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小脑经颅直流电刺激在语义预测过程中调节神经回路:一项经颅直流电刺激与功能磁共振成像联合研究

Cerebellar tDCS Modulates Neural Circuits during Semantic Prediction: A Combined tDCS-fMRI Study.

作者信息

D'Mello Anila M, Turkeltaub Peter E, Stoodley Catherine J

机构信息

Department of Psychology and.

Center for Behavioral Neuroscience, American University, Washington, DC 20016.

出版信息

J Neurosci. 2017 Feb 8;37(6):1604-1613. doi: 10.1523/JNEUROSCI.2818-16.2017. Epub 2017 Jan 9.

Abstract

It has been proposed that the cerebellum acquires internal models of mental processes that enable prediction, allowing for the optimization of behavior. In language, semantic prediction speeds speech production and comprehension. Right cerebellar lobules VI and VII (including Crus I/II) are engaged during a variety of language processes and are functionally connected with cerebral cortical language networks. Further, right posterolateral cerebellar neuromodulation modifies behavior during predictive language processing. These data are consistent with a role for the cerebellum in semantic processing and semantic prediction. We combined transcranial direct current stimulation (tDCS) and fMRI to assess the behavioral and neural consequences of cerebellar tDCS during a sentence completion task. Task-based and resting-state fMRI data were acquired in healthy human adults ( = 32; μ = 23.1 years) both before and after 20 min of 1.5 mA anodal ( = 18) or sham ( = 14) tDCS applied to the right posterolateral cerebellum. In the sentence completion task, the first four words of the sentence modulated the predictability of the final target word. In some sentences, the preceding context strongly predicted the target word, whereas other sentences were nonpredictive. Completion of predictive sentences increased activation in right Crus I/II of the cerebellum. Relative to sham tDCS, anodal tDCS increased activation in right Crus I/II during semantic prediction and enhanced resting-state functional connectivity between hubs of the reading/language networks. These results are consistent with a role for the right posterolateral cerebellum beyond motor aspects of language, and suggest that cerebellar internal models of linguistic stimuli support semantic prediction. Cerebellar involvement in language tasks and language networks is now well established, yet the specific cerebellar contribution to language processing remains unclear. It is thought that the cerebellum acquires internal models of mental processes that enable prediction, allowing for the optimization of behavior. Here we combined neuroimaging and neuromodulation to provide evidence that the cerebellum is specifically involved in semantic prediction during sentence processing. We found that activation within right Crus I/II was enhanced when semantic predictions were made, and we show that modulation of this region with transcranial direct current stimulation alters both activation patterns and functional connectivity within whole-brain language networks. For the first time, these data show that cerebellar neuromodulation impacts activation patterns specifically during predictive language processing.

摘要

有人提出,小脑获取心理过程的内部模型,这些模型能够进行预测,从而优化行为。在语言方面,语义预测能加快言语产生和理解的速度。右侧小脑小叶VI和VII(包括 Crus I/II)在各种语言过程中被激活,并与大脑皮层语言网络存在功能连接。此外,右侧后外侧小脑神经调节在预测性语言处理过程中会改变行为。这些数据与小脑在语义处理和语义预测中的作用相一致。我们结合经颅直流电刺激(tDCS)和功能磁共振成像(fMRI)来评估在句子完成任务中小脑tDCS的行为和神经后果。在对右侧后外侧小脑施加20分钟1.5毫安阳极(n = 18)或假刺激(n = 14)tDCS之前和之后,对健康成年人(n = 32;平均年龄 = 23.1岁)采集基于任务和静息状态的fMRI数据。在句子完成任务中,句子的前四个单词调节了最后目标单词的可预测性。在一些句子中,前文语境强烈预测了目标单词,而其他句子则无预测性。完成预测性句子会增加小脑右侧Crus I/II的激活。相对于假刺激tDCS,阳极tDCS在语义预测期间增加了右侧Crus I/II的激活,并增强了阅读/语言网络枢纽之间的静息状态功能连接。这些结果与右侧后外侧小脑在语言运动方面之外的作用相一致,并表明小脑对语言刺激的内部模型支持语义预测。小脑参与语言任务和语言网络现已得到充分证实,但小脑对语言处理的具体贡献仍不清楚。人们认为小脑获取心理过程的内部模型,这些模型能够进行预测,从而优化行为。在这里,我们结合神经成像和神经调节来提供证据,证明小脑在句子处理过程中特别参与语义预测。我们发现,当进行语义预测时,右侧Crus I/II内的激活增强,并且我们表明,用经颅直流电刺激调节该区域会改变全脑语言网络内的激活模式和功能连接。这些数据首次表明,小脑神经调节在预测性语言处理过程中特别影响激活模式。

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