FUNCTIONAL-ANATOMY OF FOREBRAIN AUDITORY PATHWAYS IN THE BUDGERIGAR (MELOPSITTACUS-UNDULATUS)

被引:56
作者
BRAUTH, SE
HEATON, JT
DURAND, SE
LIANG, WR
HALL, WS
机构
[1] Department of Psychology, University of Maryland, College Park, MD
关键词
AUDITORY CONTROL; VOCAL CONTROL; CALL LEARNING; CALL PRODUCTION; VOCAL LEARNING; VOCAL-MOTOR INTERFACES;
D O I
10.1159/000113578
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
Interconnections of forebrain auditory and vocal control nuclei were mapped in the budgerigar using pathway tracing techniques. The anatomical results indicate four circuits by which auditory information may influence the vocal motor system: (1) direct auditory thalamic projections from nucleus dorsomedialis posterior (DMP) to both the neostriatal higher vocal center (HVC) and robust archistriatal nucleus (RA); (2) direct projections from a neostriatal projection field of DMP (i.e., MAN, the magnocellular nucleus of the neostriatum) to HVC and RA; (3) projections from DMP and other 'accessory' auditory thalamic nuclei to the ventral paleostriatum (VP), which in turn projects to MAN and RA; (4) projections to HVC from the lateral hyperstriatum ventrale (HV), which receives input from nucleus basalis (Pas) as well as from the oval nucleus of the HV (HVo), which receives direct input from RA. Lesion methods were used to evaluate the roles of auditory pathways in call learning and production. The results show that pathways associated with Bas are essential for call production in both adult and unfledged budgerigars, while VP efferents influence vocalization only in young, unfledged budgerigars. Lesions centered in either the primary auditory neostriatum (Field L2a) or the neostriatal area in receipt of Field L input (the ventrolateral neostriatum intermedium or NIVL) did not affect vocalization in juvenile or adult budgerigars.
引用
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页码:210 / 233
页数:24
相关论文
共 48 条
[1]  
[Anonymous], 1980, PROGR PSYCHOBIOLOGY
[2]   ANATOMICAL IDENTIFICATION OF AN AUDITORY PATHWAY FROM A NUCLEUS OF THE LATERAL LEMNISCAL SYSTEM TO THE FRONTAL TELENCEPHALON (NUCLEUS BASALIS) OF THE PIGEON [J].
ARENDS, JJA ;
ZEIGLER, HP .
BRAIN RESEARCH, 1986, 398 (02) :375-381
[3]  
BONKE BA, 1979, CELL TISSUE RES, V200, P101
[4]   FOREBRAIN LESIONS DISRUPT DEVELOPMENT BUT NOT MAINTENANCE OF SONG IN PASSERINE BIRDS [J].
BOTTJER, SW ;
MIESNER, EA ;
ARNOLD, AP .
SCIENCE, 1984, 224 (4651) :901-903
[5]  
BRAUTH S E, 1989, Society for Neuroscience Abstracts, V15, P619
[6]   INVESTIGATION OF CENTRAL AUDITORY NUCLEI IN THE BUDGERIGAR WITH CYTOCHROME-OXIDASE HISTOCHEMISTRY [J].
BRAUTH, SE .
BRAIN RESEARCH, 1990, 508 (01) :142-146
[7]   CALCITONIN-GENE RELATED PEPTIDE IS AN EVOLUTIONARILY CONSERVED MARKER WITHIN THE AMNIOTE THALAMO-TELENCEPHALIC AUDITORY PATHWAY [J].
BRAUTH, SE ;
REINER, A .
JOURNAL OF COMPARATIVE NEUROLOGY, 1991, 313 (02) :227-239
[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]   AUDITORY PATHWAYS IN THE BUDGERIGAR .2. INTRATELENCEPHALIC PATHWAYS [J].
BRAUTH, SE ;
MCHALE, CM .
BRAIN BEHAVIOR AND EVOLUTION, 1988, 32 (04) :193-207
[10]   EFFECTS OF DEAFENING ON THE CONTACT CALL OF THE BUDGERIGAR, MELOPSITTACUS-UNDULATUS [J].
DOOLING, RJ ;
GEPHART, BF ;
PRICE, PH ;
MCHALE, C ;
BRAUTH, SE .
ANIMAL BEHAVIOUR, 1987, 35 :1264-1266