Suppr超能文献

绘制音乐模式中时间注意力的动态分配图谱。

Mapping the dynamic allocation of temporal attention in musical patterns.

作者信息

Hurley Brian K, Fink Lauren K, Janata Petr

机构信息

Department of Psychology.

Neuroscience Graduate Group.

出版信息

J Exp Psychol Hum Percept Perform. 2018 Nov;44(11):1694-1711. doi: 10.1037/xhp0000563. Epub 2018 Aug 9.

Abstract

Many environmental sounds, such as music or speech, are patterned in time. Dynamic attending theory, and supporting empirical evidence, suggests that a stimulus's temporal structure serves to orient attention to specific moments in time. One instantiation of this theory posits that attention synchronizes to the temporal structure of a stimulus in an oscillatory fashion, with optimal perception at salient time points or oscillation peaks. We examined whether a model consisting of damped linear oscillators succeeds at predicting temporal attention behavior in rhythmic multi-instrumental music. We conducted 3 experiments in which we mapped listeners' perceptual sensitivity by estimating detection thresholds for intensity deviants embedded at multiple time points within a stimulus pattern. We compared participants' thresholds for detecting intensity changes at various time points with the modeled salience prediction at each of those time points. Across all experiments, results showed that the resonator model predicted listener thresholds, such that listeners were more sensitive to probes at time points corresponding to greater model-predicted salience. This effect held for both intensity increment and decrement probes and for metrically simple and complex stimuli. Moreover, the resonator model explained the data better than did predictions based on canonical metric hierarchy or auditory scene density. Our results offer new insight into the temporal orienting of attention in complex auditory scenes using a parsimonious computational model for predicting attentional dynamics. (PsycINFO Database Record (c) 2018 APA, all rights reserved).

摘要

许多环境声音,如音乐或语音,在时间上是有模式的。动态注意理论及相关实证证据表明,刺激的时间结构有助于将注意力导向特定的时刻。该理论的一种具体表现形式假定,注意力以振荡的方式与刺激的时间结构同步,在显著时间点或振荡峰值处实现最佳感知。我们研究了一个由阻尼线性振荡器组成的模型是否能够成功预测节奏性多乐器音乐中的时间注意行为。我们进行了3项实验,通过估计嵌入在刺激模式内多个时间点的强度偏差的检测阈值来描绘听众的感知敏感性。我们将参与者在各个时间点检测强度变化的阈值与每个时间点的模型显著性预测进行了比较。在所有实验中,结果表明谐振器模型能够预测听众的阈值,即听众对与模型预测显著性更高的时间点处的探测更敏感。这种效应在强度增加和减少探测以及节拍简单和复杂的刺激中均成立。此外,谐振器模型对数据的解释比基于规范节拍层次或听觉场景密度的预测更好。我们的研究结果使用一个简约的计算模型来预测注意动态,为复杂听觉场景中注意力的时间定向提供了新的见解。(《心理学文摘数据库记录》(c)2018美国心理学会,保留所有权利)

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验