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视网膜中阈值信号的统计检测。

The statistical detection of threshold signals in the retina.

作者信息

FITZHUGH R

出版信息

J Gen Physiol. 1957 Jul 20;40(6):925-48. doi: 10.1085/jgp.40.6.925.

Abstract
  1. Photographic records of impulses from single ganglion cells in the cat's retina were made while the retina was stimulated by flashes occurring once a second. Ten flashes at each of several intensities near threshold were used. 2. For the purpose of statistical analysis, the number of impulses (x) falling within a critical period following each flash was used as an index of the response. Histograms of x were plotted and used to calculate rates of transfer of information by the ganglion cell for the case of an ideal experiment, the yes-no choice, in which flashes of intensity I and blanks are to be distinguished. 3. The information rate increased (a) with increasing stimulus intensity and (b) with the number of identical flashes or blanks presented successively in a block. The intensity chosen as threshold by the experimenter, who observed the impulses visually and aurally, corresponded to an average information rate for single flashes of 0.7 bit/flash, compared to the maximum possible rate of 1 bit/flash. A threshold intensity giving 0.4 or more bit/flash, if presented in blocks of six identical flashes, corresponded to 0.95 or more bit/block, or near certainty. Thus the calculation of information rates using the index x provides an estimate of threshold at least as sensitive as those obtained during an experiment, which were made only after observing the responses to five to ten flashes of the same intensity. 4. The index x has statistical properties similar to those of the "index of neural activity" used by Tanner and Swets (1954) in their statistical model of human vision, and represents a possible physical interpretation of their index. However, x gave values (0.5 to 1.5) of the parameter called the slope which were consistently smaller than their values (2.1 to 3.1).
摘要
  1. 当以每秒一次的闪光刺激猫的视网膜时,对单个神经节细胞的冲动进行了摄影记录。在接近阈值的几种强度下,每种强度都使用了十次闪光。2. 为了进行统计分析,将每次闪光后关键时期内的冲动数量(x)用作反应指标。绘制了x的直方图,并用于计算在理想实验(即区分强度为I的闪光和空白的是-否选择)情况下神经节细胞的信息传递速率。3. 信息速率随着(a)刺激强度的增加以及(b)在一个块中连续呈现的相同闪光或空白的数量而增加。由实验者通过视觉和听觉观察冲动所选择的作为阈值的强度,对应于单次闪光的平均信息速率为0.7比特/闪光,而最大可能速率为1比特/闪光。如果以六个相同闪光的块呈现,给出0.4或更多比特/闪光的阈值强度对应于0.95或更多比特/块,或接近确定性。因此,使用指标x计算信息速率至少提供了与实验期间获得的阈值一样敏感的估计,实验中的阈值仅在观察对五到十次相同强度闪光的反应后得出。4. 指标x具有与Tanner和Swets(1954)在其人类视觉统计模型中使用的“神经活动指标”相似的统计特性,并且代表了他们指标的一种可能的物理解释。然而,x给出的称为斜率的参数值(0.5至1.5)始终小于他们的值(2.1至3.1)。

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本文引用的文献

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A multibeam ophthalmoscope for the study of retinal physiology.
J Opt Soc Am. 1952 Dec;42(12):931-6. doi: 10.1364/josa.42.000931.

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