Dissociation of neural representation of intensity and affective valuation in human gustation

被引:590
作者
Small, DM
Gregory, MD
Mak, YE
Gitelman, D
Mesulam, MM
Parrish, T
机构
[1] Northwestern Univ, Feinberg Med Sch, Cognit Neurol & Alzheimers Dis Ctr, Chicago, IL 60611 USA
[2] Northwestern Univ, Feinberg Med Sch, Cognit Brain Mapping Grp, Chicago, IL 60611 USA
[3] Northwestern Univ, Feinberg Med Sch, Dept Neurol, Chicago, IL 60611 USA
[4] Northwestern Univ, Feinberg Med Sch, Dept Psychol, Chicago, IL 60611 USA
[5] Northwestern Univ, Feinberg Med Sch, Dept Radiol, Chicago, IL 60611 USA
[6] Northwestern Univ, Feinberg Med Sch, Inst Neurosci, Chicago, IL 60611 USA
关键词
D O I
10.1016/S0896-6273(03)00467-7
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We used a 2 X 2 factorial design to dissociate regions responding to taste intensity and taste affective valence. Two intensities each of a pleasant and unpleasant taste were presented to subjects during event-related fMRI scanning. The cerebellum, pons, middle insula, and amygdala responded to intensity irrespective of valence. In contrast, valence-specific responses were observed in anterior insula/operculum extending into the orbitofrontal cortex (OFC). The right caudolateral OFC responded preferentially to pleasant compared to unpleasant taste, irrespective of intensity, and the left dorsal anterior insula/operculuar region responded preferentially to unpleasant compared to pleasant tastes equated for intensity. Responses best characterized as an interaction between intensity and pleasantness were also observed in several limbic regions. These findings demonstrate a functional segregation within the human gustatory system. They also show that amygdala activity may be driven by stimulus intensity irrespective of valence, casting doubt upon the notion that the amygdala responds preferentially to negative stimuli.
引用
收藏
页码:701 / 711
页数:11
相关论文
共 83 条
[21]  
Fujikane M, 1998, Rinsho Shinkeigaku, V38, P342
[22]   Evaluating the 'labeled magnitude scale' for measuring sensations of taste and smell [J].
Green, BG ;
Dalton, P ;
Cowart, B ;
Shaffer, G ;
Rankin, K ;
Higgins, J .
CHEMICAL SENSES, 1996, 21 (03) :323-334
[23]   Detecting latency differences in event-related BOLD responses: Application to words versus nonwords and initial versus repeated face presentations [J].
Henson, RNA ;
Price, CJ ;
Rugg, MD ;
Turner, R ;
Friston, KJ .
NEUROIMAGE, 2002, 15 (01) :83-97
[24]   Cortical representation of the sensory dimension of pain [J].
Hofbauer, RK ;
Rainville, P ;
Duncan, GH ;
Bushnell, MC .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 86 (01) :402-411
[25]   FUNCTIONAL-ANATOMY OF TASTE PERCEPTION IN THE HUMAN BRAIN STUDIED WITH POSITRON EMISSION TOMOGRAPHY [J].
KINOMURA, S ;
KAWASHIMA, R ;
YAMADA, K ;
ONO, S ;
ITOH, M ;
YOSHIOKA, S ;
YAMAGUCHI, T ;
MATSUI, H ;
MIYAZAWA, H ;
ITOH, H ;
GOTO, R ;
FUJIWARA, T ;
SATOH, K ;
FUKUDA, H .
BRAIN RESEARCH, 1994, 659 (1-2) :263-266
[26]   Spatio-temporal analysis of cortical activity evoked by gustatory stimulation in humans [J].
Kobayakawa, T ;
Ogawa, H ;
Kaneda, H ;
Ayabe-Kanamura, S ;
Endo, H ;
Saito, S .
CHEMICAL SENSES, 1999, 24 (02) :201-209
[27]  
Kojima Y, 1999, Rinsho Shinkeigaku, V39, P979
[28]   Hunger selectively modulates corticolimbic activation to food stimuli in humans [J].
LaBar, KS ;
Gitelman, DR ;
Parrish, TB ;
Kim, YH ;
Nobre, AC ;
Mesulam, MM .
BEHAVIORAL NEUROSCIENCE, 2001, 115 (02) :493-500
[29]   Neuroanatomical correlates of pleasant and unpleasant emotion [J].
Lane, RD ;
Reiman, EM ;
Bradley, MM ;
Lang, PJ ;
Ahern, GL ;
Davidson, RJ ;
Schwartz, GE .
NEUROPSYCHOLOGIA, 1997, 35 (11) :1437-1444
[30]   Neural economics and the biological substrates of valuation [J].
Montague, PR ;
Berns, GS .
NEURON, 2002, 36 (02) :265-284