[2个问题同时处理的干扰效应分析]。

T Schubert
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摘要

本研究的目的是分析所谓的心理不应期(PRP)范式中的双任务干扰。在这个范例中,被试必须完成两个在时间上重叠的选择反应任务。一个众所周知的结果是,任务2 (Rt2)的反应时间随着两个任务重叠程度的减少而增加。因此,任务1的反应时间被描述为与重叠的大小(Rt 1)无关。通常,这一结果可以通过假设在处理任务2时出现的PRP来解释,当两个任务都在进行串行处理时。问题是:(1)PRP是在第一项任务的反应选择之前还是之后;(2)第二项任务如何影响第一项任务的处理。在实验中,受试者必须一起完成两个选择反应任务。在不同条件下,通过改变选项数(0、1、2、3)系统地增加任务2的选择难度。任务1的选择难度保持不变。这两项任务的重叠部分各不相同。这个实验设计允许使用Schweickert的关键路径技术(Schweickert, 1983)对两个任务的干扰源进行不同的假设。与Karlin和Kestenbaum(1968)的研究结果相反,反应选择的数量和重叠的大小对Rt2的影响表明,在反应选择之前,PRP已经定位。研究结果支持假设反应选择过程是连续处理的模型(Welford, 1952)。它们与这个阶段的并行处理模型相反(Keele, 1973)。任务2中选择的数量对Rt - 1的影响可以通过将两个运动反应分组的机制来解释。
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[Analysis of interference effects in simultaneous processing of 2 problems].

The aim of this investigation was to analyze dual-task interference in the so called Psychological Refractory Period (PRP) paradigm. In this paradigm subjects have to carry out two choice reaction tasks that overlap in time. A well known result is that reaction time on task 2 (Rt2) increases with decreasing overlap of the two tasks. Thereby reaction time on task 1 is described to be independent of the size of overlap (Rt 1). Usually, this result is explained by the assumption of a PRP which arises in processing of task 2, when serial processing is ongoing in both tasks. It was asked, 1.) whether the PRP is located before or after response selection in the first task and 2.) how the second task influences first task processing. In the experiment subjects had to carry out two choice reaction tasks together. In different conditions the difficulty of response selection in task 2 was systematically increased by varying the number of response alternatives (0, 1, 2, 3). Difficulty of response selection in task 1 was held constant. Overlap between both tasks was varied. This experimental design allows different hypotheses about the sources of interference in both tasks to be examined by use of Schweickert's Critical Path Technique (Schweickert, 1983). Contrary to the results of Karlin and Kestenbaum (1968) the effects of number of response alternatives and size of overlap on Rt2 indicate a localization of the PRP before response selection. The results support models which assume a serial processing in response selection (Welford, 1952). They are contrary to models of parallel processing in this stage (Keele, 1973). The influence of the number of alternatives in task 2 on Rt 1 can be explained by a mechanism of grouping both motor responses.

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