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Disruption of Cerebellar Prediction in Verbal Working Memory

机译:言语工作记忆中小脑预测的破坏

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Mounting evidence suggests that the right cerebellum contributes to verbal working memory, but the functional role of this contribution remains unclear. In an established theory of motor control, the cerebellum is thought to predict sensory consequences of movements through an internal “forward model.” Here, we hypothesize a similar predictive process can generalize to cerebellar non-motor function, and that the right cerebellum plays a predictive role that is beneficial for rapidly engaging the phonological loop in verbal working memory. To test this hypothesis, double-pulse transcranial magnetic stimulation (TMS) was administered over either the right cerebellum or right occipital lobe (control site), on half the trials, to interrupt the rehearsal of a 6-letter sequence. We found that cerebellar stimulation resulted in greater errors in participants’ report of the letter in the current position. Additional analyses revealed that immediately after cerebellar TMS, participants were more likely to use out of date information to predict the next letter in the sequence. This pattern of errors is consistent with TMS causing a temporary disruption of state estimation and cerebellar forward model function, leading to prediction errors in the phonological loop.
机译:越来越多的证据表明,右小脑有助于言语工作记忆,但这种作用的功能性作用尚不清楚。在成熟的运动控制理论中,小脑被认为可以通过内部“前进模型”预测运动的感觉结果。在这里,我们假设类似的预测过程可以推广到小脑的非运动功能,并且右小脑发挥了预测作用,这有利于迅速将语音回路融入言语工作记忆中。为了验证这一假设,在一半的试验中,在右小脑或右枕叶(对照部位)上进行了双脉冲经颅磁刺激(TMS),以中断6字母序列的排练。我们发现,小脑刺激会导致参与者在当前位置的信件报告中出现更大的错误。进一步的分析表明,在小脑TMS之后,参与者更容易使用过时的信息来预测序列中的下一个字母。这种错误模式与TMS一致,后者会导致状态估计和小脑前向模型功能的暂时中断,从而导致语音回路中的预测错误。

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