class='kwd-title'>Keywords: Computational modeli'/> Reanalyzing neurocognitive data on the role of the motor system in speech perception within COSMO a Bayesian perceptuo-motor model of speech communication
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Reanalyzing neurocognitive data on the role of the motor system in speech perception within COSMO a Bayesian perceptuo-motor model of speech communication

机译:重新分析关于运动系统在COSMO中的语音感知中的作用的神经认知数据COSMO是语音交流的贝叶斯感知-运动模型

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摘要

class="kwd-title">Keywords: Computational modeling, Neurocognitive architecture, Perceptuo-motor interactions, Adverse conditions, Motor perturbations, Repeated transcranial stimulation, Motor representations, Speech perception class="head no_bottom_margin" id="ab015title">AbstractWhile neurocognitive data provide clear evidence for the involvement of the motor system in speech perception, its precise role and the way motor information is involved in perceptual decision remain unclear. In this paper, we discuss some recent experimental results in light of COSMO, a Bayesian perceptuo-motor model of speech communication. COSMO enables us to model both speech perception and speech production with probability distributions relating phonological units with sensory and motor variables. Speech perception is conceived as a sensory-motor architecture combining an auditory and a motor decoder thanks to a Bayesian fusion process. We propose the sketch of a neuroanatomical architecture for COSMO, and we capitalize on properties of the auditory vs. motor decoders to address three neurocognitive studies of the literature. Altogether, this computational study reinforces functional arguments supporting the role of a motor decoding branch in the speech perception process.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:计算模型,神经认知结构,知觉-运动相互作用,不利条件,运动扰动,反复经颅刺激,运动表征,语音感知 class =“ head no_bottom_margin” id =“ ab015title”>摘要虽然神经认知数据为运动系统参与语音感知,其精确作用和运动信息的方式提供了清晰的证据。涉及知觉决定的尚不清楚。在本文中,我们根据COSMO(语音通信的贝叶斯知觉运动模型)讨论了一些最新的实验结果。 COSMO使我们能够通过概率分布将语音单位与感觉和运动变量相关联来对语音感知和语音产生进行建模。由于贝叶斯融合过程,语音感知被认为是结合听觉和运动解码器的感觉运动结构。我们提出了COSMO的神经解剖结构的草图,并利用听觉与运动解码器的特性来解决文献中的三项神经认知研究。总而言之,这项计算研究加强了功能论点,以支持运动解码分支在语音感知过程中的作用。

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