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Summation of afterhyperpolarization after a doublet in fast motoneurones of the rat spinal cord

机译:大鼠脊髓快速运动神经元双峰后超极化后的总结

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Motoneurones located in lumbar segments (L4-L5) of the rat spinal cord were activated antidromically by stimulation of the sciatic nerve. Records following a single pulse and double stimuli were collected from fast motoneurones and in each case voltage and time parameters of the action potential and afterhyperpolarization (AHP) were compared to respective values calculated for a simulated doublet - obtained by mathematical summation of two individual single potentials. The most prominent differences between experimentally recorded and simulated potentials concerned spike duration and the AHP half-decay times, with significantly lower values obtained for the simulated doublets. Tendencies for a higher AHP amplitude, shorter AHP peak time and higher AHP area were observed in mathematically modeled doublets, though no statistical differences were present in comparison to experimental data. Results indicated a non-linear summation of the AHP after double stimuli running in a short interval. These observations suggest that alterations in the generation of the AHP, mainly based on the sustained activity of KNa+ channels, influence time-intervals in motoneuronal discharge pattern and this way force development of individual motor units during muscle activity.
机译:通过刺激坐骨神经,抗脊髓地激活了位于大鼠脊髓腰段(L4-L5)的单性激素。从快速运动神经元收集单脉冲和双刺激后的记录,并将动作电位和超极化后的电压和时间参数分别与模拟双峰态的计算值进行比较-通过对两个单独的单势进行数学求和得到。实验记录的电位和模拟电位之间最显着的差异涉及尖峰持续时间和AHP半衰期,而模拟双峰得到的值明显较低。尽管与实验数据相比没有统计学差异,但在数学建模的双峰中观察到了较高的AHP振幅,较短的AHP峰时间和较高的AHP面积的趋势。结果表明在短间隔内两次刺激后,AHP的非线性求和。这些观察结果表明,主要基于KNa +通道的持续活性,AHP的产生改变会影响单神经元放电模式的时间间隔,并以此方式在肌肉活动期间迫使单个运动单位发展。

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