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视觉识别记忆的双重解剖-功能分离。

Visual recognition memory: a double anatomo-functional dissociation.

机构信息

Université de Toulouse, UPS, Centre de Recherche Cerveau et Cognition, France.

出版信息

Hippocampus. 2011 Sep;21(9):929-34. doi: 10.1002/hipo.20848. Epub 2010 Nov 3.

Abstract

There is an ongoing debate regarding the respective role of anterior subhippocampal structures and the hippocampus in recognition memory. Here, we report a double anatomo-functional dissociation observed in two brain-damaged patients, FRG and JMG. They both suffered from complete destruction of left MTL structures. In the right hemisphere however, FRG sustained extensive lesions to the hippocampus sparing anterior subhippocampal structures, while JMG suffered from the reversed pattern of lesion, i.e., extensive damage to anterior subhippocampal structures but preserved hippocampus. FRG was severely amnesic and failed all recall tasks involving visual material, but exhibited normal performance at a large battery of visual recognition memory tasks. JMG was not amnesic and showed the opposite pattern of performance. These results strongly support the view that right anterior subhippocampal structures are a critical relay for visual recognition memory in the human.

摘要

关于前海马结构和海马体在识别记忆中的各自作用,一直存在争议。在这里,我们报告了在两名脑损伤患者 FRG 和 JMG 中观察到的双重解剖-功能分离。他们的左 MTL 结构均完全受损。然而,在右半球,FRG 遭受了广泛的海马损伤,而前海马结构得以保留,而 JMG 则遭受了相反模式的损伤,即前海马结构广泛受损但海马体得以保留。FRG 严重健忘,无法完成所有涉及视觉材料的回忆任务,但在大量视觉识别记忆任务中表现正常。JMG 没有健忘症,表现出相反的模式。这些结果强烈支持这样一种观点,即右侧前海马结构是人类视觉识别记忆的关键中继站。

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