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The shadow of a doubt? Evidence for perceptuo-motor linkage during auditory and audiovisual close-shadowing

机译:怀疑的阴影?听觉和视听紧密遮蔽过程中感知-运动联系的证据

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摘要

One classical argument in favor of a functional role of the motor system in speech perception comes from the close-shadowing task in which a subject has to identify and to repeat as quickly as possible an auditory speech stimulus. The fact that close-shadowing can occur very rapidly and much faster than manual identification of the speech target is taken to suggest that perceptually induced speech representations are already shaped in a motor-compatible format. Another argument is provided by audiovisual interactions often interpreted as referring to a multisensory-motor framework. In this study, we attempted to combine these two paradigms by testing whether the visual modality could speed motor response in a close-shadowing task. To this aim, both oral and manual responses were evaluated during the perception of auditory and audiovisual speech stimuli, clear or embedded in white noise. Overall, oral responses were faster than manual ones, but it also appeared that they were less accurate in noise, which suggests that motor representations evoked by the speech input could be rough at a first processing stage. In the presence of acoustic noise, the audiovisual modality led to both faster and more accurate responses than the auditory modality. No interaction was however, observed between modality and response. Altogether, these results are interpreted within a two-stage sensory-motor framework, in which the auditory and visual streams are integrated together and with internally generated motor representations before a final decision may be available.
机译:支持言语运动系统在言语感知中的功能作用的一种经典论点来自密闭任务,其中受试者必须识别并尽可能快地重复听觉言语刺激。比起手动识别语音目标,紧密阴影的发生速度非常快且快得多的事实被认为暗示了感知诱发的语音表示已经以电机兼容格式成形。视听交互提供的另一个论点通常被解释为是指多感觉运动框架。在这项研究中,我们尝试通过测试视觉模式是否可以在封闭阴影任务中加快运动反应来结合这两种范例。为此,在听觉和视听语音刺激的感知,清晰或嵌入白噪声的过程中,评估了口头和手动反应。总体而言,口头反应比手动反应更快,但是似乎它们在噪音方面的准确性较差,这表明语音输入引起的运动表现在第一处理阶段可能很粗糙。在存在声音噪声的情况下,视听模态比听觉模态产生更快,更准确的响应。但是,没有观察到情态和反应之间的相互作用。总而言之,这些结果将在两阶段的感觉运动框架内进行解释,在该框架中,听觉和视觉流会整合在一起,并与内部生成的运动表示相结合,然后才能做出最终决定。

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