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Fast and slow errors: Logistic regression to identify patterns in accuracy–response time relationships

机译:快速和慢速错误:逻辑回归以识别准确性-响应时间关系中的模式

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摘要

Understanding error and response time patterns is essential for making inferences in several domains of cognitive psychology. Crucial insights on cognitive performance and typical behavioral patterns are disclosed by using distributional analyses such as conditional accuracy functions (CAFs) instead of mean statistics. Several common behavioral error patterns revealed by CAFs are frequently described in the literature: response capture (associated with relatively fast errors), time pressure or urgency paradigms (slow errors), or cue-induced speed–accuracy trade-off (evenly distributed errors). Unfortunately, the standard way of computing CAFs is problematic, because accuracy is averaged in RT bins. Here we present a novel way of analyzing accuracy–RT relationships on the basis of nonlinear logistic regression, to handle these problematic aspects of RT binning. First we evaluate the parametric robustness of the logistic regression CAF through parameter recovery. Second, we apply the function to three existing data sets showing that specific parametric changes in the logistic regression CAF can consistently describe common behavioral patterns (such as response capture, time pressure, and speed–accuracy trade-off). Finally, we discuss potential modifications for future research.
机译:了解错误和响应时间模式对于在认知心理学的多个领域进行推理至关重要。通过使用分布分析(例如条件准确性函数(CAF))代替均值统计,可以揭示对认知表现和典型行为模式的重要见解。 CAF揭示的几种常见的行为错误模式在文献中经常被描述:响应捕获(与相对较快的错误相关),时间压力或紧迫性范式(缓慢的错误)或提示导致的速度-准确性的权衡(均匀分布的错误) 。不幸的是,计算CAF的标准方法存在问题,因为准确度是在RT仓中平均的。在这里,我们提出了一种基于非线性逻辑回归分析准确性-RT关系的新颖方法,以处理RT分档的这些问题。首先,我们通过参数恢复来评估逻辑回归CAF的参数鲁棒性。其次,我们将该函数应用于三个现有数据集,这表明逻辑回归CAF中的特定参数更改可以一致地描述常见的行为模式(例如响应捕获,时间压力和速度-精度权衡)。最后,我们讨论了潜在的修改,以供将来研究。

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