Song System Auditory Responses Are Stable and Highly Tuned During Sedation, Rapidly Modulated and Unselective During Wakefulness, and Suppressed By Arousal
- 1 November 2003
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 90 (5) , 2884-2899
- https://doi.org/10.1152/jn.00391.2003
Abstract
We used auditory responsiveness in the avian song system to investigate the complex relationship between behavioral state and sensory processing in a high-order sensorimotor brain area. We present evidence from recordings in awake, anesthetized, and sleeping male zebra finches ( Taeniopygia guttata) that auditory responsiveness in nucleus HVc is profoundly affected by changes in behavioral state. In anesthetized and sleeping birds, auditory responses were characterized by an increase in firing rate that was selective for the bird's own song (BOS) and highly stable over time. In contrast, HVc responses during wakefulness were extremely variable and transitioned between undetectable and robust levels over short intervals. Surprisingly, auditory responses in awake birds were not selective for the BOS stimulus. The variability of HVc auditory responses in awake birds suggests that, as in mammals, wakefulness is not a uniform behavioral state. Rather, auditory responsiveness likely is continually influenced by variables such as arousal state. We therefore developed several experimental paradigms in which we could manipulate arousal levels during auditory stimulus presentation. In all cases, arousal suppressed HVc auditory responses. This effect was specific to the song system, as auditory responses in Field L, a primary auditory area that is a source of auditory input to HVc, were unaffected. While arousal acts as a negative regulator of HVc auditory responsiveness, the presence and variability of the responses observed in awake, alert birds suggests that other mechanisms, such as attention, may enhance auditory responsiveness. The interplay between behavioral state and sensory processing may regulate song system responsiveness according to the bird's behavioral and social context.Keywords
This publication has 53 references indexed in Scilit:
- Cortical sensory suppression during arousal is due to the activity‐dependent depression of thalamocortical synapsesThe Journal of Physiology, 2002
- Different temporal processing of sensory inputs in the rat thalamus during quiescent and information processing states in vivoThe Journal of Physiology, 2002
- Properties of Primary Sensory (Lemniscal) Synapses in the Ventrobasal Thalamus and the Relay of High-Frequency Sensory InputsJournal of Neurophysiology, 2002
- Song Replay During Sleep and Computational Rules for Sensorimotor Vocal LearningScience, 2000
- Identification of the origin of catecholaminergic inputs to HVc in canaries by retrograde tract tracing combined with tyrosine hydroxylase immunocytochemistryJournal of Chemical Neuroanatomy, 2000
- Spike timing in the mammalian visual systemCurrent Opinion in Neurobiology, 1999
- Behavioral State Modulation of Auditory Activity in a Vocal Motor SystemScience, 1998
- The distribution of tyrosine hydroxylase immunoreactivity in the brains of male and female zebra finchesJournal of Neurobiology, 1993
- Altered Perception of Species-Specific Song by Female Birds After Lesions of a Forebrain NucleusScience, 1991
- Determination of the transfer ratio of cat's geniculate neurons through quasi-intracellular recordings and the relation with the level of alertnessExperimental Brain Research, 1972