Bretzner Frédéric, Drew Trevor
Department of Physiology, Université de Montréal, Quebec, Canada.
J Neurophysiol. 2005 Oct;94(4):2911-27. doi: 10.1152/jn.00254.2005. Epub 2005 Jul 13.
We used microwire electrodes chronically implanted into the hindlimb representation of the motor cortex as well as into the pyramidal tract to test the hypothesis that the corticospinal system contributes to the locomotor plasticity that is observed after cutaneous denervation of the cat hindpaw. A total of 23 electrodes implanted into the motor cortex in three cats trained to walk on a treadmill produced phase-dependent, short-latency, twitch responses in hindlimb flexor and extensor muscles during locomotion. After a unilateral cutaneous denervation of the hindpaw, the cats showed transient deficits in locomotion, including a dragging of the hindpaw along the treadmill belt during the swing phase. This deficit rapidly recovered over the course of a few days. The recovery of locomotion was accompanied by an increase in the magnitude of the responses evoked in different muscles by the cortical stimulation at all 23 cortical sites. Response magnitude increased rapidly within the first 1-2 wk postdenervation before attaining a plateau at > or =3 wk. In two cats, for which detailed information was obtained, response magnitude in the knee flexor, semitendinosus (St), was increased by >250% at 14/18 sites (mean increase = 1,235%). Increased responses in the St to stimulation were also observed at two of the four pyramidal tract sites after the denervation but were relatively smaller (max = 593%) than those evoked by the cortical stimulation. We suggest that the denervation produces changes in both cortical and spinal excitability that, together, produce a change in corticospinal efficacy that contributes to the recovery of locomotor function.
我们使用长期植入运动皮层后肢代表区以及锥体束的微丝电极,来检验皮质脊髓系统是否有助于猫后爪皮肤去神经支配后所观察到的运动可塑性这一假设。在三只训练在跑步机上行走的猫中,总共23个电极植入运动皮层,在运动过程中,后肢屈肌和伸肌产生了与相位相关的、短潜伏期的抽搐反应。后爪单侧皮肤去神经支配后,猫出现短暂的运动缺陷,包括摆动期后爪沿跑步机皮带拖地。这种缺陷在几天内迅速恢复。运动恢复伴随着在所有23个皮层部位,皮层刺激在不同肌肉中诱发的反应幅度增加。反应幅度在去神经支配后的前1 - 2周内迅速增加,然后在≥3周时达到平台期。在两只获得详细信息的猫中,在14/18个部位,膝屈肌半腱肌(St)的反应幅度增加了>250%(平均增加 = 1235%)。去神经支配后,在四个锥体束部位中的两个部位,也观察到St对刺激的反应增加,但相对较小(最大 = 593%),比皮层刺激诱发的反应小。我们认为,去神经支配会引起皮层和脊髓兴奋性的变化,这些变化共同导致皮质脊髓效能的改变,从而有助于运动功能的恢复。