脊髓和局部DC极化是否影响突触前抑制和激活后抑郁?

Dominik Kaczmarek, J. Ristikankare, Elzbieta Jankowska
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引用次数: 20

摘要

经脊髓极化最近被引入作为改善脊髓功能缺陷的一种手段。然而,只有少数人尝试研究DC行为的机制。我们现在研究了DC对两种脊髓调节系统的影响,突触前抑制和激活后抑制,考虑它们是否会减弱过度的脊髓反射和增强过度减弱的脊髓反射。深度麻醉大鼠椎内局部DC (0.3 ~ 0.4 μA)可诱发直流电效应,并与经脊髓极化(0.8 ~ 1.0 mA)的效果进行比较。局部椎管内DC的作用是极性依赖的,局部施加的阴极极化增强了突触前抑制和激活后抑制,而阳极极化则削弱了它们。相反,经脊髓的阴极和阳极极化促进了它们。结果表明,突触前抑制和激活后抑制存在一些共同的DC敏感机制,因为DC促进或抑制了突触前抑制和激活后抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Does trans‐spinal and local DC polarization affect presynaptic inhibition and post‐activation depression?
Trans‐spinal polarization was recently introduced as a means to improve deficient spinal functions. However, only a few attempts have been made to examine the mechanisms underlying DC actions. We have now examined the effects of DC on two spinal modulatory systems, presynaptic inhibition and post‐activation depression, considering whether they might weaken exaggerated spinal reflexes and enhance excessively weakened ones. Direct current effects were evoked by using local intraspinal DC application (0.3–0.4 μA) in deeply anaesthetized rats and were compared with the effects of trans‐spinal polarization (0.8–1.0 mA). Effects of local intraspinal DC were found to be polarity dependent, as locally applied cathodal polarization enhanced presynaptic inhibition and post‐activation depression, whereas anodal polarization weakened them. In contrast, both cathodal and anodal trans‐spinal polarization facilitated them. The results suggest some common DC‐sensitive mechanisms of presynaptic inhibition and post‐activation depression, because both were facilitated or depressed by DC in parallel.
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