Brain Connectivity Center, C. Mondino National Neurological Institute, Pavia, Italy.
Department of Brain and Behavioral Sciences, University of Pavia, Pavia, Italy.
Neural Plast. 2018 Oct 9;2018:6856475. doi: 10.1155/2018/6856475. eCollection 2018.
Associative learning of sensorimotor contingences, as it occurs in eyeblink classical conditioning (EBCC), is known to involve the cerebellum, but its mechanism remains controversial. EBCC involves a sequence of learning processes which are thought to occur in the cerebellar cortex and deep cerebellar nuclei. Recently, the extinction phase of EBCC has been shown to be modulated after one week by cerebellar continuous theta-burst stimulation (cTBS). Here, we asked whether cerebellar cTBS could affect retention and reacquisition of conditioned responses (CRs) tested immediately after conditioning. We also investigated a possible lateralized cerebellar control of EBCC by applying cTBS on both the right and left cerebellar hemispheres. Both right and left cerebellar cTBSs induced a statistically significant impairment in retention and new acquisition of conditioned responses (CRs), the disruption effect being marginally more effective when the left cerebellar hemisphere was stimulated. These data support a model in which cTBS impairs retention and reacquisition of CR in the cerebellum, possibly by interfering with the transfer of memory to the deep cerebellar nuclei.
感觉运动关联学习,如在眨眼经典条件反射(EBCC)中发生的那样,已知涉及小脑,但它的机制仍存在争议。EBCC 涉及一系列学习过程,据认为这些过程发生在小脑皮层和小脑深部核团中。最近,已经表明 EBCC 的消退阶段在小脑连续 theta 爆发刺激(cTBS)后一周被调制。在这里,我们询问小脑 cTBS 是否可以影响条件反应(CR)的保留和重新获得,这些反应在条件作用后立即进行测试。我们还通过在右和左小脑半球上施加 cTBS 来研究 EBCC 的可能偏侧化小脑控制。右和左小脑 cTBS 均导致条件反应(CR)的保留和新获得的统计学显着受损,当刺激左小脑半球时,破坏效应更有效。这些数据支持了这样一种模型,即 cTBS 通过干扰记忆向小脑深部核团的转移,从而损害了 CR 的保留和重新获得。