Hemispheric specialization of linguistic pitch patterns

被引:76
作者
Wong, PCM [1 ]
机构
[1] Univ Chicago, Brain Res Imaging Ctr, Dept Neurol, Chicago, IL 60637 USA
关键词
prosody; brain lateralization; neurolinguistics; aphasia;
D O I
10.1016/S0361-9230(02)00860-2
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Pitch is used to signal different aspects of language such as speaker identity, intonation, emphatic stress, and word identity (as signaled by lexical tones). This article reviews research studies investigating hemispheric specialization of these pitch patterns in the context of two competing hypotheses. The functional hypothesis states that pitch patterns are lateralized to different hemispheres of the brain depending on their functions. Those pitch patterns that carry a greater linguistic load (e.g., lexical tones) are lateralized to the left hemisphere, while those that carry a less linguistic load (e.g., intonation patterns signaling affective moods) are lateralized to the right hemisphere. The alternative hypothesis, the acoustic hypothesis, states that all pitch patterns, regardless of their functions, are lateralized to one hemisphere (the right hemisphere in particular). Although most researchers support the functional hypothesis, a comprehensive review, which includes lesion, dichotic-listening, and functional imaging studies of different types of pitch patterns, does not support this view. Moreover, little evidence exists for the alternative hypothesis. Possible methodological problems of these studies, alternative hypotheses, and considerations for future research are noted. (C) 2002 Elsevier Science Inc. All rights reserved.
引用
收藏
页码:83 / 95
页数:13
相关论文
共 93 条
[41]   DISCONNEXION SYNDROMES IN ANIMALS AND MAN [J].
GESCHWIN.N .
BRAIN, 1965, 88 :585-+
[42]   A common neural substrate for the analysis of pitch and duration pattern in segmented sound? [J].
Griffiths, TD ;
Johnsrude, I ;
Dean, JL ;
Green, GGR .
NEUROREPORT, 1999, 10 (18) :3825-3830
[43]   AUDITORY AFFECTIVE AGNOSIA - DISTURBED COMPREHENSION OF AFFECTIVE SPEECH [J].
HEILMAN, KM ;
SCHOLES, R ;
WATSON, RT .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1975, 38 (01) :69-72
[44]   COMPREHENSION OF AFFECTIVE AND NONAFFECTIVE PROSODY [J].
HEILMAN, KM ;
BOWERS, D ;
SPEEDIE, L ;
COSLETT, HB .
NEUROLOGY, 1984, 34 (07) :917-921
[45]  
HIRD K, 1993, J HUMA COMMUN DISORD, V21, P50
[46]   Functional lateralization of the human premotor cortex during sequential movements [J].
Hlustík, P ;
Solodkin, A ;
Gullapalli, RP ;
Noll, DC ;
Small, SL .
BRAIN AND COGNITION, 2002, 49 (01) :54-62
[47]   Functional heterogeneity of inferior frontal gyrus is shaped by linguistic experience [J].
Hsieh, L ;
Gandour, J ;
Wong, D ;
Hutchins, GD .
BRAIN AND LANGUAGE, 2001, 76 (03) :227-252
[48]  
HUGHES CP, 1983, ARCH NEUROL-CHICAGO, V40, P732, DOI 10.1001/archneur.1983.04050110050007
[49]   Task-dependent laterality for cue decoding during spoken language processing [J].
Imaizumi, S ;
Mori, K ;
Kiritani, S ;
Hosoi, H ;
Tonoike, M .
NEUROREPORT, 1998, 9 (05) :899-903
[50]   Vocal identification of speaker and emotion activates different brain regions [J].
Imaizumi, S ;
Mori, K ;
Kiritani, S ;
Kawashima, R ;
Sugiura, M ;
Fukuda, H ;
Itoh, K ;
Kato, T ;
Nakamura, A ;
Hatano, K ;
Kojima, S ;
Nakamura, K .
NEUROREPORT, 1997, 8 (12) :2809-2812