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嗅周皮质消融对构型学习和配对联想学习的损害程度相同。

Perirhinal cortex ablation impairs configural learning and paired-associate learning equally.

作者信息

Buckley M J, Gaffan D

机构信息

Department of Experimental Psychology, Oxford University, UK.

出版信息

Neuropsychologia. 1998 Jun;36(6):535-46. doi: 10.1016/s0028-3932(97)00120-6.

Abstract

Combined damage to the perirhinal and entorhinal cortex has been implicated in the formation of stimulus-stimulus associative memories. We show in this article that relative to three normal controls three cynomolgus monkeys with ablations restricted to the perirhinal cortex were impaired on a visual paired associate learning task in which subjects had to learn which of two visual stimuli were associated with a cue stimulus. The subjects with perirhinal cortex ablations also showed an impairment of a similar magnitude on a visual configural learning task in which they had to learn which of two configurations of visual stimuli were associated with food-reward. The stimuli in both tasks were comprised of alphanumeric characters presented upon a touch-screen. Both groups made fewer errors on the configural learning task than on the paired associate learning task. We suggest that performance on both tasks relies critically on the perirhinal cortex due to the specialization of the perirhinal cortex in processing knowledge about objects. We argue that the specializations of this system and of other memory systems such as the hippocampal-fornix spatial/episodic memory system, are conferred by the specialization of their anatomical connections to other structures. We reject the notion that there are specific memory processes such as the hippocampal based configural associative system that was proposed to be critical for configural associative learning.

摘要

嗅周皮质和内嗅皮质的联合损伤与刺激-刺激联想记忆的形成有关。我们在本文中表明,相对于三个正常对照,三只嗅周皮质被切除的食蟹猴在视觉配对联想学习任务中表现受损,在该任务中,受试者必须学习两个视觉刺激中的哪一个与提示刺激相关联。嗅周皮质被切除的受试者在视觉构型学习任务中也表现出类似程度的损伤,在该任务中,他们必须学习两种视觉刺激构型中的哪一种与食物奖励相关联。两个任务中的刺激均由触摸屏上呈现的字母数字字符组成。两组在构型学习任务上的错误都比在配对联想学习任务上少。我们认为,由于嗅周皮质在处理物体知识方面的特殊性,两个任务的表现都严重依赖于嗅周皮质。我们认为,该系统以及其他记忆系统(如海马-穹窿空间/情景记忆系统)的特殊性是由它们与其他结构的解剖连接的特殊性赋予的。我们反对存在特定记忆过程的观点,比如有人提出基于海马的构型联想系统对构型联想学习至关重要。

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