission by bicuculline application into the VP. Finally, the brief inhibition that followed the early excitation was likely to result from the activation of a feedback inhibitory loop through VP because this inhibition was no longer observed after the blockade of STN inputs by CNQX application into the VP. This study further indicates the implication of STN in prefrontal basal ganglia circuits and underlines that in addition to a direct excitatory input, medial STN receives an indirect excitatory influence from PL/MO through an NAcc–VP–STN disinhibitory circuit.
机译:前额叶皮层的前缘-内侧眼眶区域(PL / MO)通过直接投射和间接回路连接到丘脑下核(STN)的内侧部分,间接回路涉及伏伏核(NAcc)的核心和腹侧苍白球(VP)。在本研究中,已表征了PL / MO对STN细胞放电的影响。刺激PL / MO后观察到的主要反应模式是两个兴奋峰,通常由短暂的抑制期隔开。早期激发很可能是由直接皮质输入的激活引起的,因为其潜伏期与前额叶STN投射的传导时间相匹配。后期的兴奋是由于间接PL / MO–STN途径的激活所致,该途径通过抑制作用起作用。确实,在通过将CNQX应用于NAcc来急性阻断谷氨酸能皮质口传递之后,不再观察到晚期兴奋。通过将双小分子应用到VP中来阻断GABA能性纹状体内脂传递后,可获得类似的效果。最后,早期激发后的短暂抑制很可能是由于通过VP激活反馈抑制环而引起的,因为在CNQX应用于VP阻断STN输入后,不再观察到这种抑制。这项研究进一步表明了STN在额叶前额神经节回路中的意义,并强调除了直接的兴奋性输入外,内侧STN还通过NAcc-VP-STN抑制性回路从PL / MO中获得间接的兴奋性影响。

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