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The effect of polarizing currents on unitary Ia excitatory post-synaptic potentials evoked in spinal motoneurones.

机译:极化电流对脊髓运动神经元诱发的单一Ia兴奋性突触后电位的影响。

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摘要

1. Depolarizing and hyperpolarizing currents were applied to motoneurones in which unitary Ia e.p.s.p.s were evoked. The results concentrate on those e.p.s.p.s which had time courses which were compatible with somatically located synapses. 2. No reversal of these e.p.s.p.s was observed. Depolarizing currents up to 150 nA simply reduced the peak amplitude. 3. Hyperpolarizing currents caused little, if any, increase in the peak amplitude of the e.p.s.p. The time course of decay became briefer as the membrane was hyperpolarized. 4. Changes in decay time course of the e.p.s.p. which accompanied depolarization and hyperpolarization could be attributed to changes in membrane conductances, rather than to changes in synaptic current time course. 5. The failure of the e.p.s.p. to increase with hyperpolarization was shown to be due to the failure of the synaptic current to increase, rather than to the shunting of anomalous rectification. 6. Chemical and electrical transmission are evaluated against these results and those of the preceding papers.
机译:1.将去极化和超极化电流施加于诱发单个Ia e.p.s.p.s的运动神经元。结果集中在那些具有与躯体定位突触兼容的时程的e.p.s.p.s上。 2.未观察到这些e.p.s.p.s的逆转。高达150 nA的去极化电流仅会降低峰值幅度。 3.超极化电流几乎没有引起e.p.s.p峰值幅度的增加。随着膜超极化,衰减的时间过程变得更短。 4. e.p.s.p.的衰减时间过程的变化。伴随去极化和超极化的这种现象可以归因于膜电导的变化,而不是由于突触电流时程的变化。 5. e.p.s.p.的失败超极化增加的原因是由于突触电流未能增加,而不是由于异常整流的分流。 6.根据这些结果和之前的论文评估了化学和电气传输。

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