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Individual Differences in Processing Speed and Working Memory Speed as Assessed with the Sternberg Memory Scanning Task

机译:Sternberg内存扫描任务评估的处理速度和工作内存速度的个体差异

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The Sternberg Memory Scanning (SMS) task provides a measure of processing speed (PS) and working memory retrieval speed (WMS). In this task, participants are presented with sets of stimuli that vary in size. After a delay, one item is presented, and participants indicate whether or not the item was part of the set. Performance is assessed by speed and accuracy for both the positive (item is part of the set) and the negative trials (items is not part of the set). To examine the causes of variation in PS and WMS, 623 adult twins and their siblings completed the SMS task. A non-linear growth curve (nLGC) model best described the increase in reaction time with increasing set size. Genetic analyses showed that WMS (modeled as the Slope in the nLGC model) has a relatively small variance which is not due to genetic variation while PS (modeled as the Intercept in the nLGC model) showed large individual differences, part of which could be attributed to additive genetic factors. Heritability was 38% for positive and 32% for negative trials. Additional multivariate analyses showed that the genetic effects on PS for positive and negative trials were completely shared. We conclude that genetic influences on working memory performance are more likely to act upon basic processing speed and (pre)motoric processes than on the speed with which an item is retrieved from short term memory.
机译:Sternberg内存扫描(SMS)任务提供了处理速度(PS)和工作内存检索速度(WMS)的度量。在这项任务中,将为参与者提供大小不等的一组刺激。延迟后,将显示一个项目,并且参与者指示该项目是否是集合的一部分。通过积极(项目是集合的一部分)和否定测试(项目不是集合的一部分)的速度和准确性来评估性能。为了检查PS和WMS变异的原因,有623名成年双胞胎及其兄弟姐妹完成了SMS任务。非线性增长曲线(nLGC)模型最能描述反应时间随设定尺寸的增加而增加。遗传分析表明,WMS(在nLGC模型中建模为“坡度”)具有相对较小的方差,这不是遗传变异造成的,而PS(在nLGC模型中建模为“截距”)则存在较大的个体差异,部分原因可以归因于增加遗传因素。阳性试验的遗传率为38%,阴性试验的为32%。其他多变量分析表明,阳性和阴性试验对PS的遗传效应完全相同。我们得出结论,对工作记忆性能的遗传影响更可能对基本加工速度和(运动)过程产生影响,而不是对从短期记忆中检索物品的速度产生影响。

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