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Firing Rate Distributions and Efficiency of Information Transmission of Inferior Temporal Cortex Neurons to Natural Visual Stimuli

机译:下颞叶皮层神经元对自然视觉刺激的发射率分布和信息传递效率

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摘要

The distribution of responses of sensory neurons to ecological stimulation has been proposed to be designed to maximize information transmission, which according to a simple model would imply an exponential distribution of spike counts in a given time window. We have used recordings from inferior temporal cortex neurons responding to quasi-natural visual stimulation (presented using a video of everyday lab scenes and a large number of static images of faces and natural scenes) to assess the validity of this exponential model and to develop an alternative simple model of spike count distributions. We find that the exponential model has to be rejected in 84% of cases (at the p < 0.01 level). A new model, which accounts for the firing rate distribution found in terms of slow and fast variability in the inputs that produce neuronal activation, is rejected statistically in only 16% of cases. Finally, we show that the neurons are moderately efficient at transmitting information but not optimally efficient.
机译:已经提出将感觉神经元对生态刺激的响应的分布设计为最大化信息传输,根据简单的模型,这将暗示在给定的时间窗口内尖峰计数的指数分布。我们使用来自下颞叶皮质神经元对准自然视觉刺激做出反应的录音(使用日常实验室场景的视频以及大量人脸和自然场景的静态图像呈现)来评估此指数模型的有效性并开发出一种尖峰计数分布的另一种简单模型。我们发现在84%的情况下(在p <0.01水平上)必须拒绝指数模型。一种新的模型,它解释了产生神经元激活的输入中慢速和快速变化所导致的放电率分布,仅在16%的情况下被统计拒绝。最后,我们表明神经元在传递信息方面具有中等效率,但不是最佳效率。

著录项

  • 来源
    《Neural computation》 |1999年第3期|601-631|共31页
  • 作者单位

    SISSA, Programme in Neuroscience, 34013 Trieste, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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