Martin P G, Butler J E, Gandevia S C, Taylor J L
Prince of Wales Medical Research Institute, Barker Street, Randwick, Sydney, NSW 2031, Australia.
J Neurophysiol. 2008 Aug;100(2):1080-6. doi: 10.1152/jn.90380.2008. Epub 2008 May 28.
These studies investigated whether a single electrical stimulus over the thoracic spine activates corticospinal axons projecting to human leg muscles. Transcranial magnetic stimulation of the motor cortex and electrical stimulation over the thoracic spine were paired at seven interstimulus intervals, and surface electromyographic responses were recorded from rectus femoris, tibialis anterior, and soleus. The interstimulus intervals (ISIs) were set so that the first descending volley evoked by cortical stimulation had not arrived at (positive ISIs), was at the same level as (0 ISI) or had passed (negative ISIs) the site of activation of descending axons by the thoracic stimulation at the moment of its delivery. Compared with the responses to motor cortical stimulation alone, responses to paired stimuli were larger at negative ISIs but reduced at positive ISIs in all three leg muscles. This depression of responses at positive ISIs is consistent with an occlusive interaction in which an antidromic volley evoked by the thoracic stimulation collides with descending volleys evoked by cortical stimulation. The cortical and spinal stimuli activate some of the same corticospinal axons. Thus it is possible to examine the excitability of lower limb motoneuron pools to corticospinal inputs without the confounding effects of changes occurring within the motor cortex.
这些研究调查了对胸椎进行单次电刺激是否会激活投射至人腿部肌肉的皮质脊髓轴突。在七个刺激间隔下,将运动皮层的经颅磁刺激与胸椎上的电刺激配对,并记录股直肌、胫骨前肌和比目鱼肌的表面肌电图反应。设置刺激间隔(ISI),使得皮层刺激诱发的第一个下行波在胸椎刺激激活下行轴突的部位传递时尚未到达(正ISI)、处于同一水平(0 ISI)或已经通过(负ISI)该部位。与仅对运动皮层刺激的反应相比,在所有三块腿部肌肉中,对配对刺激的反应在负ISI时更大,而在正ISI时减小。正ISI时反应的这种抑制与一种阻塞性相互作用一致,即胸椎刺激诱发的逆向波与皮层刺激诱发的下行波发生碰撞。皮层和脊髓刺激激活了一些相同的皮质脊髓轴突。因此,有可能在不考虑运动皮层内发生的变化所产生的混杂效应的情况下,检查下肢运动神经元池对皮质脊髓输入的兴奋性。