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A nonlinear encoder in crayfish sustaining fibers

机译:小龙虾维持纤维中的非线性编码器

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The properties of the voltage to spike train encoder in crayfish visual interneurons are characterized with steps and sine waves of current and illumination. Impulse trains elicited by current steps exhibit rapid adaptation and encoder adaptation contributes to a rate sensitive frequency response in which the gain increases with stimulus frequency and the impulse rate modulation phase leads the current. Similar results obtain in the relation between impulse rate modulation and the synaptic potential. We conclude that encoder adaptation is the basis of the encoder's high sensitivity to voltage transients and describe the relevance of both the transient sensitivity and the tonic discharge at synapses made by the same neurons.
机译:小龙虾视觉中间峰值在船尖上的电压的电压的特性具有电流和照明的步骤和正弦波。电流步骤引发的脉冲培训表现出快速适配和编码器适配有助于速率敏感频率响应,其中增益随着刺激频率和脉冲率调制阶段引导电流。类似的结果在脉冲率调制与突触电位之间的关系中获得。我们得出结论,编码器适应是编码器对电压瞬变的高敏感性的基础,并描述了由同一神经元制成的突触突出的瞬态灵敏度和补液放电的相关性。

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