Division of Functional and Restorative Neurosurgery, and Tuebingen NeuroCampus, Eberhard Karls University Tuebingen, 72076 Tuebingen, Germany.
Department of Neurology and Stroke, and Hertie Institute for Clinical Brain Research, Eberhard Karls University Tuebingen, 72076 Tuebingen, Germany.
Cereb Cortex. 2020 Jan 10;30(1):371-381. doi: 10.1093/cercor/bhz093.
The communication through coherence hypothesis suggests that only coherently oscillating neuronal groups can interact effectively and predicts an intrinsic response modulation along the oscillatory rhythm. For the motor cortex (MC) at rest, the oscillatory cycle has been shown to determine the brain's responsiveness to external stimuli. For the active MC, however, the demonstration of such a phase-specific modulation of corticospinal excitability (CSE) along the rhythm cycle is still missing. Motor evoked potentials in response to transcranial magnetic stimulation (TMS) over the MC were used to probe the effect of cortical oscillations on CSE during several motor conditions. A brain-machine interface (BMI) with a robotic hand orthosis allowed investigating effects of cortical activity on CSE without the confounding effects of voluntary muscle activation. Only this BMI approach (and not active or passive hand opening alone) revealed a frequency- and phase-specific cortical modulation of CSE by sensorimotor beta-band activity that peaked once per oscillatory cycle and was independent of muscle activity. The active MC follows an intrinsic response modulation in accordance with the communication through coherence hypothesis. Furthermore, the BMI approach may facilitate and strengthen effective corticospinal communication in a therapeutic context, for example, when voluntary hand opening is no longer possible after stroke.
相干性假说表明,只有相干振荡的神经元群才能有效地相互作用,并预测沿振荡节律的固有反应调制。对于静息状态下的运动皮层 (MC),已经表明振荡周期决定了大脑对外界刺激的反应能力。然而,对于活跃的 MC,沿节律周期的皮质脊髓兴奋性 (CSE) 的这种特定相位调制的证明仍然缺失。使用经颅磁刺激 (TMS) 作用于 MC 上的运动诱发电位来探测皮质振荡对 CSE 的影响,这些运动条件包括几种运动情况。一种带有机器人手矫形器的脑机接口 (BMI) 允许在没有自愿肌肉激活的混杂影响的情况下研究皮质活动对 CSE 的影响。只有这种 BMI 方法(而不是主动或被动单手张开)揭示了感觉运动β频带活动对 CSE 的频率和相位特异性皮质调制,其峰值出现在每个振荡周期一次,并且与肌肉活动无关。活跃的 MC 遵循与相干性假说一致的内在反应调制。此外,BMI 方法可能会在治疗环境中促进和增强有效的皮质脊髓通讯,例如在中风后无法再进行自愿性手部张开时。