The functional neuroanatomy of novelty processing: Integrating ERP and fMRI results

被引:144
作者
Opitz, B [1 ]
Mecklinger, A [1 ]
Friederici, AD [1 ]
von Cramon, DY [1 ]
机构
[1] Max Planck Inst Cognit Neurosci, D-04303 Leipzig, Germany
关键词
D O I
10.1093/cercor/9.4.379
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Recent research indicates that non-tonal novel events, deviating from an ongoing auditory environment, elicit a positive event-related potential (ERP), the novel P3. Although a variety of studies examined the neural network engaged in novelty detection, there it; no complete picture of the underlying brain mechanisms. This experiment investigated these neural mechanisms by combining ERP and functional magnetic resonance imaging (fMRI). Hemodynamic and electrophysiological responses were measured in the same subjects using the same experimental design. The ERP analysis revealed a novel P3, while the fMRI responses showed bilateral foci in the middle part of the superior temporal gyrus. When subjects attended to the novel stimuli only identifiable novel sounds evoked a N4-like negativity. Subjects showing a strong N4-effect had additional fMRI activation in right prefrontal cortex (rPFC) as compared to subjects with a weak N4-effect. This pattern of results suggests that novelty processing not only includes the registration of deviancy but may also lead to a fast access and retrieval of related semantic concepts. The fMRI activation pattern suggests that the superior temporal gyrus is involved in novelty detection, whereas accessing and retrieving semantic concepts related to novel sounds additionally engages the rPFC.
引用
收藏
页码:379 / 391
页数:13
相关论文
共 61 条
[31]   EVENT-RELATED BRAIN POTENTIALS TO GRAMMATICAL ERRORS AND SEMANTIC ANOMALIES [J].
KUTAS, M ;
HILLYARD, SA .
MEMORY & COGNITION, 1983, 11 (05) :539-550
[32]   Semantic aspects of novelty detection in humans [J].
Mecklinger, A ;
Opitz, B ;
Friederici, AD .
NEUROSCIENCE LETTERS, 1997, 235 (1-2) :65-68
[33]   A MEG analysis of the P300 in visual discrimination tasks [J].
Mecklinger, A ;
Maess, B ;
Opitz, B ;
Pfeifer, E ;
Cheyne, D ;
Weinberg, H .
EVOKED POTENTIALS-ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1998, 108 (01) :45-56
[34]  
Mecklinger A, 1995, NEUROREPORT, V7, P241, DOI 10.1097/00001756-199512000-00058
[35]   Recognition memory for object form and object location: An event-related potential study [J].
Mecklinger, A ;
Meinshausen, RM .
MEMORY & COGNITION, 1998, 26 (05) :1068-1088
[36]   A NEURAL MECHANISM FOR WORKING AND RECOGNITION MEMORY IN INFERIOR TEMPORAL CORTEX [J].
MILLER, EK ;
LI, L ;
DESIMONE, R .
SCIENCE, 1991, 254 (5036) :1377-1379
[37]   MEMORY AND WORKING-WITH-MEMORY - A COMPONENT PROCESS MODEL BASED ON MODULES AND CENTRAL SYSTEMS [J].
MOSCOVITCH, M .
JOURNAL OF COGNITIVE NEUROSCIENCE, 1992, 4 (03) :257-267
[38]   EARLY SELECTIVE-ATTENTION EFFECT ON EVOKED-POTENTIAL REINTERPRETED [J].
NAATANEN, R ;
GAILLARD, AWK ;
MANTYSALO, S .
ACTA PSYCHOLOGICA, 1978, 42 (04) :313-329
[39]   THE ROLE OF ATTENTION IN AUDITORY INFORMATION-PROCESSING AS REVEALED BY EVENT-RELATED POTENTIALS AND OTHER BRAIN MEASURES OF COGNITIVE FUNCTION [J].
NAATANEN, R .
BEHAVIORAL AND BRAIN SCIENCES, 1990, 13 (02) :201-232
[40]  
Naatanen R., 2018, Attention and brain function