Department of Health Science and Technology, Center for Sensory-Motor Interaction, Aalborg University, Denmark.
Hum Brain Mapp. 2012 Jan;33(1):40-9. doi: 10.1002/hbm.21191. Epub 2011 May 17.
The therapeutic application of functional electrical stimulation (FES) has shown promising clinical results in the rehabilitation of post-stroke hemiplegia. It appears that the effect is optimal when the patterned electrical stimulation is used in close synchrony with voluntary movement, although the neural mechanisms that underlie the clinical successes reported with therapeutic FES are unknown. One possibility is that therapeutic FES takes advantage of the sensory consequences of an internal model. Here, we investigate fMRI cortical activity when FES is combined with voluntary effort (FESVOL) and we compare this activity to that produced when FES and voluntary activity (VOL) are performed alone. FESVOL revealed greater cerebellar activity compared with FES alone and reduced activity bilaterally in secondary somatosensory areas (SII) compared with VOL alone. Reduced activity was also observed for FESVOL compared with FES alone in the angular gyrus, middle frontal gyrus and inferior frontal gyrus. These findings indicate that during the VOL condition the cerebellum predicts the sensory consequences of the movement and this reduces the subsequent activation in SII. The decreased SII activity may reflect a better match between the internal model and the actual sensory feedback. The greater cerebellar activity coupled with reduced angular gyrus activity in FESVOL compared with FES suggests that the cortex may interpret sensory information during the FES condition as an error-like signal due to the lack of a voluntary component in the movement.
功能性电刺激(FES)的治疗应用在脑卒中后偏瘫的康复中显示出有前景的临床效果。似乎当模式化的电刺激与自主运动紧密同步使用时,效果最佳,尽管治疗性 FES 报告的临床成功背后的神经机制尚不清楚。一种可能性是治疗性 FES 利用了内部模型的感觉后果。在这里,我们研究了 FES 与自主运动(FESVOL)结合时的 fMRI 皮层活动,并将其与 FES 和自主活动(VOL)单独进行时的活动进行了比较。与单独 FES 相比,FESVOL 显示出更大的小脑活动,与单独 VOL 相比,双侧次级体感区(SII)的活动减少。与单独 FES 相比,FESVOL 在角回、额中回和额下回的活动也减少。这些发现表明,在 VOL 条件下,小脑预测运动的感觉后果,从而减少了 SII 的后续激活。SII 活动减少可能反映了内部模型与实际感觉反馈之间更好的匹配。与单独 FES 相比,FESVOL 中的小脑活动增加和角回活动减少表明,由于运动中缺乏自主成分,皮层可能将 FES 条件下的感觉信息解释为类似于错误的信号。