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首页> 外文期刊>The Journal of general physiology >CRITICAL ILLUMINATION AND FLICKER FREQUENCY, AS A FUNCTION OF FLASH DURATION: FOR THE SUNFISH
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CRITICAL ILLUMINATION AND FLICKER FREQUENCY, AS A FUNCTION OF FLASH DURATION: FOR THE SUNFISH

机译:临界照明和闪烁频率,作为闪光持续时间的功能:用于晒鱼

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From the relations between critical illumination in a flash ( Im ) and the flash frequency ( F ) for response of the sunfish to visual flicker when the proportion of light time to dark time ( tL/tD ) in a flicker cycle is varied at one temperature (21.5°) the following results are obtained:At values of tL/tD between 1/9 and 9/1 the F - log Im curves are progressively shifted toward higher intensities and lower Fmax. . Fmax. is a declining rectilinear function of the percentage of the flash cycle time occupied by light.The rod and the cone portions of the flicker curve are not shifted to the same extent.The cone portion and the rod region of the curve are each well described by a probability integral. In terms of F as 100 F/Fmax. the standard deviation of the underlying frequency distribution of elemental contributions, summed to produce the effect proportional to F , is independent of tL/tD .The magnitude of log Im at the inflection point ( r '), however, increases rectilinearly with the percentage light time in the cycle.The proportionality between Im and σ I I 1 is independent of tL/tD .These effects are interpreted as consequences of the fact that the number of elements of excitation available for discrimination of flicker is increased by increasing the dark interval in a flash cycle. Decreasing the dark interval has therefore the same kind of effect as reducing the visual area, and not that produced by decreasing the temperature.
机译:从闪光灯的临界照度(Im)和闪光频率(F)之间的关系可以看出,当在一个温度下闪烁周期中亮时间与暗时间的比例(tL / tD)改变时,太阳鱼对视觉闪烁的反应。 (21.5°)得到以下结果:在tL / tD值介于1/9和9/1之间时,F-log Im曲线逐渐向较高的强度和较低的Fmax偏移。 。最大功率是光线所占闪光周期时间百分比的递减线性函数,闪烁曲线的杆和圆锥部分的移动程度不同,曲线的圆锥部分和杆区域分别用概率积分。以F表示为100 F / Fmax。元素贡献的潜在频率分布的标准偏差总和产生与F成正比的结果,与tL / tD无关。在拐点(r')处的log Im幅度随光百分比线性增加Im和σII 1之间的比例与tL / tD无关,这些影响被解释为以下事实的结果:可通过增加暗周期来增加可用于识别闪烁的激发元素的数量闪光周期。因此,减小暗间隔与减小视觉区域具有相同的效果,而不是通过降低温度产生的效果。

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