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The dynamics of sensory buffers: Geometric, spatial, and experience-dependent shaping of iconic memory

机译:感觉缓冲的动力学:标志性记忆的几何,空间和依赖经验的塑造

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When a stimulus is presented, its sensory trace decays rapidly, lasting for approximately 1000 ms. This brief and labile memory, referred as iconic memory, serves as a buffer before information is transferred to working memory and executive control. Here we explored the effect of different factors—geometric, spatial, and experience—with respect to the access and the maintenance of information in iconic memory and the progressive distortion of this memory. We studied performance in a partial report paradigm, a design wherein recall of only part of a stimulus array is required. Subjects had to report the identity of a letter in a location that was cued in a variable delay after the stimulus onset. Performance decayed exponentially with time, and we studied the different parameters (time constant, zero-delay value, and decay amplitude) as a function of the different factors. We observed that experience (determined by letter frequency) affected the access to iconic memory but not the temporal decay constant. On the contrary, spatial position affected the temporal course of delay. The entropy of the error distribution increased with time reflecting a progressive morphological distortion of the iconic buffer. We discuss our results on the context of a model of information access to executive control and how it is affected by learning and attention.
机译:出现刺激时,其感觉曲线会迅速衰减,持续约1000毫秒。这种短暂而又不稳定的内存(称为图标内存)在信息传输到工作内存和执行控制之前用作缓冲区。在这里,我们探讨了不同因素(几何,空间和体验)对标志性内存中信息的访问和维护以及该内存的逐步失真的影响。我们在部分报告范例中研究了性能,在该报告设计中,仅需要回忆刺激阵列的一部分即可。受试者必须在刺激发生后可变延迟提示的位置报告字母的身份。性能随时间呈指数衰减,我们根据不同因素研究了不同的参数(时间常数,零延迟值和衰减幅度)。我们观察到,体验(由字母频率决定)影响了对图标存储的访问,但没有影响时间衰减常数。相反,空间位置会影响时间的延迟过程。误差分布的熵随时间增加,反映出标志性缓冲区的渐进式形态失真。我们将在执行控制信息访问模型的背景下讨论我们的结果,以及它如何受到学习和关注的影响。

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