Human Systems Engineering Department, Arizona State University - Polytechnic, SANCA 7271 E Sonoran Arroyo Mall, Mesa, AZ, 85212, USA.
Cogn Res Princ Implic. 2023 Oct 20;8(1):65. doi: 10.1186/s41235-023-00512-y.
Previous work on indices of error-monitoring strongly supports that errors are distracting and can deplete attentional resources. In this study, we use an ecologically valid multitasking paradigm to test post-error behavior. It was predicted that after failing an initial task, a subject re-presented with that task in conflict with another competing simultaneous task, would more likely miss their response opportunity for the competing task and stay 'tunneled' on the initially errored task. Additionally, we predicted that an error's effect on attention would dissipate after several seconds, making error cascades less likely when subsequent conflict tasks are delayed. A multi-attribute task battery was used to present tasks and collect measures of both post-error and post-correct performance. Results supported both predictions: post-error accuracy on the competing task was lower compared to post-correct accuracy, and error-proportions were higher at shorter delays, dissipating over time. An exploratory analysis also demonstrated that following errors (as opposed to post-correct trials), participants clicked more on the task panel of the initial error regardless of delay; this continued task-engagement provides preliminary support for errors leading to a cognitive tunneling effect.
先前关于错误监测指标的研究工作强烈支持错误具有分散注意力的作用,并可能耗尽注意力资源。在这项研究中,我们使用了一种生态有效的多重任务范式来测试错误后行为。我们预测,在最初的任务失败后,如果再次呈现与另一个同时竞争的任务相冲突的任务,主体更有可能错过对竞争任务的响应机会,并保持对最初出错任务的“专注”。此外,我们还预测,错误对注意力的影响会在几秒钟后消散,从而减少后续冲突任务延迟时错误级联的可能性。使用多属性任务电池来呈现任务并收集错误后和正确后表现的测量值。结果支持了这两个预测:与正确后相比,竞争任务的错误后准确性较低,并且在较短的延迟下错误比例更高,随着时间的推移而消散。一项探索性分析还表明,与正确后试验相比(而非正确后试验),参与者在无论延迟多长时间的情况下,都会更多地点击初始错误的任务面板;这种持续的任务参与为错误导致认知隧道效应提供了初步支持。