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Modulation of effective connectivity during vocalization with perturbed auditory feedback

机译:在发声期间通过扰动的听觉反馈来调节有效连接

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The integration of auditory feedback with vocal motor output is important for the control of voice fundamental frequency (F0). We used a pitch-shift paradigm where subjects respond to an alteration, or shift, of voice pitch auditory feedback with a reflexive change in F0. We presented varying magnitudes of pitch shifted auditory feedback to subjects during vocalization and passive listening and measured event related potentials (ERPs) to the feedback shifts. Shifts were delivered at +100 and +400 cents (200ms duration). The ERP data were modeled with dynamic causal modeling (DCM) techniques where the effective connectivity between the superior temporal gyrus (STG), inferior frontal gyrus and premotor areas were tested. We compared three main factors: the effect of intrinsic STG connectivity, STG modulation across hemispheres and the specific effect of hemisphere. A Bayesian model selection procedure was used to make inference about model families. Results suggest that both intrinsic STG and left to right STG connections are important in the identification of self-voice error and sensory motor integration. We identified differences in left-to-right STG connections between 100 cent and 400 cent shift conditions suggesting that self- and non-self-voice error are processed differently in the left and right hemisphere. These results also highlight the potential of DCM modeling of ERP responses to characterize specific network properties of forward models of voice control.
机译:听觉反馈与语音运动输出的集成对于控制语音基频(F0)非常重要。我们使用了音高变化范式,其中受试者响应F0的反射性变化来响应音高听觉反馈的改变或偏移。我们在发声和被动聆听期间向受试者展示了不同幅度的音调移位听觉反馈,并测量了反馈移位的事件相关电位(ERP)。班次的交付时间分别为+100和+400分(持续时间为200毫秒)。通过动态因果建模(DCM)技术对ERP数据进行建模,其中测试了颞上回(STG),额额下回和运动前区域之间的有效连通性。我们比较了三个主要因素:固有STG连接性的影响,跨半球的STG调制以及半球的特定影响。使用贝叶斯模型选择过程来推断模型族。结果表明,内在的STG和从左至右的STG连接在识别自语音错误和感觉运动集成方面都非常重要。我们确定了100%和400%的移位条件之间从左到右的STG连接的差异,这表明在左半球和右半球中,对自己和非自己的语音错误的处理方式有所不同。这些结果还突出了ERP响应的DCM建模潜力,以表征语音控制正向模型的特定网络属性。

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