ToNIC, Université de Toulouse, Inserm, UPS, Toulouse, France.
Faculty of Sport Science, University Paul Sabatier, Toulouse, France.
Sci Rep. 2021 Mar 18;11(1):6322. doi: 10.1038/s41598-021-85851-w.
During voluntary contractions, corticomuscular coherence (CMC) is thought to reflect a mutual interaction between cortical and muscle oscillatory activities, respectively measured by electroencephalography (EEG) and electromyography (EMG). However, it remains unclear whether CMC modulation would depend on the contribution of neural mechanisms acting at the spinal level. To this purpose, modulations of CMC were compared during submaximal isometric, shortening and lengthening contractions of the soleus (SOL) and the medial gastrocnemius (MG) with a concurrent analysis of changes in spinal excitability that may be reduced during lengthening contractions. Submaximal contractions intensity was set at 50% of the maximal SOL EMG activity. CMC was computed in the time-frequency domain between the Cz EEG electrode signal and the unrectified SOL or MG EMG signal. Spinal excitability was quantified through normalized Hoffmann (H) reflex amplitude. The results indicate that beta-band CMC and normalized H-reflex were significantly lower in SOL during lengthening compared with isometric contractions, but were similar in MG for all three muscle contraction types. Collectively, these results highlight an effect of contraction type on beta-band CMC, although it may differ between agonist synergist muscles. These novel findings also provide new evidence that beta-band CMC modulation may involve spinal regulatory mechanisms.
在自愿收缩期间,皮质肌束相干性(CMC)被认为分别反映了皮层和肌肉振荡活动之间的相互作用,这些活动分别通过脑电图(EEG)和肌电图(EMG)进行测量。然而,CMC 调制是否取决于脊髓水平神经机制的贡献仍不清楚。为此,在比目鱼肌(SOL)和内侧腓肠肌(MG)的等长、缩短和拉长收缩期间,比较了 CMC 的调制,并同时分析了可能在拉长收缩期间降低的脊髓兴奋性变化。亚最大收缩强度设定为最大 SOL EMG 活动的 50%。在 Cz EEG 电极信号和未整流的 SOL 或 MG EMG 信号之间,在时频域中计算 CMC。通过归一化的 Hoffmann(H)反射幅度来量化脊髓兴奋性。结果表明,与等长收缩相比,在拉长收缩期间,β 波段 CMC 和归一化 H 反射在 SOL 中显著降低,但在 MG 中,所有三种肌肉收缩类型均相似。总的来说,这些结果强调了收缩类型对β 波段 CMC 的影响,尽管在激动剂协同肌之间可能存在差异。这些新发现还提供了新的证据,表明β 波段 CMC 调制可能涉及脊髓调节机制。