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Injections of calcium ions into spinal motoneurones

机译:向脊髓运动神经元中注射钙离子

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摘要

1. In cats under Dial anaesthesia, Ca2+ was injected inside lumbosacral motoneurones, by passing currents between CaCl2- and KCl-containing barrels of compound micropipettes.2. There was a reduction in excitability and a fall in membrane resistance, both rapid in onset and quickly reversible.3. The minimum effective injection current was ≈ 10 nA, and the effect reached a maximum with currents of ≈ 30 nA. The mean slope of resistance change against injection current was -1·7%A (S.E. 0·35).4. The most common change in membrane potential was a hyperpolarization; but in nearly half the cases, there was no clear change or a small depolarization. A reversal level for the effect of Ca2+ could be measured in five cells: on the average, it was 10 mV more negative than the resting potential.5. Observations on i.p.s.p.s showed that Ca2+ probably does not alter gCl: it was concluded that the fall in membrane resistance caused by intracellular Ca2+ is mainly due to an increase in gK.6. These results confirm previous suggestions that a steep transmembrane gradient of Ca2+ is essential for the maintenance of a low membrane conductivity, and that a rise in internal free Ca2+ — whether due to influx or release from internal stores — may play an important role in regulating neuronal activity.
机译:1.在Dial麻醉下的猫中,通过使电流在含CaCl2-和KCl的复合微量移液管桶之间流通,将Ca 2 + 注入腰s运动神经元内部。起效快且可逆转,兴奋性降低,膜阻力降低。3。最小有效注入电流为≈10 nA,在≈30 nA的电流下效果达到最大值。电阻变化对注入电流的平均斜率是-1·7%/ nA(S.E. 0·35).4。膜电位最常见的变化是超极化。但在几乎一半的情况下,没有明显的变化或小的去极化。可以在五个单元中测量Ca 2 + 的逆转水平:平均而言,它比静息电势负10 mV多。5。对ipsps的观察表明,Ca 2 + 可能不会改变gCl:结论是细胞内Ca 2 + 引起的膜抗性下降主要是由于细胞内Ca 2 + 的增加所致。 gK.6。这些结果证实了先前的建议,即Ca 2 + 的跨膜梯度陡是维持低膜电导率所必需的,并且内部游离Ca 2 + 的升高–无论是由于涌入还是内部存储释放,都可能在调节神经元活动中发挥重要作用。

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