Shefchyk S J, Stein R B, Jordan L M
J Neurophysiol. 1984 May;51(5):986-97. doi: 10.1152/jn.1984.51.5.986.
Modulation of synaptic potentials produced by electrical stimulation of low-threshold muscle afferents in lumbar alpha-motoneurons innervating knee and ankle muscles was studied by intracellular recording during "fictive locomotion" induced by stimulating the mesencephalic locomotor region (MLR) in paralyzed, mesencephalic cats. Averaging postsynaptic potentials in different phases of the fictive step cycle indicated that relatively little amplitude modulation occurred. In nearly half of the 38 motoneurons analyzed, there was a statistically significant tendency for excitatory postsynaptic potentials (EPSPs) to increase in amplitude during the depolarized phase of the oscillation in the membrane potential produced during fictive locomotion (locomotor-drive potential). In 8% the EPSPs decreased under the same conditions, while the rest displayed a constant amplitude during all phases of the fictive step cycle. Only three cells showed a distinct second peak in the EPSP at a latency consistent with transmission in a di- or trisynaptic pathway. Late inhibitory postsynaptic potentials (IPSPs) were also rarely observed. Thus oligosynaptic pathways from muscle afferents to the motoneuron groups studied are not prominent during the locomotor cycle in this preparation. We suggest that the marked modulation of monosynaptic reflex amplitude observed in mesencephalic cats (1) arises mainly from the effects of the locomotor-drive potential in bringing the cells closer to threshold during some phases of locomotion. Specific modulation during fictive locomotion of transmission in pathways from muscle afferents, which has been demonstrated for cutaneous pathways (28), was not observed. The implications of these results for the control of locomotion are discussed briefly.
在瘫痪的中脑猫中,通过刺激中脑运动区(MLR)诱导“虚构运动”,采用细胞内记录法研究了电刺激支配膝关节和踝关节肌肉的腰段α运动神经元的低阈值肌肉传入纤维所产生的突触电位调制。对虚构步周期不同阶段的突触后电位进行平均,结果表明幅度调制相对较小。在分析的38个运动神经元中,近一半在虚构运动期间产生的膜电位振荡(运动驱动电位)的去极化阶段,兴奋性突触后电位(EPSP)有在幅度上增加的统计学显著趋势。在相同条件下,8%的EPSP幅度下降,其余在虚构步周期的所有阶段显示恒定幅度。只有三个细胞在EPSP中出现了明显的第二个峰值,其潜伏期与二突触或三突触通路中的传递一致。晚期抑制性突触后电位(IPSP)也很少观察到。因此,在该制备中,从肌肉传入纤维到所研究的运动神经元群的寡突触通路在运动周期中并不突出。我们认为,在中脑猫中观察到的单突触反射幅度的显著调制(1)主要源于运动驱动电位在运动的某些阶段使细胞更接近阈值的作用。未观察到在虚构运动期间从肌肉传入纤维的通路中传递的特定调制,而在皮肤通路中已证明存在这种调制(28)。简要讨论了这些结果对运动控制的意义。