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Synaptic transfer at a vertebrate central nervous system synapse.

机译:脊椎动物中枢神经系统突触的突触转移。

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摘要

1. The relation between presynaptic depolarization and transmitter release was examined at a synapse between a Müller axon and a lateral interneurone in the spinal cord of the lamprey. Two micro-electrodes, one for passing current and the other for recording the resulting voltage change, were placed in the presynaptic axon; a single electrode for recording the post-synaptic potential produced by release of transmitter was placed in the post-synaptic cell. 2. When action potentials were blocked with tetrodotoxin, brief depolarizing pulses in the presynaptic fibre were as effective as the action potential had been in producing transmitter release. 3. The release process had an apparent threshold depolarization of 40-50 mV and saturated at presynaptic depolarizations of the order of 100 mV. Increasing the duration of the presynaptic pulse increased the maximum level of release. 4. Displacing the presynaptic voltage recording electrode from the position of synaptic contact toward the current passing electrode increased the apparent depolarization required to produce a given level of transmitter release. This shift in the input-output relation was consistent in magnitude with the voltage attenuation between the presynaptic recording electrode and the synapse expected from the space constant of the fibre. 5. The effect of conditioning hyperpolarization and depolarization of the presynaptic fibre on subsequent transmitter release by brief depolarizing pulses was examined. No effect was observed when the presynaptic recording electrode was in the region of synaptic contact. When the presynaptic electrode was not so positioned, conditioning effects were observed which depended on electode position and could be attributed to changes in the space constant of the presynaptic fibre. No conditioning effects were observed on transmitter release by the action potential.
机译:1.在长角rey的脊髓中,在Müller轴突和外侧中位神经元之间的突触中检查突触前去极化与递质释放之间的关系。将两个微电极放置在突触前轴突中,一个用于传递电流,另一个用于记录产生的电压变化。在突触后细胞中放置一个单独的电极,用于记录由于释放发射器而产生的突触后电位。 2.当用河豚毒素阻断动作电位时,突触前纤维中短暂的去极化脉冲与动作电位产生递质释放一样有效。 3.释放过程的表观阈值去极化为40-50 mV,在突触前去极化为100 mV时达到饱和。突触前脉冲持续时间的增加会增加最大释放水平。 4.将突触前电压记录电极从突触接触的位置移向电流通过电极会增加产生给定水平的发射器释放所需的表观去极化。输入-输出关系的这种变化在大小上与突触前记录电极和从纤维的空间常数预期的突触之间的电压衰减一致。 5.检查了突触前纤维的超极化和去极化条件对随后短暂的去极化脉冲释放的影响。当突触前记录电极在突触接触区域中时,没有观察到效果。当突触前电极的位置不是这样时,观察到的调节效应取决于电极的位置,并且可能归因于突触前纤维的空间常数的变化。没有观察到动作电位对调节器释放的调节作用。

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