首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Pre-attentive Mismatch Response and Involuntary Attention Switching to a Deviance in an Earlier-Than-Usual Auditory Stimulus: An ERP Study
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Pre-attentive Mismatch Response and Involuntary Attention Switching to a Deviance in an Earlier-Than-Usual Auditory Stimulus: An ERP Study

机译:注意前失配反应和非自愿注意在异常听觉刺激中转换为异常:一项ERP研究

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摘要

An acoustic stimulus elicits an electroencephalographic response called auditory event-related potential (ERP). When some members of a stream of standard auditory stimuli are replaced randomly by a deviant stimulus and this stream is presented to a subject who ignores the stimuli, two different ERPs to deviant and standard stimuli are recorded. If the ERP to standard stimuli is subtracted from the ERP to deviant stimuli, the difference potential (DP) waveform typically exhibits a series of negative-positive-negative deflections called mismatch negativity (MMN), P3a, and reorienting negativity (RON), which are associated with pre-attentive change detection, involuntary attention switching, and reorienting of attention, respectively. The aim of the present study was to investigate how these pre-attentive processes are affected if the change occurs earlier than its usual timing implied by isochronous standard stimuli. In the MMN paradigm employed, 15% of the standards were randomly replaced by deviant stimuli which differed either in their pitch, their earlier onset time, or in both. Event-related responses to these three deviants [timely pitch change (RTP), earlier onset (REO), earlier pitch change (REP)] and to standards (RS) were recorded from 10 reading subjects. To maintain identical stimulation histories for the responses subtracted from each other, “deviant-standard” difference potentials (DP) for “timely” and “early” pitch deviances were derived as follows: DPTP = RTP − RS and DPEP = REP − REO. Interestingly, the MMN components of the DPs to timely and early pitch deviances had similar amplitudes, indicating that regularity of stimulus timing does not provide any benefit for the pre-attentive auditory change detection mechanism. However, different scalp current density (SCD) dynamics of the MMN/P3a complexes, elicited by timely and early pitch deviances, suggested that an auditory change in a stimulus occurring earlier-than-usual initiates a faster and more effective call-for-attention and causes stronger attention switching than a timely change. SCD results also indicated that the temporal, frontal, and parietal MMN components are simultaneously present rather than emerging sequentially in time, supporting the MMN models based on parallel deviance processing in the respective cortices. Similarity of the RONs to timely and early pitch deviances indicated that reorienting of attention is of the same strength in two cases.
机译:声音刺激引起脑电图反应,称为听觉事件相关电位(ERP)。当标准听觉刺激流中的某些成员被异常刺激随机替换,并将该流呈现给忽略刺激的对象时,将记录两种不同的异常和标准刺激的ERP。如果从ERP到偏差刺激减去ERP到标准刺激,则电位差(DP)波形通常会显示一系列负-负-负偏转,称为失配负(MMN),P3a和重定向负(RON),这分别与注意前的变化检测,非自愿的注意切换和注意的重新定向有关。本研究的目的是研究如果变更发生的时间早于等时同步标准刺激所暗示的通常时机,这些预注意过程将如何受到影响。在采用的MMN范式中,有15%的标准被异常刺激随机替代,这些异常刺激的音高,起效时间或两者都不同。从10个阅读对象中记录了对这三个异常的事件相关反应[及时音高变化(RTP),较早发作(REO),较早音高变化(REP)]和对标准(RS)。为了保持彼此相同的激励历史记录,可以分别得出“及时”和“早期”音调偏差的“偏差标准”差异电位(DP),如下所示:DPTP = RTP-RS和DPEP = REP-REO。有趣的是,DPs的MMN成分对及时音调和早期音调偏离具有相似的幅度,这表明刺激时机的规律性不会为注意力集中的听觉变化检测机制带来任何好处。但是,MMN / P3a复合物的不同头皮电流密度(SCD)动态,是由及时和较早的音调偏离引起的,这表明,比平常更早发生的刺激中的听觉变化引发了更快,更有效的呼吁注意并导致比及时更改更强的注意力转移。 SCD结果还表明,颞,额和壁MMN分量同时出现,而不是按时间顺序出现,从而支持了基于相应皮层中平行偏差处理的MMN模型。 RON与及时和早期音调偏离的相似性表明,在两种情况下,注意力的重新定向具有相同的强度。

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