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神经发生器对并发声音分离的影响。

Neural generators underlying concurrent sound segregation.

机构信息

Rotman Research Institute, Baycrest Centre, Toronto, Ontario, Canada M6A 2E1.

出版信息

Brain Res. 2011 Apr 28;1387:116-24. doi: 10.1016/j.brainres.2011.02.062. Epub 2011 Feb 26.

Abstract

Although an object-based account of auditory attention has become an increasingly popular model for understanding how temporally overlapping sounds are segregated, relatively little is known about the cortical circuit that supports such ability. In the present study, we applied a beamformer spatial filter to magnetoencephalography (MEG) data recorded during an auditory paradigm that used inharmonicity to promote the formation of multiple auditory objects. Using this unconstrained, data-driven approach, the evoked field component linked with the perception of multiple auditory objects (i.e., the object-related negativity; ORNm), was found to be associated with bilateral auditory cortex sources that were distinct from those coinciding with the P1m, N1m, and P2m responses elicited by sound onset. The right hemispheric ORNm source in particular was consistently positioned anterior to the other sources across two experiments. These findings are consistent with earlier proposals of multiple auditory object detection being associated with generators in the auditory cortex and further suggest that these neural populations are distinct from the long latency evoked responses reflecting the detection of sound onset.

摘要

虽然基于对象的听觉注意力模型已经成为理解如何分离时间上重叠声音的一种越来越流行的模型,但对于支持这种能力的皮质电路却知之甚少。在本研究中,我们在听觉范式中应用了波束形成器空间滤波器,该范式使用非谐性来促进多个听觉对象的形成。使用这种无约束的、数据驱动的方法,与感知多个听觉对象相关的诱发场分量(即与对象相关的负性;ORNm)与双侧听觉皮层源相关,这些源与与声音起始引起的 P1m、N1m 和 P2m 反应重合的源不同。特别是右半球的 ORNm 源在两个实验中都始终位于其他源的前面。这些发现与先前提出的多个听觉对象检测与听觉皮层中的发生器有关的观点一致,并进一步表明这些神经群体与反映声音起始检测的长潜伏期诱发反应不同。

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