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Adjusting Behavioral Methods When Applying Nonlinear Dynamical Measures to Stimulus Rate

机译:将非线性动力措施应用于刺激率时调整行为方法

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摘要

A nonlinear dynamical perspective addresses an area of behavior that tends to be ignored: trial-to-trial variability under seemingly identical conditions. Data exhibiting sequence effects are excellent candidates for a nonlinear dynamical analysis, because of their dependence on previous trial events. When applying nonlinear dynamical tools to behavioral data, the assumptions underlying the tools may require changes in experimental methodology. In this paper, the assumptions of trial timing and their potential impact on nonlinear dynamical analysis are explored. This is done with the intent of initiating a discussion on the appropriate control of trial timing. To examine these issues, each participant's response times on simple two-choice tasks were treated as a time series and submitted along with two comparisons to two nonlinear dynamical measures. Two experimental variables, stimulus rate and stimulus-response mapping, were manipulated in order to examine the issue of controlling trial timing via stimulus rate. Significant differences between the observed and comparison time series were found for estimated dimensionalities(m). Differences in dimensionality(m) estimates were also found between the experimental variables. Of the two methods for controlling stimulus rate, response-stimulus-interval and inter-stimulus-interval, the latter is recommended when applying nonlinear dynamical measures.
机译:非线性动力学视角解决了一个容易被忽视的行为领域:在看似相同的条件下,试验间的可变性。表现出序列效应的数据是非线性动力学分析的极佳候选者,因为它们依赖于先前的试验事件。当将非线性动力学工具应用于行为数据时,这些工具所基于的假设可能需要改变实验方法。本文探讨了试验时间的假设及其对非线性动力学分析的潜在影响。这样做是为了开始讨论适当控制审判时间。为了检查这些问题,每个参与者对简单的两选任务的响应时间都被视为一个时间序列,并与两个非线性动力学测度的两个比较一起提交。为了检验通过刺激率控制试验时间的问题,操纵了两个实验变量,刺激率和刺激反应图。发现观测时间序列与比较时间序列之间的显着差异是估计的维数(m)。实验变量之间也发现了维数(m)估计值的差异。在控制刺激率的两种方法中,响应-刺激间隔和刺激间间隔,在应用非线性动力学措施时建议使用后者。

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