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Dopamine D1-Like and D2-Like Receptors in the Dorsal Striatum Control Different Aspects of Attentional Performance in the Five-Choice Serial Reaction Time Task Under a Condition of Increased Activity of Corticostriatal Inputs

机译:多巴胺D1样和D2样受体在纹状体输入活动增加的情况下控制五选择序列反应时间任务中注意表现的不同方面在背侧纹状体中的控制。

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摘要

We investigated the interaction between the corticostriatal glutamatergic afferents and dopamine D1-like and D2-like receptors in the dorsomedial striatum (dm-STR) in attention and executive response control in the five-choice serial reaction time (5-CSRT) task. The competitive NMDA receptor antagonist 3-(R)-2-carboxypiperazin-4-propyl-1-phosphonic acid (CPP) injected in the mPFC impaired accuracy and increased premature and perseverative responding, raising GLU, DA, and GABA release in the dm-STR. The D1-like antagonist injected in the dm-STR reversed the CPP-induced accuracy deficit but did not affect the increase in perseverative responding. In contrast, the D2-like antagonist haloperidol injected in the dm-STR reduced the CPP-induced increase in perseverative responding but not the accuracy deficit. The different roles of dorsal striatal D1-like and D2-like receptor were further supported by the finding that activation of D1-like receptor in the dm-STR by impaired accuracy but not perseverative responding while the D2-like agonist quinpirole injected in the dm-STR increased perseverative responding but did not affect accuracy. These findings suggest that integration of cortical information by D1-like receptors in the dm-STR is a key mechanism of the input selection process of attention while the integration of corticostriatal signals by D2-like receptors preserves the ability to switch from one act/response to the next in a complex motor sequence, thus providing for behavioral flexibility.
机译:我们调查了在五选择串行反应时间(5-CSRT)任务中注意和执行反应控制中皮质纹状体谷氨酸能传入与多巴胺纹状体(dm-STR)中的多巴胺D1样和D2样受体之间的相互作用。在mPFC中注射竞争性NMDA受体拮抗剂3-(R)-2-羧基哌嗪-4-丙基-1-膦酸(CPP)会降低准确度并增加过早和持久的反应,从而增加dm中的GLU,DA和GABA释放-STR。 dm-STR中注射的D1样拮抗剂可以逆转CPP引起的准确性缺陷,但不影响持续性应答的增加。相反,在dm-STR中注射的D2样拮抗剂氟哌啶醇减少了CPP引起的持续性反应增加,但没有降低准确性缺陷。发现在dm-STR中注射D2样激动剂喹吡罗会降低准确性,但不会产生持久的反应,从而进一步支持了纹状体背侧D1样和D2样受体的不同作用。 -STR增加持久性反应,但不影响准确性。这些发现表明,dm-STR中D1样受体对皮层信息的整合是注意力输入选择过程的关键机制,而D​​2样受体对皮层耳蜗信号的整合保留了从一种行为/反应切换的能力。在复杂的运动顺序中排到下一个,从而提供了行为灵活性。

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