Division of Behavioral Neurology and Cognitive Neuroscience, Department of Neurology, University of Iowa College of Medicine, 200 Hawkins Dr, Iowa City, Iowa 52242, USA.
Hippocampus. 2012 Jul;22(7):1577-88. doi: 10.1002/hipo.21000. Epub 2011 Dec 19.
The hippocampus is necessary for the normal formation of enduring declarative memories, but its role in cognitive processes spanning short intervals is less well understood. Within the last decade, several reports have described modest behavioral deficits in medial temporal lobe (MTL)-lesion patients when they perform tasks that do not seem likely to rely on enduring memory. An intriguing but sparsely-tested implication of such results is that the MTL is involved in the online representation of information, possibly of an associative/relational nature, irrespective of delay. We administered several tests that simultaneously presented all information necessary for accurate responses to a group of MTL-lesion patients with severe declarative memory deficits but otherwise normal cognition, and to matched brain-damaged and healthy comparison participants. MTL-lesion patients performed less well than either comparison group in the Hooper Visual Organization Test, and several patients performed outside the normal range on the Overlapping Figures Test. A novel follow-up borrowing characteristics of the Overlapping Figures Test revealed impaired identification of novel items by MTL-lesion patients when target items were obscured by distracters, and two additional novel tests of fragmented object identification further implicated the hippocampus/MTL in the integration of information across very brief intervals. These findings suggest that MTL structures including the hippocampus contribute similarly to cognition irrespective of timescale.
海马体对于正常形成持久的陈述性记忆是必要的,但它在跨越短时间间隔的认知过程中的作用还不太清楚。在过去的十年中,有几项报告描述了内侧颞叶(MTL)损伤患者在执行似乎不太依赖于持久记忆的任务时出现轻微的行为缺陷。这些结果一个有趣但尚未得到充分验证的含义是,MTL 参与了信息的在线表示,可能具有联想/关系性质,而与延迟无关。我们对一组严重陈述性记忆缺陷但认知正常的 MTL 损伤患者以及匹配的脑损伤和健康对照组进行了几项测试,这些测试同时呈现了准确回答所需的所有信息。MTL 损伤患者在 Hooper 视觉组织测试中的表现不如任何对照组,并且有几位患者在重叠图形测试中的表现超出了正常范围。一项新颖的后续测试借鉴了重叠图形测试的特点,发现 MTL 损伤患者在目标物体被干扰物遮挡时,对新物体的识别能力受损,另外两项关于碎片化物体识别的新测试进一步表明,海马体/MTL 参与了非常短暂的信息整合。这些发现表明,包括海马体在内的 MTL 结构在认知过程中同样起到作用,而与时间尺度无关。