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Somatosensory basis of speech production

机译:言语产生的体感基础

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The hypothesis that speech goals are defined acoustically and maintained by auditory feedback is a central idea in speech production research(1-6). An alternative proposal is that speech production is organized in terms of control signals that subserve movements and associated vocal-tract configurations(7-9). Indeed, the capacity for intelligible speech by deaf speakers suggests that somatosensory inputs related to movement play a role in speech production-but studies that might have documented a somatosensory component have been equivocal. For example, mechanical perturbations that have altered somatosensory feedback have simultaneously altered acoustics(10-14). Hence, any adaptation observed under these conditions may have been a consequence of acoustic change. Here we show that somatosensory information on its own is fundamental to the achievement of speech movements. This demonstration involves a dissociation of somatosensory and auditory feedback during speech production. Over time, subjects correct for the effects of a complex mechanical load that alters jaw movements (and hence somatosensory feedback), but which has no measurable or perceptible effect on acoustic output. The findings indicate that the positions of speech articulators and associated somatosensory inputs constitute a goal of speech movements that is wholly separate from the sounds produced. [References: 20]
机译:语音目标是通过听觉上的反馈来定义和保持语音目标的假说是语音产生研究的中心思想(1-6)。另一种建议是,根据控制信号来组织语音产生,这些信号可以辅助运动和相关的声道配置(7-9)。的确,聋哑人可理解的语音能力表明与运动有关的体感输入在语音产生中起作用,但可能记录了体感成分的研究却是模棱两可的。例如,改变了体感反馈的机械扰动同时改变了声学(10-14)。因此,在这些条件下观察到的任何适应可能都是声学变化的结果。在这里,我们证明了体感信息本身对实现语音运动至关重要。该演示涉及语音生成过程中体感和听觉反馈的分离。随着时间的流逝,受试者会纠正复杂的机械负荷的影响,这种负荷会改变颌骨的运动(从而改变体感反馈),但对声音输出没有可测量的或可感知的影响。研究结果表明,语音发音器的位置和相关的体感输入构成了语音运动的目标,该目标与产生的声音完全分开。 [参考:20]

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