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一种改良的Oddball范式“跨模态延迟反应”与失配负波研究

A modified oddball paradigm "cross-modal delayed response" and the research on mismatch negativity.

作者信息

Wei Jing-Han, Chan Tin-Cheung, Luo Yue-Jia

机构信息

Laboratory of Mental Health, Institute of Psychology, The Chinese Academy of Sciences, Beijing 100101, People's Republic of China.

出版信息

Brain Res Bull. 2002 Jan 15;57(2):221-30. doi: 10.1016/s0361-9230(01)00742-0.

Abstract

A modified oddball paradigm was developed to facilitate the focus of attention and to minimize target effects on deviant-related components of auditory and visual event-related potentials (ERPs) elicited with long interstimulus intervals. Subjects were required to focus on either the visual or auditory stimulus in each stimulus block. Deviant-related components were obtained by subtracting ERPs of the standard stimulus from that of the deviant stimulus for each modality with each stimulus condition. Results showed that auditory mismatch negativity (MMN) and a visual early deviant related negativity (DRN1) were elicited both when stimuli were attended and unattended. In contrast, N2b and P3 were produced only under the attended condition. In comparison of attended MMN and unattended MMN at three time windows (100-150 ms, 150-200 ms, and 200-250 ms) of MMN zone, different scalp distributions were shown, depending on the time windows. This result suggests that the attended auditory MMN is a mixed wave, consisting of genuine MMN, N2b, and possible P165. The effect of attention on MMN may stem from the contamination of these overlapping components. With the present paradigm, at least three sensory memory traces have to be maintained simultaneously in multiple sensory modalities to support automatic processing.

摘要

我们开发了一种改良的Oddball范式,以促进注意力的集中,并将目标对长刺激间隔诱发的听觉和视觉事件相关电位(ERP)中与偏差相关成分的影响降至最低。要求受试者在每个刺激块中专注于视觉或听觉刺激。通过在每种刺激条件下,从每种模态的偏差刺激的ERP中减去标准刺激的ERP,来获得与偏差相关的成分。结果表明,无论刺激是否被关注,都会诱发听觉失配负波(MMN)和视觉早期偏差相关负波(DRN1)。相比之下,N2b和P3仅在被关注的条件下产生。在MMN区域的三个时间窗口(100 - 150毫秒、150 - 200毫秒和200 - 250毫秒)比较被关注的MMN和未被关注的MMN时,根据时间窗口的不同,头皮分布也有所不同。这一结果表明,被关注的听觉MMN是一个混合波,由真正的MMN、N2b和可能的P165组成。注意力对MMN的影响可能源于这些重叠成分的相互干扰。使用当前的范式,至少需要在多种感觉模态中同时维持三种感觉记忆痕迹,以支持自动加工。

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