【2h】

Counting every quantum

机译:计算每个量子

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摘要

1. Human subjects were asked to rate both blanks and very dim flashes of light under conditions of complete dark adaptation at 7° in the periphery. The ratings used were 0, 1, 2, 3, 4, 5, and 6.2. For one subject (B.S.) the distributions of ratings were approximately Poisson distributions. The data were consistent with each rating being the actual number of effective quantal absorptions plus the number of noise events. This subject was presumably able to count every rod signal (effective absorptions plus noise).3. For two other subjects, the data were consistent with the ratings being one less (L.F.) and two less (K.D.) than the number of effective absorptions plus noise. They were able to count every rod signal beginning with 2 and 3 respectively. A fourth subject's erratic data could not be fitted.4. The fraction of quanta incident at the cornea that resulted in a rod signal was estimated to be about 0·03 which is consistent with physical estimates of effective absorption for that retinal region.5. A simulated forced choice experiment leads to an absolute threshold about 0·40 log units below the normal yes-no absolute threshold. This and other results indicate that subjects can use the sensory information they receive even when only 1, 2 or 3 quanta are effectively absorbed, depending on the individual. Humans may be able to count every action potential or every discrete burst of action potentials in some critical neurone.
机译:1.要求人类受试者在周围完全7°暗适应的条件下对空白和非常暗的闪光灯进行评级。使用的等级是0、1、2、3、4、5和6.2。对于一个科目(BS),收视率分布近似为Poisson分布。数据与每个等级一致,即有效的定量吸收的实际数量加上噪声事件的数量。该受试者大概能够计数每个杆信号(有效吸收加噪声)。3。对于其他两个对象,数据与额定值相符,即有效吸收数加噪声值分别比L.F.和L.D.小2。他们能够计数分别以2和3开头的每个杆信号。无法拟合第四位受试者的不稳定数据4。入射角膜的导致杆信号的量子份额估计约为0·03,这与该视网膜区域有效吸收的物理估算值是一致的。5。模拟的强制选择实验导致绝对阈值比正常的“是-否”绝对阈值低约0·40 log个单位。该结果和其他结果表明,即使只有1、2或3个量子有效吸收(取决于个体),受试者也可以使用他们收到的感觉信息。人类可能能够计算出某些关键神经元中的每个动作电位或每个离散的动作电位爆发。

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