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随着多感官节奏行走。

Walking to a multisensory beat.

作者信息

Roy Charlotte, Lagarde Julien, Dotov Dobromir, Dalla Bella Simone

机构信息

EuroMov Laboratory, Montpellier University, 700 Avenue du Pic Saint Loup, 34090 Montpellier, France.

EuroMov Laboratory, Montpellier University, 700 Avenue du Pic Saint Loup, 34090 Montpellier, France.

出版信息

Brain Cogn. 2017 Apr;113:172-183. doi: 10.1016/j.bandc.2017.02.002.

DOI:10.1016/j.bandc.2017.02.002
PMID:28257971
Abstract

Living in a complex and multisensory environment demands constant interaction between perception and action. In everyday life it is common to combine efficiently simultaneous signals coming from different modalities. There is evidence of a multisensory benefit in a variety of laboratory tasks (temporal judgement, reaction time tasks). It is less clear if this effect extends to ecological tasks, such as walking. Furthermore, benefits of multimodal stimulation are linked to temporal properties such as the temporal window of integration and temporal recalibration. These properties have been examined in tasks involving single, non-repeating stimulus presentations. Here we investigate the same temporal properties in the context of a rhythmic task, namely audio-tactile stimulation during walking. The effect of audio-tactile rhythmic cues on gait variability and the ability to synchronize to the cues was studied in young adults. Participants walked with rhythmic cues presented at different stimulus-onset asynchronies. We observed a multisensory benefit by comparing audio-tactile to unimodal stimulation. Moreover, both the temporal window of integration and temporal recalibration mediated the response to multimodal stimulation. In sum, rhythmic behaviours obey the same principles as temporal discrimination and detection behaviours and thus can also benefit from multimodal stimulation.

摘要

生活在复杂的多感官环境中需要感知与行动之间持续的相互作用。在日常生活中,有效地整合来自不同模态的同步信号是很常见的。有证据表明,在各种实验室任务(时间判断、反应时间任务)中存在多感官益处。这种效应是否扩展到诸如行走等生态任务尚不清楚。此外,多模态刺激的益处与时间属性相关,如整合的时间窗口和时间重新校准。这些属性已在涉及单一、非重复刺激呈现的任务中进行了研究。在这里,我们在节奏任务的背景下研究相同的时间属性,即在行走过程中的听觉 - 触觉刺激。我们研究了听觉 - 触觉节奏线索对年轻人步态变异性以及与线索同步能力的影响。参与者在不同的刺激起始异步条件下伴随着节奏线索行走。通过比较听觉 - 触觉刺激与单模态刺激,我们观察到了多感官益处。此外,整合的时间窗口和时间重新校准都介导了对多模态刺激的反应。总之,节奏行为遵循与时间辨别和检测行为相同的原则,因此也可以从多模态刺激中受益。

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