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左旋多巴对年轻而非老年受试者认知控制的调节作用:一项药物 fMRI 研究。

Modulatory effects of levodopa on cognitive control in young but not in older subjects: a pharmacological fMRI study.

机构信息

Cologne University, Germany.

出版信息

J Cogn Neurosci. 2011 Oct;23(10):2797-810. doi: 10.1162/jocn.2011.21603. Epub 2011 Jan 21.

Abstract

Older individuals show decline of prefrontal cortex (PFC) functions which may be related to altered dopaminergic neurotransmission. We investigated the effects of aging and dopaminergic stimulation in 15 young and 13 older healthy subjects on the neural correlates of interference control using fMRI. In a double-blind, placebo-controlled within-subject design, subjects were measured after levodopa (100 mg) or placebo administration. In each session, subjects performed a visual-spatial interference task based on a Stroop/Simon-like paradigm. Across age groups, interference (incongruent relative to congruent trials) was associated with activations in the presupplementary motor area, ACC, and intraparietal cortex. Increased interference was found behaviorally in older volunteers. Differential activation in left dorsolateral PFC in young subjects and bilateral PFC activity in older subjects was observed to be associated with interference control. Performance deteriorated under levodopa only in young subjects. This was accompanied by an increase of neural activity in ACC (p < .05; small-volume correction for multiple comparisons). Worsening of performance under levodopa in young subjects and the associated effect on ACC may indicate that overstimulation of the dopaminergic system compromises interference control. This supports the inverted-U-shaped model of neurotransmitter action.

摘要

老年人的前额叶皮层(PFC)功能下降,这可能与多巴胺能神经传递改变有关。我们使用 fMRI 研究了 15 名年轻和 13 名年长健康受试者在多巴胺能刺激下对干扰控制的神经相关性的影响。在一项双盲、安慰剂对照的个体内设计中,在给予左旋多巴(100mg)或安慰剂后对受试者进行了测量。在每次会议中,受试者根据 Stroop/Simon 样范式执行视觉空间干扰任务。在年龄组中,干扰(不一致相对于一致的试验)与预备运动区、ACC 和顶内皮质的激活有关。在年长志愿者中,行为上发现干扰增加。在年轻受试者中观察到左背外侧 PFC 的差异激活,而在年长受试者中观察到双侧 PFC 活动与干扰控制有关。只有在年轻受试者中,左旋多巴会导致表现恶化。这伴随着 ACC 中的神经活动增加(p <.05;对多次比较的小体积校正)。年轻受试者在左旋多巴下表现恶化以及对 ACC 的相关影响可能表明多巴胺能系统的过度刺激会损害干扰控制。这支持了神经递质作用的倒 U 形模型。

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