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Task-dependent presynaptic inhibition.

机译:任务依赖性突触前抑制。

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This study compares the level of presynaptic inhibition during two rhythmic movements in the cat: locomotion and scratch. Dorsal rootlets from L6, L7, or S1 segments were cut, and their proximal stumps were recorded during fictive locomotion occurring spontaneously in decerebrate cats and during fictive scratch induced by d-tubocurarine applied on the C1 and C2 segments. Compared with rest, the number of antidromic spikes was increased (by 12%) during locomotion, whereas it was greatly decreased (31%) during scratch, and the amplitude of dorsal root potentials (DRPs), evoked by stimulating a muscle nerve, was slightly decreased (7%) during locomotion but much more so during scratch (53%). When compared with locomotion, the decrease in the number of antidromic spikes (45%) and the decrease in DRP amplitude (43%) during scratch were of similar magnitude. Also, the amplitude of primary afferent depolarization (PAD), recorded with micropipettes in axons (n = 13) of two cats, was found to be significantly reduced (60%) during scratch compared with rest. During both rhythms, there were cyclic oscillations in dorsal root potential the timing of which was linearly related to the timing of rhythmic activity in tibialis anterior. The amplitude of these oscillations was significantly smaller (34%) during locomotion compared with scratch. These results suggest that the reduction in antidromic activity during scratch was attributable to a task-dependent decrease in transmission in PAD pathways and not to underlying potential oscillations related to the central pattern generator. It is concluded that presynaptic inhibition and antidromic discharge may have a more important role in the control of locomotion than scratch.
机译:这项研究比较了猫的两种节律运动(运动和抓挠)中突触前抑制的水平。切下L6,L7或S1节段的背根,并记录它们在近端残肢的运动过程,这些运动是在自发发生于小脑猫的虚构运动中以及在D-微管尿素在C1和C2段上诱导的虚构划痕中进行的。与休息相比,运动时抗峰峰值增加(12%),而在刮擦过程中大大减少(31%),并且通过刺激肌肉神经引起的背根电位(DRPs)的振幅为在运动过程中略有下降(7%),但在刮擦过程中则有所下降(53%)。与运动相比,刮擦过程中抗蠕动峰值的减少(45%)和DRP幅度的减少(43%)具有相似的幅度。而且,发现用挠性移液器在两只猫的轴突(n = 13)中记录的初级传入去极化(PAD)的幅度与休息时相比明显降低(60%)。在这两个节律中,背根电位都有周期性的振荡,其时间与胫骨前部的节律活动的时间线性相关。与刮擦相比,这些振动的幅度在运动过程中明显较小(34%)。这些结果表明,刮擦过程中抗驱活性的降低归因于PAD途径中与任务有关的传播减少,而不是与中央模式发生器相关的潜在潜在振荡。结论是,突触前抑制和抗蠕动放电在运动控制中的作用可能比刮擦更重要。

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