Department of Psychiatry, National Cheng Kung University Hospital, College of Medicine, National Cheng Kung University, Tainan 701, Taiwan.
Institute of Behavioral Medicine, College of Medicine, National Cheng Kung University, Tainan 701, Taiwan.
Cereb Cortex. 2020 Sep 3;30(10):5346-5355. doi: 10.1093/cercor/bhaa116.
Dopamine plays an important role in the modulation of neuroplasticity, which serves as the physiological basis of cognition. The physiological effects of dopamine depend on receptor subtypes, and the D1 receptor is critically involved in learning and memory formation. Evidence from both animal and human studies shows a dose-dependent impact of D1 activity on performance. However, the direct association between physiology and behavior in humans remains unclear. In this study, four groups of healthy participants were recruited, and each group received placebo or medication inducing a low, medium, or high amount of D1 activation via the combination of levodopa and a D2 antagonist. After medication, fMRI was conducted during a visuomotor learning task. The behavioral results revealed an inverted U-shaped effect of D1 activation on task performance, where medium-dose D1 activation led to superior learning effects, as compared to placebo as well as low- and high-dose groups. A respective dose-dependent D1 modulation was also observed for cortical activity revealed by fMRI. Further analysis demonstrated a positive correlation between task performance and cortical activation at the left primary motor cortex. Our results indicate a nonlinear curve of D1 modulation on motor learning in humans and the respective physiological correlates in corresponding brain areas.
多巴胺在神经可塑性的调节中起着重要作用,它是认知的生理基础。多巴胺的生理效应取决于受体亚型,D1 受体在学习和记忆形成中起着关键作用。来自动物和人类研究的证据表明,D1 活性对表现有剂量依赖性的影响。然而,人类生理和行为之间的直接关联尚不清楚。在这项研究中,招募了四组健康参与者,每组参与者都接受了安慰剂或药物治疗,通过左旋多巴和 D2 拮抗剂的组合,分别诱导低、中、高剂量的 D1 激活。用药后,参与者在进行视觉运动学习任务时进行 fMRI 扫描。行为结果表明,D1 激活对任务表现呈倒 U 型影响,与安慰剂组以及低剂量和高剂量组相比,中剂量 D1 激活可产生更好的学习效果。通过 fMRI 还观察到皮质活动的相应剂量依赖性 D1 调节。进一步的分析表明,任务表现与左初级运动皮层的皮质激活之间存在正相关。我们的研究结果表明,D1 调节在人类运动学习中呈非线性曲线,在相应的脑区中也存在相应的生理相关性。