首页> 美国卫生研究院文献>The Journal of Physiology >Synaptic potentials evoked in cat dorsal spinocerebellar tract neurones by impulses in single group I muscle afferents.
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Synaptic potentials evoked in cat dorsal spinocerebellar tract neurones by impulses in single group I muscle afferents.

机译:I组单个肌肉传入神经的冲动在猫背小脑脊髓神经元中诱发了突触电位。

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摘要

1. Excitatory postsynaptic potentials (EPSPs) evoked by impulses in single group I muscle afferents were recorded intracellularly in dorsal spinocerebellar tract (DSCT) neurones in the spinal cords of anaesthetized cats. 2. In the same experiments, electrotonic membrane properties of DSCT neurones were measured using the voltage response of each cell to a brief intracellular current pulse. 3. Single group I fibre EPSPs were found to exhibit a large range of amplitudes, from 210 microV to 3.4 mV. All of these EPSPs exhibited uniformly rapid rise times, in contrast to the wide range of time courses exhibited by group I a EPSPs recorded in motoneurones. 4. Electrotonic analysis of DSCT neurones indicated that the time constants of these cells ranged from 5.9 to 18.2 ms, with an average value of 10.9 ms. 5. Current pulse responses of the majority (approximately three-quarters) of DSCT neurones were well described by a simple cable model. Equivalent dendritic cable lengths were calculated for DSCT neurones and found to have an average value of 1.0 space constants, which is considerably less than that calculated for motoneurones. 6. Application of the simple cable model of DSCT neurones demonstrated that the rapid rise-times of single group I EPSPs can be explained by a substantial somatic input to these cells. However, in addition to this strong somatic component, there may also be a contribution from dendritic synapses which prolong the initial decay phase of these EPSPs. The final decay of single fibre EPSPs in DSCT neurones is explained simply by the passive membrane time constant of these cells.
机译:1.在麻醉的猫的脊髓脊髓小脑背道(DSCT)神经元中,细胞内记录了单个I组肌肉传入刺激引起的兴奋性突触后电位(EPSPs)。 2.在同一实验中,使用每个细胞对短暂的细胞内电流脉冲的电压响应,测量DSCT神经元的电渗膜特性。 3.发现单组I光纤EPSP的振幅范围很大,从210 microV到3.4 mV。所有这些EPSP均表现出一致的快速上升时间,这与I组在运动神经元中记录的EPSP所表现出的宽泛的时程相反。 4. DSCT神经元的电渗分析表明,这些细胞的时间常数范围为5.9到18.2 ms,平均值为10.9 ms。 5.通过简单的电缆模型可以很好地描述大多数DSCT神经元(约四分之三)的电流脉冲响应。计算出DSCT神经元的等效树突状电缆长度,发现其平均值为1.0空间常数,该平均值明显小于对运动神经元计算的平均值。 6. DSCT神经元的简单电缆模型的应用表明,单个I组EPSP的快速上升时间可以通过向这些细胞的大量体细胞输入来解释。但是,除了这种强大的体细胞成分外,树突触还可能有助于延长这些EPSP的初始衰变期。 DSCT神经元中单纤维EPSP的最终衰变简单地通过这些细胞的被动膜时间常数来解释。

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