Nishimura Yukio, Morichika Yosuke, Isa Tadashi
Department of Developmental Physiology, National Institute for Physiological Sciences, Okazaki, Japan.
Brain. 2009 Mar;132(Pt 3):709-21. doi: 10.1093/brain/awn338. Epub 2009 Jan 20.
Recent studies have shown that after partial spinal-cord lesion at the mid-cervical segment, the remaining pathways compensate for restoring finger dexterity; however, how they control hand/arm muscles has remained unclear. To elucidate the changes in dynamic properties of neural circuits connecting the motor cortex and hand/arm muscles, we investigated the cortico- and inter-muscular couplings of activities throughout the recovery period after the spinal-cord lesion. Activities of antagonist muscle pairs showed co-activation and oscillated coherently at frequencies of 30-46 Hz (gamma-band) by 1-month post-lesion. Such gamma-band inter-muscular coupling was not observed pre-lesion, but emerged and was strengthened and distributed over a wide range of hand/arm muscles along with the recovery. Neither the beta-band (14-30 Hz) cortico-muscular coupling observed pre-lesion nor a gamma-band oscillation was observed in the motor cortex post-lesion. We propose that a subcortical oscillator commonly recruits hand/arm muscles, via remaining pathways such as reticulospinal and/or propriospinal tracts, independent of cortical oscillation, and contributes to functional recovery.
最近的研究表明,在颈中段脊髓部分损伤后,剩余的神经通路会进行代偿以恢复手指灵活性;然而,它们如何控制手部/臂部肌肉仍不清楚。为了阐明连接运动皮层与手部/臂部肌肉的神经回路动态特性的变化,我们研究了脊髓损伤后整个恢复期间活动的皮质与肌间耦合。损伤后1个月,拮抗肌对的活动表现出共同激活,并在30 - 46赫兹(γ波段)频率上相干振荡。这种γ波段肌间耦合在损伤前未观察到,但随着恢复而出现、增强并分布于广泛的手部/臂部肌肉。损伤前观察到的β波段(14 - 30赫兹)皮质-肌肉耦合以及损伤后运动皮层中的γ波段振荡均未观察到。我们提出,一个皮层下振荡器通常通过诸如网状脊髓和/或固有脊髓束等剩余通路,独立于皮层振荡来募集手部/臂部肌肉,并有助于功能恢复。