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Towards a Process Model of Sustained Attention Tests

机译:建立持续注意力测试的过程模型

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摘要

Taking up new approaches and calls for experimental test validation, in the present study we propose and validate a process model of sustained attention tests. Four sub-components were postulated: the perception of an item, a simple mental operation to solve the item, a motor reaction, and the shift to the next item. In two studies, several cognitive tasks and modified versions of the d2-R test of sustained attention were applied in order to determine performance in the proposed sub-components. Their contribution for the prediction of performance in sustained attention tests and tests of higher cognitive abilities was assessed. The sub-components of the process model explained a large amount of variance in sustained attention tests, namely 55–74%. More specifically, perceptual and mental operation speed were the strongest predictors, while there was a trend towards a small influence of motor speed on test performance. The measures of item shifting showed low reliabilities and did not predict test scores. In terms of discriminant validity, results of Study 1 indicated that the postulated sub-components were insufficient to explain a large amount of variance in working memory span tasks, in Study 2 the same was demonstrated for reasoning tasks. Altogether, the present study is the first to disentangle sub-components in sustained attention tests and to determine their role for test performance.
机译:采取新的方法并要求进行实验测试验证,在本研究中,我们提出并验证了持续注意力测试的过程模型。假定四个子部分:对一个项目的感知,一个简单的解决该项目的心理操作,运动反应以及转移到下一个项目。在两项研究中,为了确定拟议的子组件的性能,应用了一些认知任务和持续关注的d2-R测试的修改版本。评估了他们对持续注意力测验和更高认知能力测验中的表现预测的贡献。过程模型的子组件解释了持续注意力测试中的大量差异,即55-74%。更具体地说,知觉和心理操作速度是最强的预测指标,而电动机速度对测试性能的影响趋势很小。项目转移的度量显示出较低的可靠性,并且无法预测测试分数。就判别效度而言,研究1的结果表明,假定的子组件不足以解释工作记忆跨度任务中的大量差异,研究2中的推理任务也得到了证明。总而言之,本研究是第一个在持续注意力测试中分解子组件并确定其对测试性能的作用的研究。

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