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尾状核刺激可增强学习能力。

Caudate stimulation enhances learning.

机构信息

Massachusetts General Hospital, Department of Neurosurgery, Boston, MA, USA.

McCance Center for Brain Health, Genetics and Aging Research Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

出版信息

Brain. 2019 Oct 1;142(10):2930-2937. doi: 10.1093/brain/awz254.

Abstract

Neuromodulation is a promising treatment modality for disorders of learning and memory, offering the possibility of precise alteration of disordered neural circuits. Studies to date have failed to identify an optimal target and stimulation paradigm. Six epilepsy patients with depth electrodes implanted for seizure localization participated in our study. We recorded local field potentials from implanted electrodes while subjects participated in an associative learning task requiring them to learn an association between presented images and a button press. Three subjects participated in stimulation sessions during which caudate or putamen stimulation was delivered for some images during feedback after correct responses. Caudate stimulation enhanced learning. Both caudate and dorsolateral prefrontal cortex demonstrated a beta power increase during the feedback period of the learning task that was greater following correct than incorrect trials. In dorsolateral prefrontal cortex, this difference increased with learning and persisted beyond the end of the feedback period. Caudate stimulation was associated with increased dorsolateral prefrontal cortex beta power following feedback. These findings suggest that temporally specific caudate stimulation is a promising neuromodulation strategy to improve learning in disorders of learning and memory.

摘要

神经调节是一种有前途的学习和记忆障碍治疗方式,提供了精确改变障碍性神经回路的可能性。迄今为止的研究未能确定最佳的目标和刺激模式。六名患有癫痫的患者接受了深度电极植入以进行癫痫定位,参与了我们的研究。当受试者参与需要他们学习呈现的图像和按钮按下之间的关联的联想学习任务时,我们从植入的电极中记录局部场电位。三名受试者参加了刺激会议,在此期间,在正确响应后的反馈期间,对一些图像进行尾状核或壳核刺激。尾状核刺激增强了学习。在学习任务的反馈期间,尾状核和背外侧前额叶皮层都显示出β功率增加,而在正确试验后比不正确试验后更大。在背外侧前额叶皮层中,这种差异随着学习而增加,并在反馈期结束后持续存在。反馈后,尾状核刺激与背外侧前额叶皮层β功率增加有关。这些发现表明,时间特异性尾状核刺激是改善学习和记忆障碍学习的一种有前途的神经调节策略。

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