Gracco V L
Haskins Laboratories, New Haven, Connecticut 06511.
J Neurosci. 1988 Dec;8(12):4628-39. doi: 10.1523/JNEUROSCI.08-12-04628.1988.
Speech movement coordination involves substantial timing adjustments among multiple degrees of muscles and movement freedom. The present investigation examined the kinematic and muscle timing adjustments associated with the production of select speech movements. For oral closing movements, the timing of the upper lip, lower lip, and jaw peak velocities were found to be tightly coupled, apparently reflecting a coordinative strategy. In contrast, oral opening movements demonstrated reduced temporal coupling and inconsistent sequencing across subjects. Overall, it appears that the temporal organization of speech movements varies with the specific movement goals. In order to evaluate the coordinative patterns for oral closing in detail, the temporal adjustments of multiple perioral muscles associated with the systematic closing peak velocity relations were examined. The relative timing of muscle onsets and peak EMG amplitudes was found to be predictably related to the peak velocity timing variations, suggesting that the motor commands are temporally scaled to generate changes in speaking conditions. It was also found that the mechanical properties of the speech articulators influence movement coordination and can be exploited to maximize movement efficiency. The systematic change in muscle timing characteristics for all synergistic muscles apparently reduces the degrees of freedom to control, thereby facilitating the coordination process.
言语运动协调涉及多个肌肉维度和运动自由度之间大量的时间调整。本研究考察了与特定言语运动产生相关的运动学和肌肉时间调整。对于闭口运动,发现上唇、下唇和下颌的峰值速度时间紧密耦合,这显然反映了一种协调策略。相比之下,开口运动表现出时间耦合减少且受试者之间的顺序不一致。总体而言,言语运动的时间组织似乎随特定的运动目标而变化。为了详细评估闭口的协调模式,研究了与系统闭口峰值速度关系相关的多块口周肌肉的时间调整。发现肌肉起始和肌电图峰值幅度的相对时间与峰值速度时间变化可预测地相关,这表明运动指令在时间上进行了缩放以产生说话条件的变化。还发现言语发音器官的机械特性会影响运动协调,并且可以利用这些特性来最大化运动效率。所有协同肌肉的肌肉时间特征的系统变化显然减少了需要控制的自由度,从而促进了协调过程。