Publications · 2011 · Journal article

Neural correlates in the processing of phoneme-level complexity in vowel production

Haeil Park, Gregory K. Iverson, Hae-Jeong Park

Brain and Language 119(3), 158-166

Abstract

We investigated how articulatory complexity at the phoneme level is manifested neurobiologically in an overt production task. fMRI images were acquired from young Korean-speaking adults as they pronounced bisyllabic pseudowords in which we manipulated phonological complexity defined in terms of vowel duration and instability (viz., COMPLEX: /tiɯi/ >> MID-COMPLEX: /tiye/ >> SIMPLE: /tii/). Increased activity in the left inferior frontal gyrus (Brodmann Areas (BA) 44 and 47), supplementary motor area and anterior insula was observed for the articulation of COMPLEX sequences relative to MID-COMPLEX; this was the case with the articulation of MID-COMPLEX relative to SIMPLE, except that the pars orbitalis (BA 47) was dominantly identified in the Broca's area. The differentiation indicates that phonological complexity is reflected in the neural processing of distinct phonemic representations, both by recruiting brain regions associated with retrieval of phonological information from memory and via articulatory rehearsal for the production of COMPLEX vowels. In addition, the finding that increased complexity engages greater areas of the brain suggests that brain activation can be a neurobiological measure of articulo-phonological complexity, complementing, if not substituting for, biomechanical measurements of speech motor activity.

Korean summary

말소리를 만들어 내는 조음 과정의 복잡도가 뇌에서 어떻게 표현되는지를 살핀 연구입니다. 한국어를 모국어로 하는 젊은 성인들이 모음의 길이와 불안정성을 달리해 복잡도를 세 단계로 조절한 두 음절 가짜 단어를 소리 내어 발음하는 동안 fMRI로 뇌 활동을 측정했습니다. 발음이 복잡해질수록 좌측 하전두이랑(브로카 영역), 보조운동영역, 전측 섬엽의 활동이 단계적으로 증가했으며, 이는 기억에서 음운 정보를 꺼내 오고 조음을 되풀이해 준비하는 과정이 함께 동원됨을 시사합니다. 이 결과는 뇌 활성화가 조음·음운 복잡도를 반영하는 신경생물학적 지표가 될 수 있음을 보여 주어, 기존의 생체역학적 말운동 측정을 보완할 가능성을 제시합니다.

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