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Modeling Aging Effects on Two-Choice Tasks: Response Signal and Response Time Data

机译:建模对两项选择任务的影响:响应信号和响应时间数据

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In the response signal paradigm, a test stimulus is presented. and then at one of a number of experimenter-determined times, I signal to respond is presented. Response signal, standard response time (RT). and accuracy data were collected from 19 college-age and 19 60- to 75-year-old participants in a numerosity discrimination task. The data were fit with 2 versions of the diffusion model. Response signal data were modeled by assuming I mixture of processes. those that have terminated before the signal and those that have not terminated: in the latter case, decisions are based on either partial information or guessing. The effects of aging on performance in the regular RT task were explained the same way in the models, with a 70- to 100-ms increase in the nondecision component of processing, more conservative decision criteria, and more variability across trials in drift and the nondecision component of processing, but little difference in drift rate (evidence). In the response signal task, the primary reason for a slower rise in the response signal functions for older participants was variability in the nondecision component of processing. Overall. the results were consistent with earlier fits of the diffusion model to the standard RT task for college-age participants and to the data from aging studies using this task in the standard RT procedure.
机译:在响应信号范式中,提供了一个测试刺激。然后在许多实验者确定的时间之一中,我将发出响应信号。响应信号,标准响应时间(RT)。并从19名大学年龄组和19名60至75岁年龄组参加了一项数字识别任务的参与者收集了准确度数据。数据符合2个版本的扩散模型。通过假设过程是I混合来对响应信号数据进行建模。在信号之前已经终止的信号和尚未终止的信号:在后一种情况下,决策基于部分信息或猜测。在模型中以相同的方式解释了老化对常规RT任务性能的影响,处理中的非决策部分增加了70到100毫秒,决策标准更加保守,并且在漂移和稳定性试验中差异更大。处理的不确定因素,但漂移率差异不大(证据)。在响应信号任务中,对于较年长的参与者,响应信号功能缓慢上升的主要原因是处理的不确定因素的变化。总体。结果与扩散模型与大学年龄参与者的标准RT任务的早期拟合以及在标准RT程序中使用该任务的老化研究的数据相吻合。

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