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Different Stages Different Signals: The Modulating Effect of Cognitive Conflict on Subsequent Processing

机译:不同阶段不同信号:认知冲突对后续加工的调节作用

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摘要

The present study used event-related potentials (ERPs) to investigate the function of signals induced by cognitive conflict during the detection stage and the resolution stage of perceptual processing. The study used a combination of the Stroop task and an affective priming task to examine the conflict priming effect when the stimulus onset asynchrony (SOA) was 200 ms or 800 ms. Behavioral results showed that the RTs were shorter for positive targets following congruent primes relative to incongruent primes, and for negative targets following incongruent primes relative to congruent primes when the SOA was 200 ms. ERP results showed that the N2 amplitudes (200–300 ms) for incongruent stimuli were significantly larger than for congruent stimuli in the Stroop task, which indicated a significant conflict effect. Moreover, the N400 amplitudes (500–700 ms) for positive targets after congruent primes were significantly lower than those after incongruent primes when the SOA was 200 ms, which showed a significant negative priming effect. While the SOA was 800 ms, behavioral results showed that the RTs were shorter for positive targets following incongruent primes relative to congruent primes. ERP results showed that the N2 amplitudes (200–300 ms) for incongruent stimuli were significantly larger than for congruent stimuli in the Stroop task, which indicated a significant conflict effect. The N400 amplitudes (1100–1300 ms) for the negative targets after congruent primes were significantly lower than those after incongruent primes when the SOA was 800 ms, which showed a significant positive priming effect. The results demonstrated that the functions of signals induced by cognitive conflict were reversed in two different cognitive processing stages.
机译:本研究使用事件相关电位(ERP)来研究在感知过程的检测阶段和解决阶段由认知冲突诱发的信号的功能。该研究使用Stroop任务和情感启动任务的组合来检查当刺激发作异步(SOA)为200 ms或800 ms时的冲突启动效果。行为结果表明,当SOA为200 ms时,对于一致的素数而言,阳性目标的RTs相对于不一致的素数而言要短,对于不一致的素数而言,负目标的RTs相对于一致的素数而言。 ERP结果表明,在Stroop任务中,不一致刺激的N2振幅(200-300 ms)显着大于一致刺激的N2振幅,这表明存在明显的冲突效应。此外,当SOA为200 ms时,全向灌注后阳性靶标的N400振幅(500-700 ms)显着低于非全向灌注后的正靶标,这显示出显着的负启动效应。当SOA为800毫秒时,行为结果表明,与完全一致的素数相比,不一致的素数后的阳性靶标的RTs较短。 ERP结果表明,在Stroop任务中,不一致刺激的N2振幅(200-300 ms)显着大于一致刺激的N2振幅,这表明存在明显的冲突效应。当SOA为800 ms时,全向灌注后的负目标的N400振幅(1100-1300 ms)显着低于非全向灌注后的N400幅度,这显示出显着的正向启动作用。结果表明,在两个不同的认知加工阶段,由认知冲突引起的信号功能被逆转。

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