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在胼胝体缺失情况下视觉事件相关电位的半球间和半球内处理

Inter- and intra-hemispheric processing of visual event-related potentials in the absence of the corpus callosum.

作者信息

Bayard Sophie, Gosselin Nadia, Robert Manon, Lassonde Maryse

机构信息

Universitacutéde Montréal, 2Centre de recherche Hôpital SainteJustine de Montreal, Quebec, Canada.

出版信息

J Cogn Neurosci. 2004 Apr;16(3):401-14. doi: 10.1162/089892904322926746.

Abstract

Interhemispheric differences of the N100 latency in visual evoked potentials have been used to estimate interhemispheric transfer time (e.g., Saron & Davidson, 1989). Recent work has also suggested that the P300 component could reflect the efficacy of interhemispheric transmission (Polich & Hoffman, 1998). The purpose of the present study was to study the differential role of the corpus callosum (CC) and anterior commissure (AC) in the interhemispheric propagation of these two electrophysiological components. Thus, the amplitude and latency distribution of the N100 and P300 components were analyzed using high-density electrical mapping in a subject with agenesis of CC but preservation of AC, a subject with agenesis of both CC and AC, and 10 neurologically intact control subjects. The task consisted of a modified visual oddball paradigm comprising one frequent and two rare stimuli, one presented on the same and the other on the opposite side of the frequent stimulus. Interhemispheric differences in latency were found for the N100 component in controls. However, in the acallosal subjects, this component was not identifiable in the indirectly stimulated hemisphere. In controls, no interhemispheric differences were observed in the distribution of the P300 latency and amplitude to rare and frequent stimuli. The distribution of the P300 amplitude in the acallosal subject with an AC was identical to that of the controls, whereas in the acallosal subject lacking the AC, the amplitude was greater in the hemisphere receiving the frequent stimuli, regardless of the visual hemifield in which the rare stimuli were presented. In both acallosal subjects, hemispheric differences in the P300 latency were observed, the latencies being shorter in the hemisphere directly stimulated for all categories of stimuli. These results suggest that the interhemispheric transfer of both the N100 and P300 components relies on the integrity of cortical commissures. Possible P300 generator sources are discussed.

摘要

视觉诱发电位中N100潜伏期的半球间差异已被用于估计半球间传递时间(例如,Saron和Davidson,1989)。最近的研究还表明,P300成分可以反映半球间传递的效率(Polich和Hoffman,1998)。本研究的目的是研究胼胝体(CC)和前连合(AC)在这两种电生理成分的半球间传播中的不同作用。因此,使用高密度电图分析了CC发育不全但AC保留的受试者、CC和AC均发育不全的受试者以及10名神经功能正常的对照受试者中N100和P300成分的振幅和潜伏期分布。该任务包括一个改良的视觉oddball范式,包括一个频繁刺激和两个罕见刺激,一个与频繁刺激出现在同一侧,另一个出现在相反侧。在对照组中发现了N100成分的半球间潜伏期差异。然而,在无胼胝体的受试者中,间接刺激的半球中无法识别该成分。在对照组中,对于罕见和频繁刺激,P300潜伏期和振幅的分布未观察到半球间差异。有AC的无胼胝体受试者中P300振幅的分布与对照组相同,而在没有AC的无胼胝体受试者中,无论罕见刺激出现在哪个视觉半视野,接受频繁刺激的半球中的振幅都更大。在两个无胼胝体受试者中,均观察到P300潜伏期的半球间差异,对于所有类型的刺激,直接刺激的半球中的潜伏期较短。这些结果表明,N100和P300成分的半球间传递依赖于皮质连合的完整性。讨论了可能的P300发生器来源。

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