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首页> 外文期刊>NeuroImage >Localizing pre-attentive auditory memory-based comparison: magnetic mismatch negativity to pitch change.
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Localizing pre-attentive auditory memory-based comparison: magnetic mismatch negativity to pitch change.

机译:定位基于注意力集中的听觉记忆的比较:磁失配对音高变化的负面影响。

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Changes in the pitch of repetitive sounds elicit the mismatch negativity (MMN) of the event-related brain potential (ERP). There exist two alternative accounts for this index of automatic change detection: (1) A sensorial, non-comparator account according to which ERPs in oddball sequences are affected by differential refractory states of frequency-specific afferent cortical neurons. (2) A cognitive, comparator account stating that MMN reflects the outcome of a memory comparison between a neuronal model of the frequently presented standard sound with the sensory memory representation of the changed sound. Using a condition controlling for refractoriness effects, the two contributions to MMN can be disentangled. The present study used whole-head MEG to further elucidate the sensorial and cognitive contributions to frequency MMN. Results replicated ERP findings that MMN to pitch change is a compound of the activity of a sensorial, non-comparator mechanism and a cognitive, comparator mechanism which couldbe separated in time. The sensorial part of frequency MMN consisting of spatially dipolar patterns was maximal in the late N1 range (105-125 ms), while the cognitive part peaked in the late MMN-range (170-200 ms). Spatial principal component analyses revealed that the early part of the traditionally measured MMN (deviant minus standard) is mainly due to the sensorial mechanism while the later mainly due to the cognitive mechanism. Inverse modeling revealed sources for both MMN contributions in the gyrus temporales transversus, bilaterally. These MEG results suggest temporally distinct but spatially overlapping activities of non-comparator-based and comparator-based mechanisms of automatic frequency change detection in auditory cortex.
机译:重复声音的音调变化会引起事件相关脑电势(ERP)的失配负电(MMN)。对于此自动变化检测指标,存在两个备选帐户:(1)感觉非比较帐户,根据该帐户,奇数球序列中的ERP受到频率特定的传入皮层神经元的不同不应性状态的影响。 (2)认知比较者陈述指出,MMN反映了经常出现的标准声音的神经元模型与变化声音的感觉记忆表示之间的记忆比较结果。使用控制耐火性的条件,可以消除对MMN的两种影响。本研究使用全头MEG进一步阐明了MMN频率的感觉和认知贡献。结果重复了ERP的发现,即MMN改变音高是感觉,非比较器机制和认知,比较器机制的活动的复合,可以及时分开。频率MMN的由空间偶极模式组成的感觉部分在N1后期(105-125 ms)达到最大值,而认知部分在MMN后期(170-200 ms)达到峰值。空间主成分分析显示,传统测量的MMN(偏差减去标准)的早期主要是由于感觉机制,而后期主要是由于认知机制。逆向建模揭示了两个横向颞回中MMN贡献的来源。这些MEG结果表明,听觉皮层中基于非比较器和基于比较器的自动频率变化检测机制在时间上截然不同,但在空间上重叠。

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