Arshavsky Y I, Orlovsky G N, Perret C
Institute of Problems of Information Transmission, Academy of Sciences, Moscow, U.S.S.R.
Behav Brain Res. 1988 Apr-May;28(1-2):193-9. doi: 10.1016/0166-4328(88)90096-4.
It is now well established that locomotion and scratching in vertebrates can result from the activation of a spinal central generator. The possibility of control of these rhythmic motor activities by the red nucleus has been analyzed in the thalamic cat, in which efferent nerve discharges representing fictive locomotion or fictive scratching can still be recorded following paralysis by curarization. It was found that the discharge of lumbar-projecting rubrospinal neurons is modulated in relation to the intensity and frequency of the rhythmic efferent activity in the contralateral hindlimb. The average firing frequency was minimal at the transition between the extensor and flexor efferent bursts and increased progressively to reach a maximum in the second part of the flexor burst. Comparison of the rubrospinal activities during real and fictive rhythmic motor activities revealed only minor influences of phasic afferent inputs. Analysis of the relations between the rhythmic discharges found in rubrospinal neurons, cerebellar neurons (interpositus nucleus and paravermal Purkinje cells of the cerebellar anterior lobe) and neurons of an ascending pathway (ventral spinocerebellar tract) leads to the conclusion that the rubrospinal tract belongs to an internal loop between spinal and supraspinal centres. However, until now, the results do not allow the evaluation of its contribution to the motor performance, even in situations which, like those studied here, do not involve the complex motor control present in the intact cat.
现在已经充分证实,脊椎动物的运动和抓挠可由脊髓中枢发生器的激活引起。在丘脑猫中分析了红核控制这些节律性运动活动的可能性,在这种动物中,通过箭毒麻痹后,仍可记录到代表虚构运动或虚构抓挠的传出神经放电。研究发现,投射到腰部的红核脊髓神经元的放电与对侧后肢节律性传出活动的强度和频率有关。在伸肌和屈肌传出冲动的转换阶段,平均放电频率最低,并逐渐增加,在屈肌冲动的第二部分达到最大值。对真实和虚构节律性运动活动期间红核脊髓活动的比较显示,相位传入输入的影响很小。对红核脊髓神经元、小脑神经元(小脑前叶的间位核和旁小叶浦肯野细胞)和一条上行通路(腹侧脊髓小脑束)神经元中发现的节律性放电之间的关系进行分析后得出结论,红核脊髓束属于脊髓和脊髓上中枢之间的一个内部环路。然而,到目前为止,即使在像这里所研究的不涉及完整猫中存在的复杂运动控制的情况下,这些结果也无法评估其对运动表现的贡献。