Hou Fang, Zhao Yukai, Lesmes Luis Andres, Bex Peter, Yu Deyue, Lu Zhong-Lin
School of Ophthalmology & Optometry and Eye Hospital, Wenzhou Medical University, Wenzhou, Zhejiang, China.
Center for Cognitive and Brain Sciences, Center for Cognitive and Behavioral Brain Imaging, and Department of Psychology, The Ohio State University, Columbus, OH, USA.
J Vis. 2018 Sep 4;18(9):6. doi: 10.1167/18.9.6.
Reading is a fundamental skill that can be significantly affected by visual disabilities. Reading performance, which typically is measured as reading speed with a reading chart, is a key endpoint for quantifying normal or abnormal vision. Despite its importance for clinical vision, existing reading tests for vision are time consuming and difficult to administer. Here, we propose a Bayesian adaptive method, the qReading method, for automated assessment of the reading speed versus print size function. We implemented the qReading method with a word/nonword lexical decision task and validated the method with computer simulations and a psychophysical experiment. Computer simulations showed that both the interrun standard deviation and intrarun half width of the 68.2% credible interval of the estimated reading speeds from the qReading method were less than 0.1 log10 units after 150 trials, with a bias of 0.05 log10 units. In the psychophysical experiment, reading functions measured by the qReading and Psi methods (Kontsevich & Tyler, 1999) in a word/nonword lexical decision task were compared. The estimated reading functions obtained with the qReading and Psi methods were highly correlated (r = 0.966 ± 0.004, p < 0.01). The precision of the qReading method with 225 trials was comparable to that of the Psi method with 450 trials. We conclude that the qReading method can precisely and accurately assess the reading function in much reduced time, with great promise in both basic research and clinical applications.
阅读是一项基本技能,会受到视力障碍的显著影响。阅读表现通常通过阅读图表测量阅读速度来衡量,是量化正常或异常视力的关键指标。尽管其对临床视力很重要,但现有的视力阅读测试耗时且难以实施。在此,我们提出一种贝叶斯自适应方法——qReading方法,用于自动评估阅读速度与印刷字体大小的函数关系。我们通过单词/非单词词汇判断任务实现了qReading方法,并通过计算机模拟和心理物理学实验对该方法进行了验证。计算机模拟表明,经过150次试验后,qReading方法估计阅读速度的68.2%可信区间的每次运行间标准差和每次运行内半宽度均小于0.1 log10单位,偏差为0.05 log10单位。在心理物理学实验中,比较了在单词/非单词词汇判断任务中用qReading方法和Psi方法(Kontsevich & Tyler,1999)测量的阅读函数。用qReading方法和Psi方法获得的估计阅读函数高度相关(r = 0.966 ± 0.004,p < 0.01)。225次试验的qReading方法的精度与450次试验的Psi方法相当。我们得出结论,qReading方法能够在大幅减少的时间内精确且准确地评估阅读函数,在基础研究和临床应用中都极具前景。