Department of Neuroscience and Rehabilitation, University of Ferrara, Ferrara 44121, Italy; Department of Neuroscience, Ferrara University Hospital, Ferrara 44124, Italy; Doctoral Program in Translational Neurosciences and Neurotechnologies, University of Ferrara, Ferrara 44121, Italy.
Department of Neuroscience and Rehabilitation, University of Ferrara, Ferrara 44121, Italy.
Neurosci Biobehav Rev. 2024 Sep;164:105830. doi: 10.1016/j.neubiorev.2024.105830. Epub 2024 Jul 26.
Mirror neurons show activity during both the execution (AE) and observation of actions (AO). The Mirror Neuron System (MNS) could be involved during motor imagery (MI) as well. Extensive research suggests that the cerebellum is interconnected with the MNS and may be critically involved in its activities. We gathered evidence on the cerebellum's role in MNS functions, both theoretically and experimentally. Evidence shows that the cerebellum plays a major role during AO and MI and that its lesions impair MNS functions likely because, by modulating the activity of cortical inhibitory interneurons with mirror properties, the cerebellum may contribute to visuomotor matching, which is fundamental for shaping mirror properties. Indeed, the cerebellum may strengthen sensory-motor patterns that minimise the discrepancy between predicted and actual outcome, both during AE and AO. Furthermore, through its connections with the hippocampus, the cerebellum might be involved in internal simulations of motor programs during MI. Finally, as cerebellar neuromodulation might improve its impact on MNS activity, we explored its potential neurophysiological and neurorehabilitation implications.
镜像神经元在执行(AE)和观察动作(AO)时都会显示出活动。镜像神经元系统(MNS)也可能在运动想象(MI)中涉及。大量研究表明,小脑与 MNS 相互连接,并且可能在其活动中起关键作用。我们从理论和实验两个方面收集了有关小脑在 MNS 功能中的作用的证据。有证据表明,小脑在 AO 和 MI 中起着重要作用,其损伤会损害 MNS 功能,可能是因为小脑通过调节具有镜像特性的皮质抑制性中间神经元的活动,有助于视觉运动匹配,这是形成镜像特性的基础。事实上,小脑可能会加强感觉运动模式,从而最小化 AE 和 AO 期间预测和实际结果之间的差异。此外,通过与海马体的连接,小脑可能参与 MI 期间运动程序的内部模拟。最后,由于小脑神经调节可能会增强其对 MNS 活动的影响,因此我们探讨了其潜在的神经生理学和神经康复意义。