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The Emergence of Discrete Perceptual-Motor Units in a Production Model That Assumes Holistic Phonological Representations

机译:带有整体音系表示的生产模型中离散感知电机单元的出现

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摘要

Intelligible speakers achieve specific vocal tract constrictions in rapid sequence. These constrictions are associated in theory with speech motor goals. Adult-focused models of speech production assume that discrete phonological representations, sequenced into word-length plans for output, define these goals. This assumption introduces a serial order problem for speech. It is also at odds with children's speech. In particular, child phonology and timing control suggest holistic speech plans, and so the hypothesis of whole word production. This hypothesis solves the serial order problem by avoiding it. When the same solution is applied to adult speech the problem becomes how to explain the development of highly intelligible speech. This is the problem addressed here. A modeling approach is used to demonstrate how perceptual-motor units of production emerge over developmental time with the perceptual-motor integration of holistic speech plans that are also phonological representations; the specific argument is that perceptual-motor units are a product of trajectories (nearly) crossing in motor space. The model, which focuses on the integration process, defines the perceptual-motor map as a set of linked pairs of experienced perceptual and motor trajectories. The trajectories are time-based excursions through speaker-defined perceptual and motor spaces. By hypothesis, junctures appear where motor trajectories near or overlap one another in motor space when the shared (or extremely similar) articulatory configurations in these regions are exploited to combine perceptually-linked motor paths along different trajectories. Junctures form in clusters in motor space. These clusters, along with their corresponding (linked) perceptual points, represent perceptual-motor units of production, albeit at the level of speech motor control only. The units serve as pivots in motor space during speaking; they are points of transition from one motor trajectory to another along perceptually-linked paths that are selected to produce best approximations of whole word targets.
机译:可理解的说话者可以快速实现特定的声道收缩。从理论上讲,这些收缩与言语运动目标有关。以成年人为中心的语音产生模型假设,离散的语音表示形式(按单词长度的计划进行输出)定义了这些目标。该假设引入了语音的顺序问题。这也与孩子们的讲话不符。特别是儿童语音和定时控制建议了整体语音计划,因此提出了整个单词产生的假设。该假设通过避免序列问题解决了它。当将相同的解决方案应用于成人语音时,问题就变成了如何解释高清晰度语音的发展。这是这里解决的问题。使用一种建模方法,通过整体语音计划(也是语音学的表示)的感知运动整合,来证明生产的感知运动单位如何在发展时间内出现。具体的论点是知觉运动单位是运动空间中(几乎)相交的轨迹的产物。该模型侧重于集成过程,将感觉运动图定义为一组经验丰富的感觉和运动轨迹的链接对。轨迹是通过扬声器定义的感知空间和运动空间的基于时间的偏移。通过假设,当利用这些区域中的共享(或极其相似)的关节构型来组合沿不同轨迹感知连接的运动路径时,运动轨迹在运动空间中彼此接近或重叠的接合点出现。接合点形成在运动空间的簇中。这些簇及其相应的(链接的)感知点代表了感知运动的生产单位,尽管仅在语音运动控制的水平上。在讲话过程中,这些单元可作为运动空间中的枢轴;它们是沿着感知链接的路径从一条运动轨迹到另一条运动轨迹的过渡点,这些路径被选择为产生整个单词目标的最佳近似值。

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