Assessing optimal colour and illumination to facilitate reading: an analysis of print size.

IF 2.4
Elliott Morrice, Caitlin Murphy, Vanessa Soldano, Cynthia Addona, Walter Wittich, Aaron P Johnson
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引用次数: 1

Abstract

Purpose: This study examined how optimal colour/illumination conditions and the efficacy of the iPad, LuxIQ and Smart Bulb varied as a function of print size in younger, older and visually impaired adults.

Methods: Participants with visual impairments and simulated low vision (SLV) read the MNRead using the iPad, LuxIQ and Smart Bulb.

Results: In the impairment condition at 1.20 logMAR, the iPad (M = 9.49, 95% CI [3.18, 19.42]) and LuxIQ (M = 15.95, 95% CI [9.54, 24.86]) improved the reading speeds. At 0.80 logMAR (SLV), all devices improved reading speeds of older adults (iPad (M = 28.70, 95% CI [14.65, 42.51]); LuxIQ (M = 49.63, 95% CI [30.04, 69.68]); Smart Bulb (M = 23.11, 95% CI [3.33, 42.11])), but in younger adults only the LuxIQ (M = 13.04, 95% CI [3.21, 21.27]) did so. In the impairment condition, the iPad (M = 5.54, 95% CI [0.31, 12.13]) and LuxIQ (M = 13.90, 95% CI [7.88, 23.49]) improved reading speeds. In the SLV condition, age was a significant predictor of reading speed at 1.20 logMAR (F3,164  = 10.74, p < 0.001, Adj. R2  = 0.16). At 0.80 logMAR, age and luminance, but not colour, were significant predictors (F3,164  = 52.52, p < 0.001, Adj. R2  = 0.49). In the impairment condition, both age and lux were significant predictors of reading speed at 1.20 (F3,85  = 7.14, p < 0.001, Adj. R2  = 0.20) and 0.80 logMAR (F3,85  = 7.97, p < 0.001, Adj. R2  = 0.22), but colour was not.

Conclusions: Light source effectiveness and optimal colour/illumination vary as a function of print size. It appears that print size is the most important factor for improving reading speed. As print size decreases, luminance becomes crucial, and only at the smallest print sizes does the effect of colour become useful.

评估适合阅读的最佳颜色和照明:对印刷尺寸的分析。
目的:本研究考察了iPad、LuxIQ和智能灯泡的最佳颜色/照明条件和效果如何随打印尺寸在年轻人、老年人和视力受损的成年人中发生变化。方法:视觉障碍和模拟低视力(SLV)的参与者使用iPad、LuxIQ和智能灯泡阅读MNRead。结果:在1.20 logMAR时,iPad (M = 9.49, 95% CI[3.18, 19.42])和lucxiq (M = 15.95, 95% CI[9.54, 24.86])提高了阅读速度。在0.80 logMAR (SLV)时,所有设备都提高了老年人的阅读速度(iPad (M = 28.70, 95% CI [14.65, 42.51]);LuxIQ (M = 49.63, 95% CI [30.04, 69.68]);智能灯泡(M = 23.11, 95% CI[3.33, 42.11])),但在年轻人中只有LuxIQ (M = 13.04, 95% CI[3.21, 21.27])有这种效果。在受损条件下,iPad (M = 5.54, 95% CI[0.31, 12.13])和lucxiq (M = 13.90, 95% CI[7.88, 23.49])提高了阅读速度。在SLV条件下,年龄是1.20 logMAR的显著预测因子(f3164 = 10.74, p 2 = 0.16)。在0.80 logMAR时,年龄和亮度,而不是颜色,是显著的预测因子(f3164 = 52.52, p < 0.001, Adj. R2 = 0.49)。在阅读障碍条件下,年龄和lux均为阅读速度的显著预测因子,分别为1.20 (F3,85 = 7.14, p 2 = 0.20)和0.80 logMAR (F3,85 = 7.97, p 2 = 0.22),而颜色无显著预测因子。结论:光源有效性和最佳颜色/照度随打印尺寸的变化而变化。看来,印刷尺寸是提高阅读速度的最重要因素。随着打印尺寸的减小,亮度变得至关重要,只有在最小的打印尺寸下,颜色的效果才有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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