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首页> 外文期刊>Journal of psychophysiology >Mismatch Negativity and Stimulus-Specific Adaptation in Animal Models
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Mismatch Negativity and Stimulus-Specific Adaptation in Animal Models

机译:动物模型中的不匹配消极性和刺激特异性

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Animal models of MMN may serve both to further our understanding of neural processing beyond pure sensory coding and for unraveling the neural and pharmacological processes involved in the generation of MMN. We start this review by discussing the methodological issues that are especially important when pursuing a single-neuron correlate of MMN. Correlates of MMN have been studied in mice, rats, cats, and primates. Whereas essentially all of these studies demonstrated the presence of stimulus-specific adaptation, in the sense that responses to deviant tones are larger than the responses to standard tones, the presence of real MMN has been established only in a few. We argue for the use of more and better controls in order to clarify the situation. Finally, we discuss in detail the relationships between stimulus-specific adaptation of single-neuron responses, as established in the cat auditory cortex, and MMN. We argue that this is currently the only fully established correlate of true change detection, and hypothesize that it precedes and probably induces the neural activity that is eventually measured as MMN.
机译:MMN的动物模型可以用于进一步了解除纯感觉编码之外的神经处理以及解开MMN的产生中所涉及的神经和药理学过程的理解。我们通过讨论追求MMN的单神经元相关时尤其重要的方法问题来进行评论。 MMN的相关性已经在小鼠,大鼠,猫和灵长类动物中进行过研究。事实上,所有这些研究都证明了刺激特异性适应的存在,因此在对对标准音调的反应大于对标准音调的反应的感觉中,实际MMN的存在仅在少数内建立。我们争辩使用越来越多的控制,以澄清这种情况。最后,我们详细讨论了在猫听觉皮层和MMN中建立的单神经元响应的刺激特异性适应之间的关系。我们认为这是目前唯一完全建立的真实变化检测相关性,并假设它之前它可能诱导最终测量为MMN的神经活动。

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