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Time-Based Loss in Visual Short-Term Memory is from Trace Decay not Temporal Distinctiveness

机译:视觉短期记忆中基于时间的丢失是由于迹线衰减而不是时间差异

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摘要

There is no consensus as to why forgetting occurs in short-term memory tasks. In past work, we have shown that forgetting occurs with the passage of time, but there are two classes of theories that can explain this effect. In the present work, we investigate the reason for time-based forgetting by contrasting the predictions of temporal distinctiveness and trace decay in the procedure in which we have observed such loss, involving memory for arrays of characters or letters across several seconds. The first theory, temporal distinctiveness, predicts that increasing the amount of time between trials will lead to less proactive interference, resulting in less forgetting across a retention interval. In the second theory, trace decay, temporal distinctiveness between trials is irrelevant to the loss over a retention interval. Using visual array change detection tasks in four experiments, we find small proactive interference effects on performance under some specific conditions, but no concomitant change in the effect of a retention interval. We conclude that trace decay is the more suitable class of explanations of the time-based forgetting in short-term memory that we have observed, and we suggest the need for further clarity in what the exact basis of that decay may be.
机译:关于为什么在短期记忆任务中会忘记,目前尚无共识。在过去的工作中,我们已经表明,忘记随着时间的流逝而发生,但是有两类理论可以解释这种影响。在目前的工作中,我们通过对比观察到时间丢失和跟踪衰减的过程来调查基于时间的遗忘的原因,在该过程中,我们观察到了这种丢失,涉及存储几秒钟的字符或字母数组。第一个理论是时间的独特性,它预测增加两次试验之间的时间量将导致较少的主动干扰,从而减少整个保留间隔内的遗忘。在第二种理论中,试验之间的痕量衰减和时间差异与保留时间间隔内的损失无关。通过在四个实验中使用视觉阵列变化检测任务,我们发现在某些特定条件下对性能的主动干扰较小,但是保留间隔的影响没有随之变化。我们得出的结论是,迹线衰减是我们观察到的短期记忆中基于时间的遗忘的更合适的解释,我们建议需要进一步明确该衰减的确切依据。

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