Harrison P J, Jankowska E
J Physiol. 1984 Nov;356:245-61. doi: 10.1113/jphysiol.1984.sp015462.
Previous studies of input on to spinocervical tract neurones have been extended by investigating the post-synaptic actions of non-cutaneous afferent fibres and of descending tracts on to these neurones, using intracellular recording. In particular, actions of group II muscle, joint and Pacinian afferent fibres and rubro- and corticospinal tract fibres were investigated. Group II muscle afferent fibres evoked excitation and inhibition at a minimal latency compatible with a disynaptic linkage. Increasing the stimulus strength to include group III afferent fibres enhanced these post-synaptic actions only modestly. Inhibition was evoked less frequently and/or required trains of stimuli. Weak stimulation of the interosseous nerve evoked short latency (disynaptic) inhibition or excitation, the latter less frequently. Post-synaptic potentials evoked below threshold for group III afferent fibres of the interosseous nerve are attributed to the actions of Pacinian corpuscles. Low threshold joint afferent fibres evoked excitation at short latency. Higher threshold joint afferent fibres usually evoked inhibition at longer latency, although high threshold excitation was sometimes observed. Stimulation of the pyramidal tract evoked constant latency, unitary e.p.s.p.s which followed high frequencies. The evidence suggests that such e.p.s.p.s are evoked monosynaptically. Polysynaptic excitation and inhibition were also observed. No convincing evidence could be found of actions evoked directly by the rubrospinal tract, although actions mediated via other descending systems could be induced from the red nucleus. A large degree of convergence was seen from different peripheral and descending systems on to individual neurones.
以往对脊髓颈段神经元传入的研究通过细胞内记录,调查非皮肤传入纤维和下行传导束对这些神经元的突触后作用得以扩展。特别是,研究了Ⅱ类肌、关节和环层小体传入纤维以及红核脊髓束和皮质脊髓束纤维的作用。Ⅱ类肌传入纤维在与双突触联系相符的最短潜伏期诱发兴奋和抑制。增加刺激强度以纳入Ⅲ类传入纤维,仅适度增强了这些突触后作用。抑制诱发频率较低和/或需要一连串刺激。对骨间神经的弱刺激诱发短潜伏期(双突触)抑制或兴奋,后者频率较低。在骨间神经Ⅲ类传入纤维阈值以下诱发的突触后电位归因于环层小体的作用。低阈值关节传入纤维在短潜伏期诱发兴奋。较高阈值关节传入纤维通常在较长潜伏期诱发抑制,尽管有时也观察到高阈值兴奋。刺激锥体束诱发恒定潜伏期、跟随高频的单一兴奋性突触后电位。证据表明此类兴奋性突触后电位是由单突触诱发的。也观察到多突触兴奋和抑制。虽然从红核可诱导经由其他下行系统介导的作用,但未发现红核脊髓束直接诱发作用的确凿证据。从不同外周和下行系统到单个神经元可见大量的汇聚。