DETECTION OF STIMULUS DEVIANCE WITHIN PRIMATE PRIMARY AUDITORY-CORTEX - INTRACORTICAL MECHANISMS OF MISMATCH NEGATIVITY (MMN) GENERATION

被引:177
作者
JAVITT, DC
STEINSCHNEIDER, M
SCHROEDER, CE
VAUGHAN, HG
AREZZO, JC
机构
[1] YESHIVA UNIV ALBERT EINSTEIN COLL MED,DEPT NEUROSCI,BRONX,NY 10461
[2] YESHIVA UNIV ALBERT EINSTEIN COLL MED,DEPT NEUROL,BRONX,NY 10461
[3] YESHIVA UNIV ALBERT EINSTEIN COLL MED,DEPT PEDIAT,BRONX,NY 10461
[4] BRONX PSYCHIAT CTR,DEPT PSYCHIAT,BRONX,NY 10461
关键词
INTRACORTICAL; MULTICHANNEL RECORDING; AI; PRIMARY AUDITORY CORTEX; COGNITIVE; EVOKED POTENTIAL; AUDITORY;
D O I
10.1016/0006-8993(94)91496-6
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Mismatch negativity (MMN) is a cognitive, auditory event-related potential (AEP) that reflects preattentive detection of stimulus deviance and indexes the operation of the auditory sensory ('echoic') memory system. MMN is elicited most commonly in an auditory oddball paradigm in which a sequence of repetitive standard stimuli is interrupted infrequently and unexpectedly by a physically deviant 'oddball' stimulus. Electro- and magnetoencephalographic dipole mapping studies have localized the generators of MMN to supratemporal auditory cortex in the vicinity of Heschl's gyrus, but have not determined the degree to which MMN reflects activation within primary auditory cortex (AI) itself. The present study, using moveable multichannel electrodes inserted acutely into superior temporal plane, demonstrates a significant contribution of AI to scalp-recorded MMN in the monkey, as reflected by greater response of AI to loud or soft clicks presented as deviants than to the same stimuli presented as repetitive standards. The MMN-like activity was localized primarily to supragranular laminae within AI. Thus, standard and deviant stimuli elicited similar degrees of initial, thalamocortical excitation. In contrast, responses within supragranular cortex were significantly larger to deviant stimuli than to standards. No MMN-like activity was detected in a limited number to passes that penetrated anterior and medial to AI. AI plays a well established role in the decoding of the acoustic properties of individual stimuli. The present study demonstrates that primary auditory cortex also plays an important role in processing the relationships between stimuli, and thus participates in cognitive, as well as purely sensory, processing of auditory information.
引用
收藏
页码:192 / 200
页数:9
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