Original Research Article
The effects of background noise on the neural responses to natural sounds in cat primary auditory cortex
Omer Bar-Yosef 1 and Israel Nelken 2, 3*
1 Department of Pediatrics, Safra Children's Hospital, Sheba Medical Center, Israel
2 Department of Neurobiology, the Silberman Institute of Life Sciences, Edmund Safra Campus, , Hebrew University, Israel
3 The Interdisciplinary Center for Neural Computation, Hebrew University, Israel
2 Department of Neurobiology, the Silberman Institute of Life Sciences, Edmund Safra Campus, , Hebrew University, Israel
3 The Interdisciplinary Center for Neural Computation, Hebrew University, Israel
Animal vocalizations in natural settings are invariably accompanied by an acoustic background with a complex statistical structure. We have previously demonstrated that neuronal responses in primary auditory cortex of halothane-anesthetized cats depend strongly on the natural background. Here, we study in detail the neuronal responses to the background sounds and their relationships to the responses to the foreground sounds. Natural bird chirps as well as modifications of these chirps were used. The chirps were decomposed into three components: the clean chirps, their echoes, and the background noise. The last two were weaker than the clean chirp by 13 and 29 dB on average respectively. The test stimuli consisted of the full natural stimulus, the three basic components, and their three pairwise combinations. When the level of the background components (echoes and background noise) presented alone was sufficiently loud to evoke neuronal activity, these background components had an unexpectedly strong effect on the responses of the neurons to the main bird chirp. In particular, the responses to the original chirps were more similar on average to the responses evoked by the two background components than to the responses evoked by the clean chirp, both in terms of the evoked spike count and in terms of the temporal pattern of the responses. These results suggest that some of the neurons responded specifically to the acoustic background even when presented together with the substantially louder main chirp, and may imply that neurons in A1 already participate in auditory source segregation.
Keywords: auditory cortex, cats, natural sounds, electrophysiology, single neurons
Copyright: © 2007 Bar-Yosef and Nelken. This is an open-access article subject to an exclusive license agreement between the authors and the Frontiers Research Foundation, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are credited.
*Correspondence: Israel Nelken, Department of Neurobiology, the Silberman Institute of Life Sciences, Edmund Safra Campus, Hebrew University, Jerusalem 91904, Israel. e-mail: israel@cc.huji.ac.il
Citation: Bar-Yosef O and Nelken I (2007) The effects of background noise on the neural responses to natural sounds in cat primary auditory cortex. Front. Comput. Neurosci. (2007) 1:3. doi:10.3389/neuro.10.003.2007
Received: 30 August 2007; paper pending published: 12 September 2007; accepted: 09 October 2007; published online: 02 November 2007.
Edited by:
Misha Tsodyks, Weizmann Institute of Science, Israel
Reviewed by:
Laurenz Wiskott, Humboldt Universität Berlin, Germany
*Correspondence: Israel Nelken, Department of Neurobiology, the Silberman Institute of Life Sciences, Edmund Safra Campus, Hebrew University, Jerusalem 91904, Israel. e-mail: israel@cc.huji.ac.il


