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单次电刺激海马足以损害人类的情景记忆。

Single pulse electrical stimulation of the hippocampus is sufficient to impair human episodic memory.

机构信息

Department of Clinical Neuroscience, King's College London, Institute of Psychiatry, London, UK.

出版信息

Neuroscience. 2010 Oct 13;170(2):623-32. doi: 10.1016/j.neuroscience.2010.06.042. Epub 2010 Jul 17.

Abstract

We have used the single pulse electrical stimulation (SPES) technique to investigate whether more localized stimulation of the hippocampus can affect human episodic memory. A recognition memory test including words, object drawings, abstract drawings and unfamiliar faces was performed without stimulation (baseline) or synchronized with single 1 ms electrical pulses applied to the left, right or both hippocampi in 12 epileptic patients investigated with bilateral depth electrodes. No differences were found in memory performance between baseline and unilateral stimulation, either in the total score or in material-specific scores. In contrast, bilateral stimulation was associated with a pronounced decrease in the median of total memory scores (57%), and of material-specific sub-scores for words (38%), geometrical drawings (81%) and faces (100%). Additional study of stimulation at presentation of stimuli (encoding) versus the recognition memory (retrieval) test phase, showed reduction in memory only at encoding. The results provide causal evidence that the hippocampi are necessary for supporting episodic memory. The induction of memory deficits by bilateral stimulation with parameters that do not induce effects when applied unilaterally suggests that recognition memory can be processed independently by the hippocampus on either hemisphere.

摘要

我们使用单次电刺激(SPES)技术来研究更局部的海马刺激是否会影响人类的情景记忆。在 12 名接受双侧深部电极研究的癫痫患者中,在没有刺激(基线)或与施加到左、右或双侧海马的单个 1 毫秒电脉冲同步的情况下,进行了包括单词、物体图、抽象图和不熟悉面孔的识别记忆测试。在总分数或特定材料分数方面,基线和单侧刺激之间的记忆表现没有差异。相比之下,双侧刺激与总记忆分数中位数(57%)以及单词(38%)、几何图形(81%)和面孔(100%)特定材料分数的显著降低相关。对刺激呈现(编码)与识别记忆(检索)测试阶段的刺激进行的进一步研究表明,仅在编码时记忆才会减少。这些结果提供了因果证据,表明海马体对于支持情景记忆是必要的。双侧刺激以不会引起单侧刺激效果的参数诱导记忆缺陷表明,识别记忆可以由任一半球的海马体独立处理。

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