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工作记忆负荷和条件刺激-非条件刺激间隔对延迟性眨眼条件反射的影响。

Effects of working memory load and CS-US intervals on delay eyeblink conditioning.

作者信息

Etemadi Leila, Jirenhed Dan-Anders, Rasmussen Anders

机构信息

Neural Basis of Sensorimotor Control, Department of Experimental Medical Science, Lund, Sweden.

Associative Learning, Department of Experimental Medical Science, Lund, Sweden.

出版信息

NPJ Sci Learn. 2023 May 20;8(1):16. doi: 10.1038/s41539-023-00167-w.

Abstract

Eyeblink conditioning is used in many species to study motor learning and make inferences about cerebellar function. However, the discrepancies in performance between humans and other species combined with evidence that volition and awareness can modulate learning suggest that eyeblink conditioning is not merely a passive form of learning that relies on only the cerebellum. Here we explored two ways to reduce the influence of volition and awareness on eyeblink conditioning: (1) using a short interstimulus interval, and (2) having participants do working memory tasks during the conditioning. Our results show that participants trained with short interstimulus intervals (150 ms and 250 ms) produce very few conditioned responses after 100 trials. Participants trained with a longer interstimulus interval (500 ms) who simultaneously did working memory tasks produced fewer conditioned responses than participants who watched a movie during the training. Our results suggest that having participants perform working memory tasks during eyeblink conditioning can be a viable strategy for studying cerebellar learning that is absent of influences from awareness and volition. This could enhance the comparability of the results obtained in human studies with those in animal models.

摘要

眨眼条件反射在许多物种中被用于研究运动学习并推断小脑功能。然而,人类与其他物种在表现上的差异,以及意志和意识可调节学习的证据表明,眨眼条件反射并非仅仅是一种仅依赖小脑的被动学习形式。在此,我们探索了两种减少意志和意识对眨眼条件反射影响的方法:(1)使用短刺激间隔,以及(2)让参与者在条件反射过程中进行工作记忆任务。我们的结果表明,接受短刺激间隔(150毫秒和250毫秒)训练的参与者在100次试验后产生的条件反应非常少。接受较长刺激间隔(500毫秒)训练且同时进行工作记忆任务的参与者比在训练期间观看电影的参与者产生的条件反应更少。我们的结果表明,让参与者在眨眼条件反射过程中执行工作记忆任务可能是一种可行的策略,用于研究不受意识和意志影响的小脑学习。这可以提高人类研究结果与动物模型研究结果的可比性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6645/10199915/52e9c53e754d/41539_2023_167_Fig1_HTML.jpg

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