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通过视听训练对声音定位线索进行重新加权

Re-weighting of Sound Localization Cues by Audiovisual Training.

作者信息

Kumpik Daniel P, Campbell Connor, Schnupp Jan W H, King Andrew J

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, United Kingdom.

出版信息

Front Neurosci. 2019 Nov 15;13:1164. doi: 10.3389/fnins.2019.01164. eCollection 2019.

Abstract

Sound localization requires the integration in the brain of auditory spatial cues generated by interactions with the external ears, head and body. Perceptual learning studies have shown that the relative weighting of these cues can change in a context-dependent fashion if their relative reliability is altered. One factor that may influence this process is vision, which tends to dominate localization judgments when both modalities are present and induces a recalibration of auditory space if they become misaligned. It is not known, however, whether vision can alter the weighting of individual auditory localization cues. Using virtual acoustic space stimuli, we measured changes in subjects' sound localization biases and binaural localization cue weights after ∼50 min of training on audiovisual tasks in which visual stimuli were either informative or not about the location of broadband sounds. Four different spatial configurations were used in which we varied the relative reliability of the binaural cues: interaural time differences (ITDs) and frequency-dependent interaural level differences (ILDs). In most subjects and experiments, ILDs were weighted more highly than ITDs before training. When visual cues were spatially uninformative, some subjects showed a reduction in auditory localization bias and the relative weighting of ILDs increased after training with congruent binaural cues. ILDs were also upweighted if they were paired with spatially-congruent visual cues, and the largest group-level improvements in sound localization accuracy occurred when both binaural cues were matched to visual stimuli. These data suggest that binaural cue reweighting reflects baseline differences in the relative weights of ILDs and ITDs, but is also shaped by the availability of congruent visual stimuli. Training subjects with consistently misaligned binaural and visual cues produced the ventriloquism aftereffect, i.e., a corresponding shift in auditory localization bias, without affecting the inter-subject variability in sound localization judgments or their binaural cue weights. Our results show that the relative weighting of different auditory localization cues can be changed by training in ways that depend on their reliability as well as the availability of visual spatial information, with the largest improvements in sound localization likely to result from training with fully congruent audiovisual information.

摘要

声音定位需要大脑整合由外耳、头部和身体相互作用产生的听觉空间线索。知觉学习研究表明,如果这些线索的相对可靠性发生改变,它们的相对权重会以上下文依赖的方式发生变化。一个可能影响这一过程的因素是视觉,当两种模态都存在时,视觉往往会主导定位判断,如果它们变得不一致,视觉会引发听觉空间的重新校准。然而,尚不清楚视觉是否能改变单个听觉定位线索的权重。我们使用虚拟声学空间刺激,在视听任务上对受试者进行约50分钟的训练后,测量了他们的声音定位偏差和双耳定位线索权重的变化,在这些任务中,视觉刺激要么提供有关宽带声音位置的信息,要么不提供。我们使用了四种不同的空间配置,其中我们改变了双耳线索的相对可靠性:耳间时间差(ITD)和频率依赖的耳间声级差(ILD)。在大多数受试者和实验中,训练前ILD的权重比ITD更高。当视觉线索在空间上无信息时,一些受试者在使用一致的双耳线索训练后,听觉定位偏差减小,ILD的相对权重增加。如果ILD与空间一致的视觉线索配对,它们的权重也会增加,并且当双耳线索都与视觉刺激匹配时,声音定位准确性的最大组水平改善会出现。这些数据表明,双耳线索重新加权反映了ILD和ITD相对权重的基线差异,但也受到一致视觉刺激可用性的影响。用始终不一致的双耳和视觉线索训练受试者会产生口技后效应,即听觉定位偏差的相应偏移,而不影响声音定位判断的受试者间变异性或他们的双耳线索权重。我们的结果表明,不同听觉定位线索的相对权重可以通过训练以依赖于它们的可靠性以及视觉空间信息可用性的方式改变,声音定位的最大改善可能来自于使用完全一致的视听信息进行训练。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6366/6873890/db1638ce8852/fnins-13-01164-g001.jpg

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