Brown A G, Hamann W C, Martin H F
Brain Res. 1975 Nov 14;98(2):243-59. doi: 10.1016/0006-8993(75)90004-9.
Microelectrode recordings were made from axons of the spinocervical tract (SCT) in unanaesthetized decerebrate-spinal cats. Pure volleys in non-myelinated (C) cutaneous nerve fibres were obtained by DC-polarization block of conduction in the myelinated (A) fibres, and SCT cells were classified according to whether or not they were excited by C fibres. The effects of conditioning C responses in the SCT with A and C fibre input were examined, as were the effects of conditioning A fibre responses in the tract with C fibre inputs. The effects of stimulating descending systems in the cervical spinal cord on the C fibre-evoked responses of SCT cells were determined. SCT units with a slowly-adapting pressure-sensitive component in their receptive fields responded to cutaneous C fibres in addition to A fibres. Units which responded only to hair movement when the receptive field was stimulated mechanically were not excited by C fibres. Responses in SCT neurones produced by C fibres were profoundly inhibited by conditioning volleys in A fibres of both ipsilateral and contralateral cutaneous nerves and by activity in several descending systems. Conditioning with C fibres failed to affect the responses of SCT cells to either A or C fibres. It is concluded that cutaneous C fibres excite some SCT cells but have no other effect on transmission through this system. It is suggested that there are common inhibitory interneurones in the paths from descending systems and cutaneous A and C fibres to the excitatory input to SCT cells.
在未麻醉的去大脑脊髓猫身上,对脊髓颈段通路(SCT)的轴突进行了微电极记录。通过对有髓鞘(A)纤维传导进行直流极化阻滞,获得了无髓鞘(C)皮肤神经纤维中的纯波,并且根据SCT细胞是否被C纤维兴奋进行了分类。研究了用A和C纤维输入对SCT中C反应进行条件化的效果,以及用C纤维输入对该通路中A纤维反应进行条件化的效果。确定了刺激颈脊髓中下行系统对SCT细胞C纤维诱发反应的影响。其感受野中具有慢适应性压敏成分的SCT单位,除了对A纤维有反应外,还对皮肤C纤维有反应。当机械刺激感受野时仅对毛发运动有反应的单位不会被C纤维兴奋。C纤维在SCT神经元中产生的反应,被同侧和对侧皮肤神经A纤维中的条件化波以及几个下行系统的活动显著抑制。用C纤维进行条件化未能影响SCT细胞对A或C纤维的反应。得出的结论是,皮肤C纤维会兴奋一些SCT细胞,但对通过该系统的传导没有其他影响。有人提出,在从下行系统以及皮肤A和C纤维到SCT细胞兴奋性输入的通路上存在共同的抑制性中间神经元。