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Phase-locked responses in the Limulus lateral eye. Theoretical and experimental investigation.

机译:Li侧眼的锁相反应。理论和实验研究。

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摘要

The 1:1 phase locking of the neural discharge to sinusoidally modulated stimuli was investigated both theoretically and experimentally. On the theoretical side, a neural encoder model, the self-inhibited leaky integrator, was considered, and the phase of the locked impulse was computed for each frequency in the locking range by imposing the condition that the "leaky integral" u(t) of the driving signal should reach the threshold for the first time one stimulus period after the preceding impulse. As u(t) can be a nonmonotonic function, this approach leads to results that sometimes differ from those reported in the literature. It turns out that the phase excursion is often much smaller than the values of about 180 degrees predicted from previous analysis. Moreover, our analysis shows a peculiar effect; the phase locking frequency range narrows when the input modulation depth increases. The theoretical predictions are then compared with phase-locked discharge patterns recorded from visual cells of the Limulus lateral eye, stimulated by sinusoidally modulated light or depolarizing current. The phases of the locked spikes at each of a number of modulation frequencies have been measured. The predictions offered by the model fit the experimental data, although there are some difficulties in determining the effective driving signal.
机译:理论上和实验上都研究了神经放电对正弦调制刺激的1:1锁相。从理论上讲,考虑了神经编码器模型(自抑制泄漏积分器),并通过施加“泄漏积分” u(t)的条件,为锁定范围内的每个频率计算了锁定脉冲的相位。在前一脉冲之后的一个激励周期内,驱动信号的最大频率应首次达到阈值。由于u(t)可以是非单调函数,因此这种方法导致的结果有时与文献报道的结果有所不同。事实证明,相位偏移通常远小于先前分析预测的约180度的值。此外,我们的分析显示出奇特的效果。当输入调制深度增加时,锁相频率范围变窄。然后将理论预测值与由from侧眼的视觉细胞记录的锁相放电模式进行比较,该模式由正弦调制光或去极化电流激发。已经测量了在多个调制频率中的每个频率处的锁定尖峰的相位。尽管确定有效驱动信号存在一些困难,但该模型提供的预测符合实验数据。

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