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猫在虚拟运动期间,外周刺激诱发的单个皮肤初级传入纤维中初级传入纤维去极化的相位依赖性调制。

Phase-dependent modulation of primary afferent depolarization in single cutaneous primary afferents evoked by peripheral stimulation during fictive locomotion in the cat.

作者信息

Gossard J P, Cabelguen J M, Rossignol S

机构信息

Centre de Recherche en Sciences Neurologiques, Faculté de Médecine, Université de Montréal, Que., Canada.

出版信息

Brain Res. 1990 Dec 24;537(1-2):14-23. doi: 10.1016/0006-8993(90)90334-8.

DOI:10.1016/0006-8993(90)90334-8
PMID:2085768
Abstract

Previous results from our laboratory have shown with intra-axonal recordings that hindfoot cutaneous primary afferents are subjected to rhythmic depolarizations during fictive locomotion (L-PAD) suggesting that cutaneous presynaptic mechanisms are activated by the central locomotor program. In this study, we examined the transmission in pathways responsible for primary afferent depolarizations (PAD) of cutaneous fibres during spontaneous fictive locomotion in decorticate cats and in spinal cats injected with nialamide and L-DOPA. PADs were evoked (E-PADs) by electrical stimulation of peripheral nerves and recorded intra-axonally with micropipettes in identified superficialis peroneal (SP; n = 7) and tibialis posterior (TP; n = 17) cutaneous primary afferents. Results showed that the amplitude of E-PADs, which were superimposed on the L-PAD, was deeply modulated throughout the locomotor cycle; decreasing to reach a minimum during the flexor phase and increasing to a maximum during the extensor phase. The results were not statistically different in fibres of the two nerves and in both types of preparation. The amplitude of E-PADs was always maximum during the extensor phase whether there was a large L-PAD or not during that phase. This suggests that the presynaptic mechanisms activated by central locomotor networks (L-PAD) and those activated by peripheral inputs (E-PAD) may in part be controlled differently. The results thus show that the transmission in PAD pathways activated by cutaneous inputs is phasically modulated by the central pattern generator for locomotion. This strongly suggests that the presynaptic inhibition in cutaneous fibres evoked by the movement-related feedback during real locomotion could be similarly modulated.

摘要

我们实验室之前的研究结果通过轴内记录表明,在虚构运动(L-PAD)期间,后足皮肤初级传入神经会经历节律性去极化,这表明皮肤突触前机制是由中枢运动程序激活的。在本研究中,我们研究了在去皮质猫和注射了尼亚酰胺和左旋多巴的脊髓猫自发虚构运动期间,负责皮肤纤维初级传入去极化(PAD)的通路中的传递情况。通过电刺激外周神经诱发PAD(E-PAD),并在已识别的腓浅神经(SP;n = 7)和胫后神经(TP;n = 17)皮肤初级传入神经中用微电极进行轴内记录。结果表明,叠加在L-PAD上的E-PAD的幅度在整个运动周期中受到深度调制;在屈肌阶段减小至最小值,在伸肌阶段增加至最大值。在两种神经的纤维以及两种类型的制备中,结果在统计学上没有差异。无论该阶段是否存在大的L-PAD,E-PAD的幅度在伸肌阶段总是最大的。这表明由中枢运动网络激活的突触前机制(L-PAD)和由外周输入激活的突触前机制(E-PAD)可能在部分上受到不同的控制。因此,结果表明,由皮肤输入激活的PAD通路中的传递受到运动中枢模式发生器的相位调制。这强烈表明,在实际运动期间由运动相关反馈诱发的皮肤纤维中的突触前抑制可能受到类似的调制。

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