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在联想学习过程中的眼部测量可预测回忆的准确性。

Ocular measures during associative learning predict recall accuracy.

机构信息

Department of Psychology, Michigan State University, East Lansing, MI, USA; Institute for Quantitative Health Science and Engineering, Michigan State University, East Lansing, MI, USA.

Department of Psychology, Michigan State University, East Lansing, MI, USA.

出版信息

Int J Psychophysiol. 2021 Aug;166:103-115. doi: 10.1016/j.ijpsycho.2021.05.010. Epub 2021 May 27.

Abstract

The ability to form associations between stimuli and commit those associations to memory is a cornerstone of human cognition. Dopamine and noradrenaline are critical neuromodulators implicated in a range of cognitive functions, including learning and memory. Eye blink rate (EBR) and pupil diameter have been shown to index dopaminergic and noradrenergic activity. Here, we examined how these ocular measures relate to accuracy in a paired-associate learning task where participants (N = 73) learned consistent object-location associations over eight trials consisting of pre-trial fixation, encoding, delay, and retrieval epochs. In order to examine how within-subject changes and between-subject changes in ocular metrics related to accuracy, we mean centered individual metric values on each trial based on within-person and across-subject means for each epoch. Within-participant variation in EBR was positively related to accuracy in both encoding and delay epochs: faster EBR within the individual predicted better retrieval. Differences in EBR across participants was negatively related to accuracy in the encoding epoch and in early trials of the pre-trial fixation: faster EBR, relative to other subjects, predicted poorer retrieval. Visual scanning behavior in pre-trial fixation and delay epochs was also positively related to accuracy in early trials: more scanning predicted better retrieval. We found no relationship between pupil diameter and accuracy. These results provide novel evidence supporting the utility of ocular metrics in illuminating cognitive and neurobiological mechanisms of paired-associate learning.

摘要

形成刺激之间关联并将这些关联记忆的能力是人类认知的基石。多巴胺和去甲肾上腺素是涉及多种认知功能的关键神经调节剂,包括学习和记忆。眨眼率(EBR)和瞳孔直径已被证明可以反映多巴胺能和去甲肾上腺素能活动。在这里,我们研究了这些眼部测量指标如何与配对联想学习任务中的准确性相关,在该任务中,参与者(N=73)在包含预试固定、编码、延迟和检索阶段的八次试验中学习一致的物体-位置关联。为了研究眼动指标的个体内变化和个体间变化与准确性的关系,我们根据每个阶段的个体内和个体间平均值,对每个试验的个体眼动指标值进行了均值中心化。个体内 EBR 的变化与编码和延迟阶段的准确性呈正相关:个体内 EBR 越快,检索的准确性越高。参与者之间 EBR 的差异与编码阶段和预试固定的早期试验的准确性呈负相关:与其他参与者相比,EBR 越快,检索的准确性越低。预试固定和延迟阶段的视觉扫描行为也与早期试验的准确性呈正相关:扫描越多,检索的准确性越高。我们没有发现瞳孔直径与准确性之间的关系。这些结果为眼动指标在阐明配对联想学习的认知和神经生物学机制方面的实用性提供了新的证据。

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