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Compensation for the Effects of Head Acceleration on Jaw Movement in Speech

机译:补偿头部加速度对言语下颌动作的影响

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摘要

Recent studies have demonstrated the ability of subjects to adjust the control of limb movements to counteract the effects of self-generated loads. The degree to which subjects change control signals to compensate for these loads is a reflection of the extent to which forces affecting movement are represented in motion planning. Here, we have used empirical and modeling studies to examine whether the nervous system compensates for loads acting on the jaw during speech production. As subjects walk, loads to the jaw vary with the direction and magnitude of head acceleration. We investigated the patterns of jaw motion resulting from these loads both in locomotion alone and when locomotion was combined with speech production. In locomotion alone, jaw movements were shown to vary systematically in direction and magnitude in relation to the acceleration of the head. In contrast, when locomotion was combined with speech, variation in jaw position during both consonant and vowel production was substantially reduced. Overall, we have demonstrated that the magnitude of load associated with head acceleration during locomotion is sufficient to produce a systematic change in the position of the jaw. The absence of variation in jaw position during locomotion with speech is thus consistent with the idea that in speech, the control of jaw motion is adjusted in a predictive manner to offset the effects of head acceleration.
机译:最近的研究表明受试者有能力调整肢体运动的控制能力以抵消自身产生的负荷的影响。对象改变控制信号以补偿这些负载的程度反映了在运动计划中表示影响运动的力的程度。在这里,我们使用了经验和模型研究来检查神经系统是否补偿了语音生成过程中作用在颌骨上的负荷。随着对象的行走,下颌的负荷随头部加速度的方向和大小而变化。我们研究了仅在运动中以及将运动与语音产生结合时由这些负载导致的下颌运动模式。仅在运动中,下颌运动就相对于头部的加速度在方向和大小上发生了系统性的变化。相反,当将运动与语音结合时,在辅音和元音生成过程中下颌位置的变化将大大减少。总的来说,我们已经证明,在运动过程中与头部加速度相关的负荷的大小足以产生颌骨位置的系统性变化。因此,在进行语音运动时,下颌位置没有变化,这与以下想法相一致:在语音中,下颌运动的控制以可预测的方式进行调整,以抵消头部加速度的影响。

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