...
首页> 外文期刊>Experimental Neurology >Electrophysiology and morphometry of the Aalpha- and Abeta-fiber populations in the normal and regenerating rat sciatic nerve.
【24h】

Electrophysiology and morphometry of the Aalpha- and Abeta-fiber populations in the normal and regenerating rat sciatic nerve.

机译:正常和再生大鼠坐骨神经中Aalpha和Abeta纤维群体的电生理和形态测定。

获取原文
获取原文并翻译 | 示例
           

摘要

We studied electrophysiological and morphological properties of the Aalpha- and Abeta-fibers in the regenerating sciatic nerve to establish whether these fiber types regenerate in numerical proportion and whether and how the electrophysiological properties of these fiber types are adjusted during regeneration. Compound action potentials were evoked from isolated sciatic nerves 12 weeks after autografting. Nerve fibers were gradually recruited either by increasing the stimulus voltage from subthreshold to supramaximal levels or by increasing the interval between two supramaximal stimuli to obtain the cumulative distribution of the extracellular firing thresholds and refractory periods, respectively. Thus, the mean conduction velocity (MCV), the maximal charge displaced during the compound action potential (Q(max)), the mean firing threshold (V(50)), and the mean refractory period (t(50)) were determined. The number of myelinated nerve fibers and their fiber diameter frequency distributions were determined in the peroneal nerve. Mathematical modeling applied to fiber recruitment and diameter distributions allowed discrimination of the Aalpha- and Abeta-fiber populations. In regenerating nerves, the number of Aalpha-fibers increased fourfold while the number of Abeta-fibers did not change. In regenerating Aalpha- and Abeta-fibers, the fiber diameter decreased and V(50) and t(50) increased. The regenerating Aalpha-fibers' contribution to Q(max) decreased considerably while that of the Abeta-fibers remained the same. Correlation of the electrophysiological data to the morphological data provided indications that the ion channel composition of both the Aalpha- and Abeta-fibers are altered during regeneration. This demonstrates that combining morphometric and electrophysiological analysis provides better insight in the changes that occur during regeneration.
机译:我们研究了再生坐骨神经中Aalpha和Abeta纤维的电生理和形态学特性,以确定这些纤维类型是否按比例成比例地再生,以及在再生过程中是否以及如何调整这些纤维类型的电生理特性。自体移植后12周,从孤立的坐骨神经中诱发出复合动作电位。通过将刺激电压从阈下增加到最大水平或通过增加两个最大刺激之间的间隔来逐渐募集神经纤维,以分别获得细胞外放电阈值和不应期的累积分布。因此,确定了平均传导速度(MCV),复合动作电位期间的最大电荷位移(Q(max)),平均点火阈值(V(50))和平均不应期(t(50))。 。确定腓神经中有髓神经纤维的数量及其纤维直径频率分布。用于纤维募集和直径分布的数学模型可以区分Aalpha和Abeta纤维种群。在再生神经中,Aalpha纤维的数量增加了四倍,而Abeta纤维的数量没有改变。在再生Aalpha和Abeta纤维时,纤维直径减小,V(50)和t(50)增加。再生的Aalpha纤维对Q(max)的贡献大大降低,而Abeta纤维的贡献保持不变。电生理数据与形态数据的相关性提供了指示,表明在再生过程中,Aalpha和Abeta纤维的离子通道组成均发生了变化。这表明将形态计量学和电生理学分析相结合可以更好地了解再生过程中发生的变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号