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A model of the effects of cognitive load on the subjective estimation and production of time intervals

机译:认知负荷对时间间隔的主观估计和产生的影响的模型

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摘要

How and where the brain calculates elapsing time is not known, and one or more internal pacemakers or others timekeeping systems have been suggested. Experiments have shown that the accuracy in estimating or producing time intervals depends on many factors and, in particular, both on the length of the intervals to be estimated and on the additional, and unrelated, cognitive load required during the task. The psychological 'attentional approach' is able to explain the experimental data in terms of perturbations of a cognitive timer. However, the basic biophysical mechanisms that could be involved at the single neuron level are still not clear. Here we propose a computational model suggesting how the process to focus the attention on a non-temporal task could alter the perception of time intervals as observed in the experiments. The model suggests that an attention-based excitatory and/or inhibitory background synaptic noise, impinging on the pacemaker circuit, could represent both qualitative and quantitative features of the cognitive load. These effects are predicted to be independent of the number, location or specific implementations of the internal timing systems. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 23]
机译:大脑如何计算时间流逝的时间和位置尚不清楚,并且已经提出了一种或多种内部起搏器或其他计时系统。实验表明,估计或产生时间间隔的准确性取决于许多因素,特别是取决于要估计的时间间隔的长度以及任务期间所需的额外且无关的认知负荷。心理上的“注意方法”能够以认知计时器的扰动来解释实验数据。但是,尚不清楚在单个神经元水平上可能涉及的基本生物物理机制。在这里,我们提出了一个计算模型,该模型提出了将注意力集中在非时间任务上的过程如何改变实验中观察到的时间间隔的认识。该模型表明,撞击在起搏器回路上的基于注意力的兴奋性和/或抑制性背景突触噪声可以代表认知负荷的定性和定量特征。预计这些影响与内部计时系统的数量,位置或特定实现方式无关。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:23]

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