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The Maintained Discharge of Rat Retinal Ganglion Cells

机译:大鼠视网膜神经节细胞的维持放电

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摘要

Action potentials were recorded from rat retinal ganglion cell fibers in the presence of a uniform field and the maintained discharge pattern was characterized. Spike trains recorded under ketamine/xylazine anesthesia were generally stationary, while those recorded under urethane anesthesia often showed slow, undriven, quasi-periodic fluctuations in firing rate. In light of these non-stationarities, interspike interval distributions and power spectral densities are reported for data collected primarily under ketamine/xylazine. The majority of cells had multi-modal interval distributions, with the first peak in the range of 25.0–38.5ms and the subsequent peaks occurring at integer multiples of the first peak. Cells with unimodal distributions were fit well by a gamma distribution function. Interval and spike count statistics showed that ON cells tended to fire faster than OFF cells and that cells with higher rates fired in a more regular manner, with the coefficient of variation covering a wide range of values across all cells (0.43–0.97). Both ON and OFF cells show serial correlations between adjacent interspike intervals, while ON cells also showed 2nd order correlations. Cells with multi-modal interval distribution showed a strong peak at high frequencies in the power spectra in the range of 28.9–41.4Hz. Oscillations were present under both anesthetic conditions and persisted in the dark at a slightly lower frequency, implying that the oscillations are generated independent of any light stimulus but can be modulated by light level. The oscillation frequency varied slightly between cells of the same type and in the same eye, suggesting that multiple oscillatory generating mechanisms exist within the retina. Cells with high frequency oscillations were described well by an integrate-and-fire model with the input consisting of Gaussian noise plus a sinusoid where the phase was jittered randomly to account for the bandwidth present in the oscillations.
机译:在均匀电场存在下从大鼠视网膜神经节细胞纤维记录动作电位,并表征维持的放电模式。氯胺酮/甲苯噻嗪麻醉下记录的穗状花序列车通常是静止的,而氨基甲酸乙酯麻醉下记录的穗状花序通常显示出缓慢,无动力,准周期的射速波动。鉴于这些非平稳性,报告了主要在氯胺酮/甲苯噻嗪下收集的数据的峰间间隔分布和功率谱密度。大多数细胞具有多峰间隔分布,第一个峰在25.0–38.5ms范围内,随后的峰出现在第一个峰的整数倍处。具有单峰分布的细胞通过伽玛分布函数很好地拟合。间隔和峰值计数统计数据显示,ON细胞比OFF细胞具有更快的发射速度,并且具有较高发射率的细胞以更规则的方式发射,变异系数涵盖了所有细胞的较大范围值(0.43-0.97)。 ON和OFF单元都显示相邻的尖峰间隔之间的序列相关性,而ON单元也显示2 阶相关。具有多峰间隔分布的细胞在功率谱中的28.9–41.4Hz范围内的高频处显示出一个强峰值。在两种麻醉条件下都存在振荡,并且在黑暗中以稍低的频率持续振荡,这意味着振荡是独立于任何光刺激而产生的,但可以通过光照水平进行调节。同一类型和同一只眼睛的细胞之间的振荡频率略有不同,这表明视网膜内存在多种振荡生成机制。通过积分与发射模型,可以很好地描述具有高频振荡的单元,其输入包括高斯噪声和正弦波,其中相位随机抖动以解决振荡中存在的带宽。

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