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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >The effects of dopamine and its antagonists on directional delay-period activity of prefrontal neurons in monkeys during an oculomotor delayed-response task.
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The effects of dopamine and its antagonists on directional delay-period activity of prefrontal neurons in monkeys during an oculomotor delayed-response task.

机译:在动眼延迟反应任务中,多巴胺及其拮抗剂对猴子前额叶神经元定向延迟期活动的影响。

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To examine the role of dopamine receptors in the memory field of neurons for visuospatial working memory in the prefrontal cortex (PFC), dopamine and its antagonists (SCH23390 for the D1-antagonist and sulpiride for the D2-antagonist) were applied iontophoretically to neurons of the dorsolateral PFC in monkeys that performed an oculomotor delayed-response task. In this task, the subject made a memory-guided saccade to a remembered target location that had been cued by a visuospatial stimulus (right, up, left, or down; 15 degrees in eccentricity) prior to a 4-s delay period. We focused here on PFC neurons that showed directional delay-period activity; i.e., an increased activity during the delay period, the magnitude of which varied significantly with the target location. Iontophoretic application of SCH23390 (usually 50 nA) decreased or increased the activities of most of these neurons (n=48/62, 77%); most neurons showed a decrease (n=43/62, 69%). For the neurons affected by SCH23390, a directional index of directional delay-period activity was attenuated by SCH23390, whereas the preferred direction was not greatly affected. The decreasing effect of SCH23390 was dose-dependent; the extent of the decrease was less with a lower dose (20-nA current) than with the ordinary dose (50-nA current), although the effect of the lower dose of SCH23390 on delay-period activity was similar in nature to that of the ordinary dose of SCH23390. Furthermore, the application of dopamine itself augmented directional delay-period activity in most of the neurons tested (n=12/16, 75%). Sulpiride did not have any significant effects in most of the neurons tested (n=15/17). These results suggest that the activation of D1-dopamine receptors play a facilitating role in the memory field of PFC neurons for visuospatial working memory processes.
机译:为了检查多巴胺受体在前额叶皮层(PFC)的视觉空间工作记忆的神经元的记忆区域中的作用,将多巴胺及其拮抗剂(D1拮抗剂为SCH23390,D2拮抗剂为舒必利)进行离子电渗疗法地应用于多巴胺受体的神经元。在执行动眼迟滞任务的猴子中,背外侧PFC。在此任务中,受试者在记忆延迟之前4 s之前,通过记忆空间刺激(向右,向上,向左或向下;偏心距15度)提示的记忆目标扫视到记忆的目标位置。在这里,我们集中于显示方向性延迟期活动的PFC神经元。即,在延迟期间活动增加,其幅度随目标位置而显着变化。 SCH23390的离子电渗疗法(通常为50 nA)会降低或增加大多数这些神经元的活性(n = 48 / 62,77%);大多数神经元显示减少(n = 43 / 62,69%)。对于受SCH23390影响的神经元,SCH23390减弱了方向延迟周期活动的方向指数,而对首选方向的影响不大。 SCH23390的降低作用是剂量依赖性的。较低剂量(20nA电流)下的下降幅度要小于普通剂量(50nA电流)下的下降幅度,尽管较低剂量的SCH23390对延迟期活性的影响在本质上与正常剂量下相似。 SCH23390的普通剂量。此外,多巴胺本身的应用增加了大多数测试神经元的定向延迟期活性(n = 12 / 16,75%)。舒必利在大多数受测神经元中均无任何明显影响(n = 15/17)。这些结果表明,D1-多巴胺受体的激活在PFC神经元的视觉空间视觉记忆过程中起着促进作用。

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