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Electrical Brain Responses to Beat Irregularities in Two Cases of Beat Deafness

机译:搏动性耳聋2例,对搏动不规则的脑电反应

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Beat deafness, a recently documented form of congenital amusia, provides a unique window into functional specialization of neural circuitry for the processing of musical stimuli: Beat-deaf individuals exhibit deficits that are specific to the detection of a regular beat in music and the ability to move along with a beat. Studies on the neural underpinnings of beat processing in the general population suggest that the auditory system is capable of pre-attentively generating a predictive model of upcoming sounds in a rhythmic pattern, subserved largely within auditory cortex and reflected in mismatch negativity (MMN) and P3 event-related potential (ERP) components. The current study examined these neural correlates of beat perception in two beat-deaf individuals, Mathieu and Marjorie, and a group of control participants under conditions in which auditory stimuli were either attended or ignored. Compared to control participants, Mathieu demonstrated reduced behavioral sensitivity to beat omissions in metrical patterns, and Marjorie showed a bias to identify irregular patterns as regular. ERP responses to beat omissions reveal an intact pre-attentive system for processing beat irregularities in cases of beat deafness, reflected in the MMN component, and provide partial support for abnormalities in later cognitive stages of beat processing, reflected in an unreliable P3b component exhibited by Mathieu—but not Marjorie—compared to control participants. P3 abnormalities observed in the current study resemble P3 abnormalities exhibited by individuals with pitch-based amusia, and are consistent with attention or auditory-motor coupling accounts of deficits in beat perception.
机译:节律性耳聋是一种最近文献记载的先天性失语形式,为了解神经回路的功能专业化提供了一个独特的窗口,以处理音乐刺激:节律性耳聋的人表现出特定于音乐常规节律检测和检测能力的缺陷。跟着节奏前进。对一般人群的节拍处理的神经基础的研究表明,听觉系统能够以有节奏的方式专注地生成即将到来的声音的预测模型,主要在听觉皮层内保留,并反映在失配负性(MMN)和P3中事件相关电位(ERP)组件。当前的研究在听觉刺激被参加或被忽略的条件下,检查了两个节律失聪的人Mathieu和Marjorie,以及一组对照组的节律感知的这些神经相关性。与对照组相比,Mathieu表现出降低了对公制模式中拍子遗漏的行为敏感性,而Marjorie则显示出将不规则模式识别为常规的偏见。 ERP对搏动遗漏的反应揭示了一个完整的,专心的系统,用于在搏动性耳聋的情况下处理搏动不规则,这反映在MMN组件中,并为搏动处理的后期认知阶段的异常提供了部分支持,这反映为Mathieu(而非Marjorie)相比于控制参与者。在当前研究中观察到的P3异常与基于音调的失语症患者表现出的P3异常相似,并且与注意力或听觉运动耦合对节拍感知缺陷的解释一致。

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