Carruthers Isaac M, Laplagne Diego A, Jaegle Andrew, Briguglio John J, Mwilambwe-Tshilobo Laetitia, Natan Ryan G, Geffen Maria N
Department of Otorhinolaryngology and Head and Neck Surgery, University of Pennsylvania, Philadelphia, Pennsylvania; Graduate Group in Physics, University of Pennsylvania, Philadelphia, Pennsylvania;
Brain Institute, Federal University of Rio Grande do Norte, Natal, Brazil; and.
J Neurophysiol. 2015 Nov;114(5):2726-40. doi: 10.1152/jn.00095.2015. Epub 2015 Aug 26.
An essential task of the auditory system is to discriminate between different communication signals, such as vocalizations. In everyday acoustic environments, the auditory system needs to be capable of performing the discrimination under different acoustic distortions of vocalizations. To achieve this, the auditory system is thought to build a representation of vocalizations that is invariant to their basic acoustic transformations. The mechanism by which neuronal populations create such an invariant representation within the auditory cortex is only beginning to be understood. We recorded the responses of populations of neurons in the primary and nonprimary auditory cortex of rats to original and acoustically distorted vocalizations. We found that populations of neurons in the nonprimary auditory cortex exhibited greater invariance in encoding vocalizations over acoustic transformations than neuronal populations in the primary auditory cortex. These findings are consistent with the hypothesis that invariant representations are created gradually through hierarchical transformation within the auditory pathway.
听觉系统的一项基本任务是区分不同的通信信号,比如发声。在日常声学环境中,听觉系统需要能够在发声的不同声学失真情况下进行区分。为实现这一点,人们认为听觉系统会构建一种发声表征,这种表征对于发声的基本声学变换具有不变性。神经元群体在听觉皮层内创建这种不变表征的机制才刚刚开始被理解。我们记录了大鼠初级和非初级听觉皮层中神经元群体对原始发声和声学失真发声的反应。我们发现,与初级听觉皮层中的神经元群体相比,非初级听觉皮层中的神经元群体在编码发声时对声学变换表现出更大的不变性。这些发现与这样一种假设一致,即不变表征是通过听觉通路内的层级变换逐渐创建的。