McGuigan F J, Dollins A B
Institute for Stress Management, United States International University, San Diego, CA 92131.
Pavlov J Biol Sci. 1989 Jan-Mar;24(1):19-26. doi: 10.1007/BF02964527.
In previous research a discriminative relationship has been established between patterns of covert speech behavior and the phonemic system when processing continuous linguistic material. The goal of the present research was to be more analytic and pinpoint covert neuromuscular speech patterns when one processes specific instances of phonemes. Electromyographic (EMG) recording indicated that the lips are significantly active when visually processing the letter "P"(an instance of bilabial material), but not when processing the letter "T" or a nonlinguistic control (C) stimulus. Similarly, the tongue is significantly active when processing the letter "T" (an instance of lingual-alveolar material), but not when processing the letters "P" or "C". It is concluded that the speech musculature covertly responds systematically as a function of class of phoneme being processed. These results accord with our model that semantic processing ("understanding") occurs when the speech (and other) musculature interacts with linguistic regions of the brain. In the interactions phonetic coding is generated and transmitted through neuromuscular circuits that have cybernetic characteristics.
在先前的研究中,当处理连续语言材料时,已在隐蔽言语行为模式与音素系统之间建立了一种区分关系。本研究的目的是在处理音素的特定实例时进行更具分析性的研究,并精确找出隐蔽的神经肌肉言语模式。肌电图(EMG)记录表明,在视觉处理字母“P”(双唇音材料的一个实例)时,嘴唇有明显的活动,但在处理字母“T”或非语言对照(C)刺激时则没有。同样,在处理字母“T”(舌齿龈音材料的一个实例)时,舌头有明显的活动,但在处理字母“P”或“C”时则没有。得出的结论是,言语肌肉组织会根据所处理音素的类别进行系统性的隐蔽反应。这些结果与我们的模型相符,即当言语(和其他)肌肉组织与大脑的语言区域相互作用时,语义处理(“理解”)就会发生。在这种相互作用中,语音编码通过具有控制论特征的神经肌肉回路产生并传递。