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以被试者自己的名字作为MMN设计中的一种新异刺激:一项ERP与PET相结合的研究。

Subject's own name as a novel in a MMN design: a combined ERP and PET study.

作者信息

Holeckova Irena, Fischer Catherine, Morlet Dominique, Delpuech Claude, Costes Nicolas, Mauguière François

机构信息

Hospices Civils de Lyon, Neurological Hospital, Department of Clinical Neurophysiology, Lyon, France.

出版信息

Brain Res. 2008 Jan 16;1189:152-65. doi: 10.1016/j.brainres.2007.10.091. Epub 2007 Nov 12.

Abstract

With a view to elaborating a clinical tool to assess cognitive functions in brain-damaged patients, we had previously displayed characteristic patterns of ERPs (32 electrodes) in awake healthy persons in response to their own name (SON) presented as a novel in a passive oddball paradigm. In the present combined ERP and PET study, in an attempt to identify brain correlates of duration MMN and response to SON uttered by a familiar (FV) or an unknown voice (NFV), we used a block design protocol as close as possible to the aforementioned SON protocol. ERP data showed robust duration MMN and novelty P3 in response to SON similar to our previous results. The PET technique did not allow true MMN generators to be disclosed, but blocks with duration deviants elicited an increase of activation in the right temporal pole as compared with the control condition with no deviants, supporting the hypothesis of right hemispheric dominance in early sound discrimination. For SON contrasts, robust cerebral blood flow activation present over temporal, frontal and parietal cortices, in the hippocampus and in the precuneus could be associated with speech, novelty and self-recognition processing. Familiar and unfamiliar voices activated the prefrontal cortex differently, suggesting different retrieval processes, although corresponding ERP responses could not be differentiated.

摘要

为了研发一种评估脑损伤患者认知功能的临床工具,我们之前在清醒健康个体中采用被动奇数球范式,将其自己的名字(SON)作为新异刺激呈现,展示了32电极记录的事件相关电位(ERP)特征模式。在当前这项ERP与正电子发射断层扫描(PET)的联合研究中,为了确定与持续时间失匹配负波(MMN)以及熟悉声音(FV)或陌生声音(NFV)说出的自己名字的反应相关的脑区,我们采用了一种尽可能接近上述SON实验方案的组块设计方案。ERP数据显示,对SON的反应出现了明显的持续时间MMN和新异P3,与我们之前的结果相似。PET技术无法揭示真正的MMN产生源,但与无偏差的对照条件相比,包含持续时间偏差的组块在右侧颞极引发激活增加,支持早期声音辨别中右半球优势的假说。对于SON对比,颞叶、额叶和顶叶皮质、海马体和楔前叶出现的强烈脑血流激活可能与言语、新异性和自我识别加工有关。熟悉和陌生声音对前额叶皮质的激活方式不同,提示存在不同的检索过程,尽管相应的ERP反应无法区分。

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