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事件相关电位成分中的序列加工与匹配刺激间隔效应:基于多重回归的机制探索

Sequential Processing and the Matching-Stimulus Interval Effect in ERP Components: An Exploration of the Mechanism Using Multiple Regression.

作者信息

Steiner Genevieve Z, Barry Robert J, Gonsalvez Craig J

机构信息

Centre for Psychophysics, Psychophysiology, and Psychopharmacology, Brain and Behaviour Research Institute, and School of Psychology, University of WollongongWollongong, NSW, Australia; The National Institute of Complementary Medicine (NICM), Western Sydney UniversityPenrith, NSW, Australia.

Centre for Psychophysics, Psychophysiology, and Psychopharmacology, Brain and Behaviour Research Institute, and School of Psychology, University of Wollongong Wollongong, NSW, Australia.

出版信息

Front Hum Neurosci. 2016 Jun 30;10:339. doi: 10.3389/fnhum.2016.00339. eCollection 2016.

Abstract

In oddball tasks, increasing the time between stimuli within a particular condition (target-to-target interval, TTI; nontarget-to-nontarget interval, NNI) systematically enhances N1, P2, and P300 event-related potential (ERP) component amplitudes. This study examined the mechanism underpinning these effects in ERP components recorded from 28 adults who completed a conventional three-tone oddball task. Bivariate correlations, partial correlations and multiple regression explored component changes due to preceding ERP component amplitudes and intervals found within the stimulus series, rather than constraining the task with experimentally constructed intervals, which has been adequately explored in prior studies. Multiple regression showed that for targets, N1 and TTI predicted N2, TTI predicted P3a and P3b, and Processing Negativity (PN), P3b, and TTI predicted reaction time. For rare nontargets, P1 predicted N1, NNI predicted N2, and N1 predicted Slow Wave (SW). Findings show that the mechanism is operating on separate stages of stimulus-processing, suggestive of either increased activation within a number of stimulus-specific pathways, or very long component generator recovery cycles. These results demonstrate the extent to which matching-stimulus intervals influence ERP component amplitudes and behavior in a three-tone oddball task, and should be taken into account when designing similar studies.

摘要

在异常刺激任务中,在特定条件下(靶刺激到靶刺激间隔,TTI;非靶刺激到非靶刺激间隔,NNI)增加刺激之间的时间会系统性地增强N1、P2和P300事件相关电位(ERP)成分的振幅。本研究探讨了在28名完成传统三音异常刺激任务的成年人记录的ERP成分中,这些效应背后的机制。双变量相关性、偏相关性和多元回归分析了由于刺激序列中先前的ERP成分振幅和间隔导致的成分变化,而不是像先前研究中那样通过实验构建的间隔来限制任务。多元回归分析表明,对于靶刺激,N1和TTI可预测N2,TTI可预测P3a和P3b,加工负波(PN)、P3b和TTI可预测反应时间。对于罕见的非靶刺激,P1可预测N1,NNI可预测N2,N1可预测慢波(SW)。研究结果表明,该机制在刺激处理的不同阶段起作用,这表明在一些特定刺激通路中激活增加,或者成分发生器恢复周期非常长。这些结果证明了匹配刺激间隔在三音异常刺激任务中对ERP成分振幅和行为的影响程度,在设计类似研究时应予以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27c6/4928448/14781dd60bb3/fnhum-10-00339-g0001.jpg

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