Department of Psychology, University "Sapienza", Rome, Italy,
Cerebellum. 2013 Dec;12(6):856-61. doi: 10.1007/s12311-013-0494-7.
A cerebellar role in spatial information processing has been advanced even in the absence of physical manipulation, as occurring in mental rotation. The present study was aimed at investigating the specific involvement of left and right cerebellar hemispheres in two tasks of mental rotation. We used continuous theta burst stimulation to downregulate cerebellar hemisphere excitability in healthy adult subjects performing two mental rotation tasks: an Embodied Mental Rotation (EMR) task, entailing an egocentric strategy, and an Abstract Mental Rotation (AMR) task entailing an allocentric strategy. Following downregulation of left cerebellar hemisphere, reaction times were slower in comparison to sham stimulation in both EMR and AMR tasks. Conversely, identical reaction times were obtained in both tasks following right cerebellar hemisphere and sham stimulations. No effect of cerebellar stimulation side was found on response accuracy. The present findings document a specialization of the left cerebellar hemisphere in mental rotation regardless of the kind of stimulus to be rotated.
小脑在空间信息处理中的作用甚至在没有物理操作的情况下也得到了推进,就像在心理旋转中一样。本研究旨在调查左、右小脑半球在两种心理旋转任务中的特定参与情况。我们使用连续 theta 爆发刺激来下调健康成年受试者执行两种心理旋转任务时的小脑半球兴奋性:一种是具身心理旋转(EMR)任务,涉及自我中心策略,另一种是抽象心理旋转(AMR)任务,涉及非自我中心策略。在左小脑半球下调后,与假刺激相比,EMR 和 AMR 任务的反应时间都变慢了。相反,在右小脑半球和假刺激后,两个任务的反应时间相同。小脑刺激侧对反应准确性没有影响。本研究结果证明了左小脑半球在心理旋转中的专业化,而与要旋转的刺激类型无关。