Large-Scale Synchronized Activity during Vocal Deviance Detection in the Zebra Finch Auditory Forebrain

被引:22
作者
Beckers, Gabriel J. L. [1 ]
Gahr, Manfred [1 ]
机构
[1] Max Planck Inst Ornithol, Dept Behav Neurobiol, D-82319 Seewiesen, Germany
关键词
STIMULUS-SPECIFIC ADAPTATION; LOCAL-FIELD POTENTIALS; MISMATCH NEGATIVITY; SONGBIRD FOREBRAIN; NATURAL SOUNDS; TAENIOPYGIA-GUTTATA; TAENOPYGIA-GUTTATA; STREAM SEGREGATION; NEURAL MECHANISMS; CORTICAL-NEURONS;
D O I
10.1523/JNEUROSCI.6045-11.2012
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Auditory systems bias responses to sounds that are unexpected on the basis of recent stimulus history, a phenomenon that has been widely studied using sequences of unmodulated tones (mismatch negativity; stimulus-specific adaptation). Such a paradigm, however, does not directly reflect problems that neural systems normally solve for adaptive behavior. We recorded multiunit responses in the caudomedial auditory forebrain of anesthetized zebra finches (Taeniopygia guttata) at 32 sites simultaneously, to contact calls that recur probabilistically at a rate that is used in communication. Neurons in secondary, but not primary, auditory areas respond preferentially to calls when they are unexpected (deviant) compared with the same calls when they are expected (standard). This response bias is predominantly due to sites more often not responding to standard events than to deviant events. When two call stimuli alternate between standard and deviant roles, most sites exhibit a response bias to deviant events of both stimuli. This suggests that biases are not based on a use-dependent decrease in response strength but involve a more complex mechanism that is sensitive to auditory deviance per se. Furthermore, between many secondary sites, responses are tightly synchronized, a phenomenon that is driven by internal neuronal interactions rather than by the timing of stimulus acoustic features. We hypothesize that this deviance-sensitive, internally synchronized network of neurons is involved in the involuntary capturing of attention by unexpected and behaviorally potentially relevant events in natural auditory scenes.
引用
收藏
页码:10594 / 10608
页数:15
相关论文
共 57 条
[1]   Development of selectivity for natural sounds in the songbird auditory forebrain [J].
Amin, Noopur ;
Doupe, Allison ;
Theunissen, Frederic E. .
JOURNAL OF NEUROPHYSIOLOGY, 2007, 97 (05) :3517-3531
[2]   Stimulus-Specific Adaptation Occurs in the Auditory Thalamus [J].
Anderson, Lucy A. ;
Christianson, G. Bjoern ;
Linden, Jennifer F. .
JOURNAL OF NEUROSCIENCE, 2009, 29 (22) :7359-7363
[3]   Stimulus-Specific Adaptation in the Auditory Thalamus of the Anesthetized Rat [J].
Antunes, Flora M. ;
Nelken, Israel ;
Covey, Ellen ;
Malmierca, Manuel S. .
PLOS ONE, 2010, 5 (11)
[4]   Mixed-effects modeling with crossed random effects for subjects and items [J].
Baayen, R. H. ;
Davidson, D. J. ;
Bates, D. M. .
JOURNAL OF MEMORY AND LANGUAGE, 2008, 59 (04) :390-412
[5]   Neural Processing of Short-Term Recurrence in Songbird Vocal Communication [J].
Beckers, Gabriel J. L. ;
Gahr, Manfred .
PLOS ONE, 2010, 5 (06)
[6]   Auditory stream segregation in the songbird forebrain: Effects of time intervals on responses to interleaved tone sequences [J].
Bee, MA ;
Klump, GM .
BRAIN BEHAVIOR AND EVOLUTION, 2005, 66 (03) :197-214
[7]   Primitive auditory stream segregation: A neurophysiological study in the songbird forebrain [J].
Bee, MA ;
Klump, GM .
JOURNAL OF NEUROPHYSIOLOGY, 2004, 92 (02) :1088-1104
[8]   Neural adaptation to tone sequences in the songbird forebrain: patterns, determinants, and relation to the build-up of auditory streaming [J].
Bee, Mark A. ;
Micheyl, Christophe ;
Oxenham, Andrew J. ;
Klump, Georg M. .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-NEUROETHOLOGY SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 2010, 196 (08) :543-557
[9]   Polytrodes: High-density silicon electrode arrays for large-scale multiunit recording [J].
Blanche, TJ ;
Spacek, MA ;
Hetke, JF ;
Swindale, NV .
JOURNAL OF NEUROPHYSIOLOGY, 2005, 93 (05) :2987-3000
[10]   Neural mechanisms of birdsong memory [J].
Bolhuis, JJ ;
Gahr, M .
NATURE REVIEWS NEUROSCIENCE, 2006, 7 (05) :347-357