A window on song auditory processing and perception

被引:102
作者
Mello, CV [1 ]
Velho, TAF [1 ]
Pinaud, R [1 ]
机构
[1] Oregon Hlth & Sci Univ, Inst Neurol Sci, Lab Vocal & Auditory Learning, Beaverton, OR 97006 USA
来源
BEHAVIORAL NEUROBIOLOGY OF BIRDSONG | 2004年 / 1016卷
关键词
auditory; zebra finch; canary; immediate-early gene; zenk;
D O I
10.1196/annals.1298.021
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
We review here evidence that a large portion of the caudomedial telencephalon of songbirds, distinct from the song control circuit, is involved in the perceptual processing of birdsong. When songbirds hear song, a number of caudomedial pallial areas are activated, as revealed by expression of the activity-dependent gene zenk. These areas, which include field L subfields L1 and L3, as well as the adjacent caudomedial nidopallium (NCM) and caudomedial mesopallium (CMM), are part of the central auditory pathway and constitute a lobule in the caudomedial aspect of the telencephalon. Several lines of evidence indicate that the neural circuits integrating this lobule are capable of performing the auditory processing of song based on fine acoustic features. Thus, this lobule is well positioned to mediate song perceptual processing and discrimination, which are required for vocal communication and vocal learning. Importantly, the zenk gene encodes a transcription factor linked to synaptic plasticity, and it regulates the expression of target genes associated with specific neuronal cell functions. The induction of zenk likely represents a key regulatory event in a gene cascade triggered by song and leading to neuronal plasticity. Thus, zenk may be linked to molecular and cellular mechanisms underlying experience-dependent modification of song-responsive circuits. In summary, songbirds possess an elaborate system for song perceptual processing and discrimination that potentially also subserves song-induced neuronal plasticity and song memory formation. The continued use of a multidisciplinary approach that integrates molecular, anatomical, physiological and behavioral methodologies has the potential to provide further significant insights into the underlying neurobiology of the perceptual aspects of vocal communication and learning.
引用
收藏
页码:263 / 281
页数:19
相关论文
共 137 条
[1]  
ANG CWY, 2001, THESIS ROCKFELLER U
[2]   SEXUAL DIMORPHISMS IN THE NEURAL VOCAL CONTROL-SYSTEM IN SONG BIRDS - ONTOGENY AND PHYLOGENY [J].
ARNOLD, AP ;
BOTTJER, SW ;
BRENOWITZ, EA ;
NORDEEN, EJ ;
NORDEEN, KW .
BRAIN BEHAVIOR AND EVOLUTION, 1986, 28 (1-3) :22-31
[3]   REGULATION OF GENE-EXPRESSION IN HIPPOCAMPAL-NEURONS BY DISTINCT CALCIUM SIGNALING PATHWAYS [J].
BADING, H ;
GINTY, DD ;
GREENBERG, ME .
SCIENCE, 1993, 260 (5105) :181-186
[4]   Bird brains and songs: neural mechanisms of birdsong perception and memory [J].
Bolhuis, JJ ;
Eda-Fujiwara, H .
ANIMAL BIOLOGY, 2003, 53 (02) :129-145
[5]   Localized immediate early gene expression related to the strength of song learning in socially reared zebra finches [J].
Bolhuis, JJ ;
Hetebrij, E ;
Den Boer-Visser, AM ;
De Groot, JH ;
Zijlstra, GGO .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2001, 13 (11) :2165-2170
[6]   Localized neuronal activation in the zebra finch brain is related to the strength of song learning [J].
Bolhuis, JJ ;
Zijlstra, GGO ;
den Boer-Visser, AM ;
Van der Zee, EA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (05) :2282-2285
[7]   RESPONSIVENESS OF UNITS IN THE AUDITORY NEOSTRIATUM OF THE GUINEA FOWL (NUMIDA-MELEAGRIS) TO SPECIES-SPECIFIC CALLS AND SYNTHETIC STIMULI .1. TONOTOPY AND FUNCTIONAL ZONES OF FIELD-L [J].
BONKE, D ;
SCHEICH, H ;
LANGNER, G .
JOURNAL OF COMPARATIVE PHYSIOLOGY, 1979, 132 (03) :243-255
[8]   AUDITORY PATHWAYS IN THE BUDGERIGAR .1. THALAMO-TELENCEPHALIC PROJECTIONS [J].
BRAUTH, SE ;
MCHALE, CM ;
BRASHER, CA ;
DOOLING, RJ .
BRAIN BEHAVIOR AND EVOLUTION, 1987, 30 (3-4) :174-199
[9]   ALTERED PERCEPTION OF SPECIES-SPECIFIC SONG BY FEMALE BIRDS AFTER LESIONS OF A FOREBRAIN NUCLEUS [J].
BRENOWITZ, EA .
SCIENCE, 1991, 251 (4991) :303-305
[10]  
Butler A.B., 1996, COMP VERTEBRATE NEUR