Zachariah M K, Coleman G T, Mahns D A, Zhang H Q, Rowe M J
School of Physiology and Pharmacology, University of New South Wales, Sydney, NSW 2052, Australia.
J Neurophysiol. 2001 Aug;86(2):900-11. doi: 10.1152/jn.2001.86.2.900.
Transmission from single, identified hair follicle afferent (HFA) nerve fibers to their target neurons of the cuneate nucleus was examined in anesthetized cats by means of paired recording from individual cuneate neurons and from fine, intact fascicles of the lateral branch of the superficial radial nerve in which it is possible to identify and monitor the activity of each group II fiber. Selective activation of individual HFA fibers was achieved by means of focal vibrotactile skin stimulation. Forearm denervation precluded inputs from sources other than the monitored HFA sensory fiber. Transmission characteristics were analyzed for 21 HFA fiber-cuneate neuron pairs in which activity in the single HFA fiber of each pair reliably evoked spike output from the target neuron at a fixed latency. As the cuneate responses to each HFA impulse often consisted of 2 or 3 spikes, in particular at HFA input rates up to approximately 20 imp/s, the synaptic linkage displayed potent amplification and high-gain transmission, characteristics that were confirmed quantitatively in measures of transmission security and cuneate spike output measures. In response to vibrotactile stimuli, the tight phase locking in the responses of single HFA fibers was well retained in the cuneate responses for vibration frequencies up to approximately 200 Hz. On measures of vector strength, the phase locking declined across the synaptic linkage by no more than approximately 10% at frequencies up to 100 Hz. However, limitations on the impulse rates generated in both the HFA fibers their associated cuneate neurons meant that the impulse patterns could not directly signal information about the vibration frequency above 50-100 Hz. Although single HFA fibers are also known to have secure synaptic linkages with spinocervical tract neurons, it is probable that this linkage lacks the capacity of the HFA-cuneate synapse for conveying precise temporal information, in an impulse pattern code, about the frequency parameter of vibrotactile stimuli.
在麻醉猫中,通过对单个楔束神经元以及桡神经浅支外侧分支的细小完整束支进行配对记录,来检测从单个已识别的毛囊传入(HFA)神经纤维到其楔束核靶神经元的传递。在这些细小完整束支中,可以识别并监测每根II类纤维的活动。通过局部振动触觉皮肤刺激实现对单个HFA纤维的选择性激活。前臂去神经支配排除了来自被监测HFA感觉纤维以外来源的输入。分析了21对HFA纤维 - 楔束神经元对的传递特征,其中每对中的单个HFA纤维的活动在固定潜伏期可靠地诱发了靶神经元的动作电位输出。由于楔束对每个HFA冲动的反应通常由2个或3个动作电位组成,特别是在HFA输入频率高达约20次/秒时,突触连接表现出强大的放大作用和高增益传递,这些特征在传递安全性测量和楔束动作电位输出测量中得到了定量证实。响应振动触觉刺激时,对于高达约200 Hz的振动频率,单个HFA纤维反应中的紧密锁相在楔束反应中得到了很好的保留。在矢量强度测量中,在高达100 Hz的频率下,跨突触连接的锁相下降不超过约10%。然而,HFA纤维及其相关楔束神经元产生的冲动频率存在限制,这意味着冲动模式无法直接传递高于50 - 100 Hz振动频率的信息。虽然已知单个HFA纤维也与脊髓颈束神经元有稳定的突触连接,但这种连接可能缺乏HFA - 楔束突触以冲动模式编码传递关于振动触觉刺激频率参数精确时间信息的能力。