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首页> 外文期刊>Neuropsychopharmacology >Differential Roles of Dopamine D1 and D2 Receptors in the Nucleus Accumbens in Attentional Performance on the Five-Choice Serial Reaction Time Task
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Differential Roles of Dopamine D1 and D2 Receptors in the Nucleus Accumbens in Attentional Performance on the Five-Choice Serial Reaction Time Task

机译:五选择连续反应时间任务中伏隔核中多巴胺D1和D2受体在注意力表现中的差异作用

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Nucleus accumbens (NAC) dopamine may play a role in attentional and executive processes, as it modulates cortico-limbic inputs, including afferents from the prefrontal cortex. The present study examined the role of NAC dopamine D1 and D2 receptors in visual attentional processes and response control in rats as assessed in the five-choice serial reaction time task (5CSRT). Rats were trained to detect the location of brief (0.5s) visual targets presented randomly in an array of five apertures to receive food reward. They were tested after bilateral infusions of a D1 receptor antagonist (SCH 23390) and agonist (SKF 38393) and a D2 receptor antagonist (sulpiride) and agonist (quinpirole) into the NAC. While intra-NAC SCH 23390 decreased accurate responding and increased response omissions, SKF 38393 improved accuracy and decreased omissions at the lowest dose (0.1g/side). At higher doses, SKF 38393 increased premature 'impulsive' responding. Sulpiride impaired the attentional accuracy of responding and slowed the latency to collect the earned food reward. By contrast, intra-NAC infusions of quinpirole did not significantly affect attentional accuracy, but increased perseverative responding. Optimal performance on the 5CSRT depends on both D1 and D2 receptors in the NAC, but they modulate different aspects of performance. D1 receptor agents had more selective effects on attentional accuracy while D2 receptor stimulation did not affect accuracy or premature responses, but enhanced perseverative responding. The data are discussed in terms of the different functions of NAC dopamine receptors in the processing of information from its different cortico-limbic inputs.
机译:伏伏核(NAC)多巴胺可能在注意力和执行过程中起作用,因为它调节皮质-边缘输入,包括前额叶皮质的传入。本研究检查了NAC多巴胺D1和D2受体在大鼠的视觉注意过程和反应控制中的作用,该评估在五项选择连续反应时间任务(5CSRT)中进行了评估。训练大鼠以检测随机分布在五个孔中的短暂(0.5s)视觉目标的位置,以获取食物奖励。在向NAC双向输注D1受体拮抗剂(SCH 23390)和激动剂(SKF 38393)和D2受体拮抗剂(舒必利)和激动剂(喹吡罗)后对它们进行了测试。尽管NAC内SCH 23390降低了准确的响应并增加了响应遗漏,但SKF 38393在最低剂量(0.1g /侧)下提高了准确性并减少了遗漏。在较高剂量下,SKF 38393会增加过早的“冲动”反应。舒必利损害了应答的注意力准确性,并且减慢了获得所赚取的食物奖励的等待时间。相比之下,NAC内输注喹吡罗并不会显着影响注意力的准确性,但会增加持续性应答。 5CSRT的最佳性能取决于NAC中的D1和D2受体,但它们会调节性能的不同方面。 D1受体药物对注意力的准确性具有更多的选择性作用,而D2受体刺激并不影响准确性或过早的反应,而是增强了持续性应答。将根据NAC多巴胺受体在处理来自其不同皮质-边缘输入的信息时所发挥的不同功能来讨论数据。

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