Cluster of Excellence Hearing4all, Animal Physiology and Behavior Group, Department for Neuroscience, School for Medicine and Health Sciences, Carl von Ossietzky University Oldenburg, 26111 Oldenburg, Germany
Cluster of Excellence Hearing4all, Animal Physiology and Behavior Group, Department for Neuroscience, School for Medicine and Health Sciences, Carl von Ossietzky University Oldenburg, 26111 Oldenburg, Germany.
Proc Natl Acad Sci U S A. 2014 Jul 22;111(29):10738-43. doi: 10.1073/pnas.1321487111. Epub 2014 Jul 7.
Segregating streams of sounds from sources in complex acoustic scenes is crucial for perception in real world situations. We analyzed an objective psychophysical measure of stream segregation obtained while simultaneously recording forebrain neurons in the European starlings to investigate neural correlates of segregating a stream of A tones from a stream of B tones presented at one-half the rate. The objective measure, sensitivity for time shift detection of the B tone, was higher when the A and B tones were of the same frequency (one stream) compared with when there was a 6- or 12-semitone difference between them (two streams). The sensitivity for representing time shifts in spiking patterns was correlated with the behavioral sensitivity. The spiking patterns reflected the stimulus characteristics but not the behavioral response, indicating that the birds' primary cortical field represents the segregated streams, but not the decision process.
将复杂声学场景中的声音源分离是感知真实世界情况的关键。我们分析了同时记录欧洲椋鸟前脑神经元时获得的一种客观心理物理流分离度量,以研究从以一半速率呈现的 B 调流中分离 A 调流的神经相关性。当 A 调和 B 调具有相同频率(单一流)时,B 调时间移位检测的客观度量(敏感性)比它们之间存在 6 或 12 个半音差异(两流)时更高。在尖峰模式中表示时间移位的敏感性与行为敏感性相关。尖峰模式反映了刺激特征,但不反映行为反应,这表明鸟类的主要皮质场代表了分离的流,但不代表决策过程。