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Locus of the intensity effect in simple reaction time tasks

机译:简单反应时间任务中强度效应的轨迹

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Evidence is still inconclusive regarding the locus of the stimulus intensity effect on information processing in reaction tasks. Miller, Uhich, and Rinkenauer (1999) addressed this question by assessing the intensity effect on stimulus- and response-locked lateralized readiness potentials (LRPS) as indices of the sensory and motor parts of reaction time (RT). In the case of visual stimuli, they observed that application of brighter stimuli resulted in a shortening of RT and stimulus-locked LRP (S-LRP), but not of response-locked LRP (R-LRP). The results for auditory stimuli, however, were unclear. In spite of a clear RT reduction due to increased loudness, neither S-LRP nor R-LRP onset was affected. A reason for this failure might have been a relatively small range of intensity variation and the type of task. To check for this possibility, we performed three experiments in which broader ranges of stimulus intensities and simple, rather than choice, response tasks were used. Although the intensity effect on the R-LRP was negligible, S-LRP followed RT changes, irrespective of stimulus modality. These findings support the conclusion that stimulus intensity exerts its effect before the start of motoric processes. Finally, S-LRP and R-LRP findings are discussed within a broader information-processing perspective to check the validity of the claim that S-LRP and R-LRP can, indeed, be considered as pure estimates of the duration of sensory and motor processes.
机译:关于刺激强度对反应任务中信息处理的影响力的影响地点仍无定论。 Miller,Uhich和Rinkenauer(1999)通过评估对刺激和反应锁定的侧向准备电位(LRPS)的强度影响作为反应时间的感觉和运动部分(RT)的指标,解决了这个问题。在视觉刺激的情况下,他们观察到,施加较亮的刺激会导致RT和刺激锁定LRP(S-LRP)缩短,但不会导致反应锁定LRP(R-LRP)缩短。然而,听觉刺激的结果尚不清楚。尽管由于响度增加导致RT明显降低,但S-LRP和R-LRP的发作均未受到影响。失败的原因可能是强度变化和任务类型的范围相对较小。为了检查这种可能性,我们进行了三个实验,其中使用了更广泛的刺激强度范围,并使用了简单而不是选择的响应任务。尽管对R-LRP的强度影响可以忽略不计,但S-LRP随RT变化而变化,而与刺激方式无关。这些发现支持这样的结论,即刺激强度在运动过程开始之前就发挥了作用。最后,在更广泛的信息处理视角下讨论了S-LRP和R-LRP的发现,以检验关于S-LRP和R-LRP确实可以视为感觉和运动持续时间的纯粹估计的说法的有效性。流程。

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