Udo M, Kamei H, Matsukawa K, Tanaka K
Exp Brain Res. 1982;46(3):438-47. doi: 10.1007/BF00238638.
The effects of mechanical stimulation (tap) on single unit activity of Deiter's neurons were analysed in walking cats decerebrated at the premammillary level. Deiters' neurons projecting to the ipsilateral cervical, but not to the lumbosacral, spinal cord (C-Deiters' neurons) were identified by antidromic activation, cerebellar stimulation, and localization of the neurons. During each unperturbed cycle of quadrupedal locomotion, most C-Deiters' neurons showed two frequency modulation peaks in their impulse discharges: one (A peak) in the late swing (E1) or the early stance (E2) phase, the other (B peak) in the late stance (E3) or the early swing (F) phase, of the ipsilateral forelimb. The A peak started to rise shortly before the ipsilateral forelimb was placed. When mechanical perturbation was applied during locomotion to the paw dorsum of the left forelimb (LF) in its stance phase, the ongoing LF stance phase shortened and the simultaneous swing phase of the right forelimb (RF) shortened. Accordingly, in the RF, extensor activity in the swing phase to place down the limb occurred earlier than in unperturbed step cycles. The same LF tap induced a marked enhancement of impulse discharges in C-Deiters' neurons on the right side (with a magnitude of 20-100 imp/s, and the shortest latency of 25 ms). This enhancement was more pronounced than that induced when the perturbation was applied to the LF during its swing phase. The latency manifested a close time relation to the RF extensor activity supporting the postulate that the increased C-Deiters' activity in the RF swing phase contributes to the earlier onset of RF extensor activity which plays an important role in maintaining alternating footfalls after perturbation.
在乳头前水平去大脑的行走猫中,分析了机械刺激(轻敲)对Deiter神经元单单位活动的影响。通过逆向激活、小脑刺激和神经元定位,识别出投射到同侧颈部而非腰骶部脊髓的Deiter神经元(C-Deiter神经元)。在四足动物运动的每个未受干扰周期中,大多数C-Deiter神经元在其冲动发放中表现出两个频率调制峰值:一个(A峰)出现在同侧前肢的摆动后期(E1)或站立前期(E2),另一个(B峰)出现在同侧前肢的站立后期(E3)或摆动前期(F)。A峰在同侧前肢着地前不久开始上升。当在运动过程中对左前肢(LF)的爪背在其站立期施加机械扰动时,正在进行的LF站立期缩短,同时右前肢(RF)的摆动期缩短。相应地,在RF中,摆动期伸肌活动以放下肢体的发生时间比在未受干扰的步周期中更早。相同的LF轻敲在右侧C-Deiter神经元中诱导冲动发放显著增强(幅度为20-100次/秒,最短潜伏期为25毫秒)。这种增强比在LF摆动期施加扰动时诱导的增强更明显。潜伏期与RF伸肌活动表现出密切的时间关系,支持了这样的假设,即RF摆动期C-Deiter神经元活动增加有助于RF伸肌活动更早开始,这在维持扰动后交替的脚步落地中起重要作用。