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Transmitter release by mammalian motor nerve terminals in response to focal polarization

机译:哺乳动物运动神经末梢对局域极化的释放

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摘要

1. A method is described by which mammalian motor nerve terminals may be uniformly polarized by focally applied current, and the extra-cellular potential in the synaptic cleft, corresponding to any current, estimated.2. The relationship between log m.e.p.p. frequency and local extra-cellular field is flat for hyperpolarization and ascends linearly with depolarization. With depolarization, m.e.p.p. frequency is multiplied about tenfold for every — 18 mV. This characteristic becomes steeper the closer the polarizing electrode to the nerve terminal with a limiting value of ten-fold per — 15 mV.3. There exists a population of small m.e.p.p.s which are generated at the same end-plate as normal m.e.p.p.s.4. Following a prolonged depolarizing pulse there is an increase of m.e.p.p. frequency which continues for periods of up to several minutes.5. With hyperpolarizing pulses m.e.p.p. frequency may increase in a characteristic `bursty' manner. Similar bursts of m.e.p.p.s also occur spontaneously, but far less frequently, without polarization.6. During a depolarizing pulse, m.e.p.p. frequency becomes maximal or near maximal within 2 sec. There is little subsequent alteration of m.e.p.p. frequency. Numbers of m.e.p.p.s occurring during depolarizing pulses follow the Poisson distribution.7. Following a depolarizing pulse, numbers of m.e.p.p.s released by a subsequent pulse may be either increased or diminished.8. Comparison of the response of m.e.p.p. frequency to raised [K] and to extrinsic presynaptic polarization leads to the conclusion that the presynaptic transmembrane potential change corresponding to any focal current pulse is about two thirds of the local extracellular potential field. Hence the slope of the linear portion of the presynaptic transfer function is about tenfold per 10 mV presynaptic depolarization.
机译:1.描述了一种方法,通过该方法可以通过聚焦施加的电流使哺乳动物的运动神经末梢均匀极化,并且估计突触间隙中的细胞外电势,对应于任何电流,估计2。日志m.e.p.p.频率和局部细胞外场对于超极化而言是平坦的,并且随着去极化而线性上升。进行去极化后,m.e.p.p。频率每18 mV乘以大约十倍。极化电极越靠近神经末梢,其特性越陡峭,其极限值为每15 mV.3十倍。在与正常m.e.p.p.s.4相同的端板上会产生大量的m.e.p.p.s.在延长的去极化脉冲之后,m.e.p.p。增加。频率持续长达几分钟5。具有超极化脉冲的m.e.p.p.频率可能会以特征性的“突发”方式增加。相似的m.e.p.p.s爆发也是自发发生的,但没有极化的发生频率更低6。在去极化脉冲期间,m.e.p.p。频率在2秒内变为最大值或接近最大值。随后的m.e.p.p几乎没有变化。频率。去极化脉冲期间发生的m.e.p.p.s遵循泊松分布7。在去极化脉冲之后,随后的脉冲释放的m.e.p.p.s的数目可能会增加或减少8。比较m.e.p.p.频率升高[K]和外在突触前极化导致得出这样的结论:与任何聚焦电流脉冲相对应的突触前跨膜电位变化约为局部细胞外电位场的三分之二。因此,突触前传递函数线性部分的斜率约为每10 mV突触前去极化10倍。

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