Gohari Nasrin, Hosseini Dastgerdi Zahra, Bernstein Lori J, Alain Claude
Department of Audiology, School of Rehabilitation, Hamadan University of Medical Sciences, Hamadan, Iran.
Department of Audiology, School of Rehabilitation, Isfahan University of Medical Sciences, Isfahan, Iran.
Brain Cogn. 2022 Nov;163:105914. doi: 10.1016/j.bandc.2022.105914. Epub 2022 Sep 22.
The perception of concurrent sound sources depends on processes (i.e., auditory scene analysis) that fuse and segregate acoustic features according to harmonic relations, temporal coherence, and binaural cues (encompass dichotic pitch, location difference, simulated echo). The object-related negativity (ORN) and P400 are electrophysiological indices of concurrent sound perception. Here, we review the different paradigms used to study concurrent sound perception and the brain responses obtained from these paradigms. Recommendations regarding the design and recording parameters of the ORN and P400 are made, and their clinical applications in assessing central auditory processing ability in different populations are discussed.
对同时存在的声源的感知取决于根据谐波关系、时间连贯性和双耳线索(包括双耳音高、位置差异、模拟回声)融合和分离声学特征的过程(即听觉场景分析)。与客体相关的负波(ORN)和P400是同时声音感知的电生理指标。在此,我们回顾了用于研究同时声音感知的不同范式以及从这些范式中获得的大脑反应。提出了关于ORN和P400的设计和记录参数的建议,并讨论了它们在评估不同人群中枢听觉处理能力方面的临床应用。