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Large-Scale Synchronized Activity during Vocal Deviance Detection in the Zebra Finch Auditory Forebrain

机译:斑马雀科听觉前脑的声音偏差检测过程中的大规模同步活动。

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摘要

Auditory systems bias responses to sounds that are unexpected on the basis of recent stimulus history, a phenomenon that has been widely studied using sequences of unmodulated tones (mismatch negativity; stimulus-specific adaptation). Such a paradigm, however, does not directly reflect problems that neural systems normally solve for adaptive behavior. We recorded multiunit responses in the caudomedial auditory forebrain of anesthetized zebra finches (Taeniopygia guttata) at 32 sites simultaneously, to contact calls that recur probabilistically at a rate that is used in communication. Neurons in secondary, but not primary, auditory areas respond preferentially to calls when they are unexpected (deviant) compared with the same calls when they are expected (standard). This response bias is predominantly due to sites more often not responding to standard events than to deviant events. When two call stimuli alternate between standard and deviant roles, most sites exhibit a response bias to deviant events of both stimuli. This suggests that biases are not based on a use-dependent decrease in response strength but involve a more complex mechanism that is sensitive to auditory deviance per se. Furthermore, between many secondary sites, responses are tightly synchronized, a phenomenon that is driven by internal neuronal interactions rather than by the timing of stimulus acoustic features. We hypothesize that this deviance-sensitive, internally synchronized network of neurons is involved in the involuntary capturing of attention by unexpected and behaviorally potentially relevant events in natural auditory scenes.
机译:听觉系统在最近的刺激历史的基础上偏向对意外声音的响应,这种现象已使用未调制音调序列(失配负性;特定刺激的适应性)进行了广泛研究。但是,这种范例并不能直接反映神经系统通常为适应性行为解决的问题。我们同时在32个部位的麻醉斑马雀(Taeniopygia guttata)的颞内侧听觉前脑中记录了多单位反应,以联系概率以通信中使用的速率再次出现的电话。与预期的相同(标准)相比,次要的而不是主要的听觉区域中的神经元对呼叫的响应优先(异常)。这种响应偏差主要是由于站点比标准事件更不响应标准事件。当两个呼叫刺激在标准角色和偏离角色之间交替时,大多数站点对两个刺激的偏离事件表现出响应偏差。这表明偏倚不是基于响应强度的使用依赖性降低,而是涉及对听觉偏差本身敏感的更复杂的机制。此外,在许多次要部位之间,反应紧密同步,这种现象是由内部神经元相互作用驱动的,而不是由刺激声学特征的时机驱动的。我们假设,这种异常敏感的神经元内部同步网络参与了自然听觉场景中意外和行为潜在相关事件的非自愿捕获注意。

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