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The variations in visual threshold measurement

机译:视觉阈值测量的变化

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1. This paper presents a statistical analysis of the thresholds of test flashes viewed against zero, steady or transient backgrounds by peripheral vision. The method of threshold measurement is that of the Medical Research Council Report (Pirenne, Marriott & O'Doherty, 1957; Hartline & McDonald, 1943). The data are from the previous paper (Hallett, 1969b) and consist of k days' samples of n threshold measurements on an intensity scale of interval 0·087 log. The collection of a sample required 5-6 min and the samples were spread over a 3-month period.2. The analysis suggests that the nature of biological variations is that the `instantaneous' frequency-of-seeing curve can occupy a variety of positions, or levels, scattered about its typical position on the log. energy axis. Change of the position of the curve for a given threshold task is most obvious when one compares threshold measurements obtained on different days, but this is not true day-to-day variation; the same sorts of change occur on the same day if the viewing conditions (independent variables) are changed and are perhaps due to shifts in the observer's signaloise criterion K.3. Two important consequences of the analysis are (i) the errors of visual threshold functions are worse than one method of calculating error suggests and (ii) it is possible to eliminate part of the biological variations from a particular sort of frequency-of-seeing curve and thus obtain a better estimate of the instantaneous curve which is the physiological function of prime interest.4. Some possible causes of the biological variations are considered. The design of experiments is discussed. The method of the M.R.C. Report is to be recommended since it can be applied without prior assumptions about the value of the mean threshold or the nature of the errors.
机译:1.本文介绍了通过周边视觉在零,稳定或瞬态背景下观察到的测试闪光阈值的统计分析。阈值测量方法是医学研究委员会的报告(Pirenne,Marriott&O'Doherty,1957年; Hartline&McDonald,1943年)。数据来自以前的论文(Hallett,1969b),由k天的n个阈值测量样本组成,强度范围为0·087 log。收集样品需要5-6分钟,并将样品分散在3个月的时间内。2。分析表明,生物学变异的本质是“瞬时”的观测频率曲线可以占据围绕其在原木上典型位置的各种位置或水平。能量轴。当比较在不同日期获得的阈值测量值时,给定阈值任务的曲线位置变化最明显,但这并不是真实的日常变化;如果观看条件(独立变量)发生变化,并且可能是由于观察者信号/噪声标准K.3的变化,则在同一天发生相同类型的变化。该分析的两个重要结果是:(i)视觉阈值函数的误差比一种计算误差建议的方法差,并且(ii)可以从特定种类的观察频率曲线中消除部分生物学差异从而获得对瞬时曲线的更好估计,这是最重要的生理功能。4。考虑了生物变异的一些可能原因。讨论了实验设计。 M.R.C.的方法建议使用报告,因为无需事先假设均值阈值或误差性质即可应用报告。

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