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Priming and statistical learning in right brain damaged patients

机译:右脑受损患者的启动和统计学习

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We investigated how right hemisphere lesions affected location priming and statistical learning in four groups of participants: young controls, older controls, and right brain damaged patients with or without spatial neglect. Using a version of the Maljkovic and Nakayama's (1994) priming task, but with all the targets presented at the mid-line, we biased the transition probability for targets to repeat their spatial location. The decrease in response time with spatial repetition allowed us to quantify priming, and the modulation of priming strength as a function of repeat probability allowed us to assess for statistical learning. Contrary to the healthy controls, right brain damage decreased (but did not abolish) spatial priming. Right brain damaged patients did not modulate the magnitude of the spatial priming effect with variation in repeat frequency, as did the control groups. We conclude that damage to the right hemisphere impairs spatial priming and that priming impairment co-exists with, and may contribute to an inability to learn environmental statistical regularities. Such deficits could contribute to functional deficits and a poorer response to rehabilitation.
机译:我们调查了四组参与者中的右半球病变如何影响位置启动和统计学习:年轻的对照组,年长的对照组以及右脑受损的患者(无论是否存在空间忽视)。使用Maljkovic和Nakayama(1994)的启动任务的一个版本,但在中线显示所有目标时,我们对目标重复其空间位置的过渡概率有偏见。随着空间重复的响应时间的减少,我们可以量化启动,而启动强度作为重复概率的函数的调制,使我们可以评估统计学习。与健康对照组相反,右脑损伤减少(但并未消除)空间刺激。右脑受损患者没有像对照组那样通过重复频率的变化来调节空间启动效应的大小。我们得出的结论是,对右半球的损害会损害空间启动功能,并且启动功能损害会与之共存,并且可能导致无法学习环境统计规律。这种缺陷可能导致功能缺陷,对康复的反应也较差。

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