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How realistic are painted lightnings? Quantitative comparison of the morphology of painted and real lightnings: a psychophysical approach

机译:绘出的闪电有多现实?绘画和真实闪电形态的定量比较:一种心理物理方法

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摘要

Inspired by the pioneer work of the nineteenth century photographer, William Nicholson Jennings, we studied quantitatively how realistic painted lightnings are. In order to answer this question, we examined 100 paintings and 400 photographs of lightnings. We used our software package to process and evaluate the morphology of lightnings. Three morphological parameters of the main lightning branch were analysed: (i) number of branches Nb, (ii) relative length r, and (iii) number of local maxima (peaks) Np of the turning angle distribution. We concluded: (i) Painted lightnings differ from real ones in Nb and Np. (ii) The r-values of painted and real lightnings vary in the same range. (iii) 67 and 22% of the studied painted and real lightnings were non-bifurcating (Nb = 1, meaning only the main branch), the maximum of Nb of painted and real lightnings is 11 and 51, respectively, and painted bifurcating lightnings possess mostly 2–4 branches, while real lightnings have mostly 2–10 branches. To understand these findings, we performed two psychophysical experiments with 10 test persons, whose task was to guess Nb on photographs of real lightnings which were flashed for short time periods Δt = 0.5, 0.75 and 1 s (characteristic to lightnings) on a monitor. We obtained that (i) test persons can estimate the number of lightning branches quite correctly if Nb ≤ 11. (ii) If Nb > 11, its value is strongly underestimated with exponentially increasing difference between the real and estimated numbers. (iii) The estimation is independent of the flashing period Δt of lightning photos/pictures. (iv) The estimation is more accurate, if skeletonized lightning pictures are flashed, rather than real lightning photos. These findings explain why artists usually illustrate lightnings with branches not larger than 11.
机译:受19世纪摄影师William Nicholson Jennings的先锋作品的启发,我们定量研究了逼真的彩绘闪电。为了回答这个问题,我们检查了100幅绘画和400张闪电照片。我们使用软件包来处理和评估闪电的形态。分析了主要闪电分支的三个形态参数:(i)分支数Nb,(ii)相对长度r,以及(iii)转向角分布的局部最大值(峰)Np。我们得出以下结论:(i)Nb和Np中的实雷与实雷不同。 (ii)所绘雷电和真实雷电的r值在同一范围内变化。 (iii)研究的粉刷和真实雷电中有67%和22%是非分叉的(Nb = 1,仅表示主分支),粉刷和真实雷电的Nb最大值分别为11和51,粉刷成双叉的雷电拥有大部分2–4个分支,而真正的闪电则主要具有2–10个分支。为了理解这些发现,我们对10名测试人员进行了两次心理物理实验,他们的任务是在监视器上以短时间段Δtreal =,0.5、0.75和1 s(闪电的特征)闪烁的真实闪电照片中猜测Nb。我们得出:(i)如果Nb≤11,测试人员可以相当准确地估计雷电分支的数量;(ii)如果Nb> 11,则其值被大大低估了,真实数与估计数之间的差呈指数增长。 (iii)估计与闪电照片/图片的闪烁周期Δt无关。 (iv)如果闪烁有骨架的闪电图片而不是真实的闪电照片,则估算更为准确。这些发现解释了为什么艺术家通常用不大于11的分支来说明闪电。

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