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失匹配负波由额叶和颞叶的双侧不对称偶极子源产生。

Mismatch negativity results from bilateral asymmetric dipole sources in the frontal and temporal lobes.

作者信息

Jemel Boutheina, Achenbach Christiane, Müller Bernhard W, Röpcke Bernd, Oades Robert D

机构信息

University Clinic for Child and Adolescent Psychiatry and Psychotherapy, Essen, Germany.

出版信息

Brain Topogr. 2002 Fall;15(1):13-27. doi: 10.1023/a:1019944805499.

Abstract

The event-related potential (ERP) reflecting auditory change detection (mismatch negativity, MMN) registers automatic selective processing of a deviant sound with respect to a working memory template resulting from a series of standard sounds. Controversy remains whether MMN can be generated in the frontal as well as the temporal cortex. Our aim was to see if frontal as well as temporal lobe dipoles could explain MMN recorded after pitch-deviants (Pd-MMN) and duration deviants (Dd-MMN). EEG recordings were taken from 32 sites in 14 healthy subjects during a passive 3-tone oddball presented during a simple visual discrimination and an active auditory discrimination condition. Both conditions were repeated after one month. The Pd-MMN was larger, peaked earlier and correlated better between sessions than the Dd-MMN. Two dipoles in the auditory cortex and two in the frontal lobe (left cingulate and right inferior frontal cortex) were found to be similarly placed for Pd- and Dd-MMN, and were well replicated on retest. This study confirms interactions between activity generated in the frontal and auditory temporal cortices in automatic attention-like processes that resemble initial brain imaging reports of unconscious visual change detection. The lack of interference between sessions shows that the situation is likely to be sensitive to treatment or illness effects on fronto-temporal interactions involving repeated measures.

摘要

反映听觉变化检测的事件相关电位(ERP,失匹配负波,MMN)记录了相对于由一系列标准声音形成的工作记忆模板,对偏差声音的自动选择性加工。MMN是否能在额叶以及颞叶皮层产生仍存在争议。我们的目的是探究额叶和颞叶偶极是否能解释音高偏差(Pd-MMN)和时长偏差(Dd-MMN)后记录到的MMN。在简单视觉辨别和主动听觉辨别条件下呈现被动三音奇偶数序列时,对14名健康受试者的32个部位进行脑电图记录。两种条件在一个月后重复进行。Pd-MMN比Dd-MMN更大,峰值出现更早,且两次记录期间的相关性更好。发现听觉皮层中的两个偶极和额叶中的两个偶极(左扣带回和右额下回皮层)对于Pd-MMN和Dd-MMN的位置相似,且在复测时能很好地重现。本研究证实了在类似初始脑成像报告中无意识视觉变化检测的自动注意力样过程中,额叶和听觉颞叶皮层产生的活动之间存在相互作用。两次记录期间缺乏干扰表明,这种情况可能对涉及重复测量的额颞叶相互作用的治疗或疾病影响敏感。

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