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首页> 外文期刊>Archives of Clinical Neuropsychology >Spatial learning efficiency and error monitoring in normal aging: An investigation using a novel hidden maze learning test
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Spatial learning efficiency and error monitoring in normal aging: An investigation using a novel hidden maze learning test

机译:正常衰老中的空间学习效率和错误监控:使用新型隐藏迷宫学习测试的调查

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摘要

This study compared 19 older adults and 20 younger adults on the Groton Maze Learning Test? (GMLT), a novel computerized hidden maze learning test that assesses processing speed, spatial learning efficiency, and error monitoring. Convergent validity of this test was assessed by comparing GMLT scores to Paced Auditory Serial Addition Test (PASAT) and Tower of Toronto (TOT) scores. In the full sample, all GMLT measures correlated strongly with both PASAT and TOT scores (r's=0.53 to 0.73). GMLT measures most sensitive to detecting between-group differences were the Timed Chase Test (TCT), legal errors, and perseverative errors (Cohen's d's=3.81, 2.40, and 2.40, respectively). Scores on the visuomotor processing speed subtest of the GMLT attenuated the relationship between age group and maze efficiency index scores, but not perseverative and “rule-break” errors. These results suggest that normal aging is associated with impaired performance on a novel computerized measure of spatial learning efficiency and error monitoring, and that processing speed attenuates the relationship between age and spatial learning efficiency.
机译:这项研究比较了Groton迷宫学习测试?(GMLT)上的19位老年人和20位年轻人,GMLT是一种新型的计算机化隐藏迷宫学习测试,用于评估处理速度,空间学习效率和错误监控。通过比较GMLT得分与起搏听觉连续加法测验(PASAT)和多伦多塔(TOT)得分来评估该测试的收敛效度。在全部样本中,所有GMLT量度均与PASAT和TOT得分密切相关(r = 0.53至0.73)。 GMLT对检测组间差异最敏感的度量是定时大通检验(TCT),法律错误和持久性错误(分别为Cohen d's = 3.81、2.40和2.40)。 GMLT的视运动处理速度子测试得分降低了年龄组和迷宫效率指数得分之间的关​​系,但没有持久性和“违反规则”的错误。这些结果表明,正常的衰老与空间学习效率和错误监控的新型计算机测量方法上的性能受损有关,并且处理速度减弱了年龄与空间学习效率之间的关系。

著录项

  • 来源
    《Archives of Clinical Neuropsychology》 |2007年第2期|235-245|共11页
  • 作者单位

    Department of Psychology Clinical Division University of Connecticut Storrs CT USA;

    Centre de Neuroscience de la Cognition et Département de Psychologie Université du Québec à Montréal Montréal Québec Canada;

    Laboratoire cognition et comportement (FRE 2987) Université Paris V-CNRS France;

    Child Study Center Yale University School of Medicine New Haven CT USA;

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