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不同大小的猫后肢运动神经元的电压阈值和兴奋性

Voltage threshold and excitability among variously sized cat hindlimb motoneurons.

作者信息

Pinter M J, Curtis R L, Hosko M J

出版信息

J Neurophysiol. 1983 Sep;50(3):644-57. doi: 10.1152/jn.1983.50.3.644.

Abstract

Intracellular recording has been performed to examine whether any differences in apparent initial-segment voltage threshold exist between types F and S cat triceps surae motoneurons. Voltage threshold was estimated using orthodromic action potentials initiated by large, monosynaptic excitatory postsynaptic potentials (EPSPs) evoked by dorsal root stimulation. No significant differences in voltage threshold could be detected between types F and S motoneurons. Further, voltage thresholds did not covary with motoneuron input resistance, afterhyperpolarization duration, or the twitch contraction time of functionally isolated muscle units. Significant positive correlations were observed between voltage threshold and the motoneuron resting potential. Utilizing a compartmental neuron model, a theoretical analysis has been performed that examines the influence of specific passive membrane properties on current threshold for action potentials initiated by large, monosynaptic EPSPs. This analysis indicates that total membrane capacitance will be the primary determinant of these thresholds. Further analysis of available data suggests that active membrane properties will play a minimal role in setting these thresholds. Since specific membrane capacitance is likely to be similar among cat motoneurons, it is concluded that only size or surface area-related current threshold differences will exist among these cells for activation with brief currents such as those underlying large EPSPs. For motoneurons thus activated, it is suggested that variations in the excitatory/inhibitory balance or density of synaptic input would be the major mechanisms for producing differential recruitment thresholds among the motoneuron population. Other available evidence is discussed that indicates that factors intrinsic to the motoneurons themselves will contribute to the setting of functional recruitment thresholds for activation with longer duration currents.

摘要

已进行细胞内记录,以检查F型和S型猫比目鱼肌运动神经元在明显的起始段电压阈值上是否存在差异。使用由背根刺激诱发的大的单突触兴奋性突触后电位(EPSP)引发的正向动作电位来估计电压阈值。在F型和S型运动神经元之间未检测到电压阈值的显著差异。此外,电压阈值与运动神经元输入电阻、超极化后持续时间或功能分离的肌肉单位的抽搐收缩时间无关。电压阈值与运动神经元静息电位之间观察到显著的正相关。利用一个房室神经元模型,进行了一项理论分析,研究特定的被动膜特性对由大的单突触EPSP引发的动作电位的电流阈值 的影响。该分析表明,总膜电容将是这些阈值的主要决定因素。对现有数据的进一步分析表明,主动膜特性在设定这些阈值方面将起最小作用。由于猫运动神经元之间的比膜电容可能相似,因此得出结论,对于用短暂电流(如大EPSP背后的电流)激活这些细胞,仅存在与大小或表面积相关 的电流阈值差异。对于如此激活的运动神经元,建议兴奋性/抑制性平衡或突触输入密度的变化将是在运动神经元群体中产生差异募集阈值的主要机制。还讨论了其他现有证据,这些证据表明运动神经元本身的内在因素将有助于设定用持续时间更长的电流激活时的功能募集阈值。

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