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Ventral midbrain stimulation induces perceptual learning and cortical plasticity in primates

机译:腹侧中脑刺激在灵长类动物中引起感知学习和皮质可塑性

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Practice improves perception and enhances neural representations of trained visual stimuli, a phenomenon known as visual perceptual learning (VPL). While attention to task-relevant stimuli plays an important role in such learning, Pavlovian stimulus-reinforcer associations are sufficient to drive VPL, even subconsciously. It has been proposed that reinforcement facilitates perceptual learning through the activation of neuromodulatory centers, but this has not been directly confirmed in primates. Here, we paired task-irrelevant visual stimuli with microstimulation of a dopaminergic center, the ventral tegmental area (VTA), in macaques. Pairing VTA microstimulation with a task-irrelevant visual stimulus increased fMRI activity and improved classification of fMRI activity patterns selectively for the microstimulation-paired stimulus. Moreover, pairing VTA microstimulation with a task-irrelevant visual stimulus improved the subject's capacity to discriminate that stimulus. This is the first causal demonstration of the role of neuromodulatory centers in VPL in primates.
机译:实践提高了感知的视觉刺激的神经表征,这是一种称为视觉感知学习(VPL)的现象。虽然关注任务相关的刺激在这种学习中起着重要作用,但帕夫洛夫刺激 - 加强队协会就足以推动VPL,甚至是下意识。已经提出,增强促进了通过激活神经调节中心的感知学习,但这尚未在灵长类动物中直接证实。在此,我们将任务 - 无关的视觉刺激与Micaques中的多巴胺能中心的微刺激,腹侧腹部区域(VTA)。用任务 - 无关的视觉刺激配对VTA微刺激增加了FMRI活性,并选择性地为微刺激配对刺激选择性地改善了FMRI活性模式的分类。此外,通过任务 - 无关的视觉刺激配对VTA微刺激改善了受试者的鉴别刺激的能力。这是灵长类动物中神经调节中心在vpl中的作用的第一个因果展示。

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