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首页> 外文期刊>Frontiers in Integrative Neuroscience >Attention to sound improves auditory reliability in audio-tactile spatial optimal integration
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Attention to sound improves auditory reliability in audio-tactile spatial optimal integration

机译:对声音的关注提高了声触空间最佳整合中的听觉可靠性

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The role of attention on multisensory processing is still poorly understood. In particular, it is unclear whether directing attention toward a sensory cue dynamically reweights cue reliability during integration of multiple sensory signals. In this study, we investigated the impact of attention in combining audio-tactile signals in an optimal fashion. We used the Maximum Likelihood Estimation (MLE) model to predict audio-tactile spatial localization on the body surface. We developed a new audio-tactile device composed by several small units, each one consisting of a speaker and a tactile vibrator independently controllable by external software. We tested participants in an attentional and a non-attentional condition. In the attentional experiment, participants performed a dual task paradigm: they were required to evaluate the duration of a sound while performing an audio-tactile spatial task. Three unisensory or multisensory stimuli, conflictual or not conflictual sounds and vibrations arranged along the horizontal axis, were presented sequentially. In the primary task participants had to evaluate in a space bisection task the position of the second stimulus (the probe) with respect to the others (the standards). In the secondary task they had to report occasionally changes in duration of the second auditory stimulus. In the non-attentional task participants had only to perform the primary task (space bisection). Our results showed an enhanced auditory precision (and auditory weights) in the auditory attentional condition with respect to the control non-attentional condition. The results of this study support the idea that modality-specific attention modulates multisensory integration.
机译:注意力在多感觉处理上的作用仍然知之甚少。特别是,尚不清楚将注意力转移到感觉提示上是否在多个感觉信号的积分过程中动态地重新加权提示的可靠性。在这项研究中,我们调查了注意力以最佳方式组合音频-触觉信号的影响。我们使用最大似然估计(MLE)模型来预测体表上的音频触觉空间定位。我们开发了一种新的音频触觉设备,该设备由几个小单元组成,每个单元都包含一个扬声器和一个可通过外部软件独立控制的触觉振动器。我们测试了处于注意和非注意状态的参与者。在注意力实验中,参与者执行双重任务范式:要求他们在执行音频-触觉空间任务时评估声音的持续时间。依次介绍了沿水平轴排列的三个单感觉或多感觉刺激,有无冲突的声音和振动。在主要任务中,参与者必须在空间平分任务中评估第二个刺激(探针)相对于其他刺激(标准)的位置。在次要任务中,他们不得不偶尔报告第二次听觉刺激持续时间的变化。在非注意任务中,参与者只需执行主要任务(空间二等分)。我们的结果表明,相对于控制非注意状态,听觉注意状态的听觉精度(和听觉权重)增强。这项研究的结果支持特定于情态的注意调节多感官整合的想法。

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