Architecture of the optic chiasm and the mechanisms that sculpt its development

被引:81
作者
Jeffery, G [1 ]
机构
[1] UCL, Inst Ophthalmol, London EC1V 9EL, England
关键词
D O I
10.1152/physrev.2001.81.4.1393
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
At the optic chiasm the two optic nerves fuse, and fibers from each eye cross the midline or turn back and remain uncrossed. Having adopted their pathways the fibers separate to form the two optic tracts. Research into the architecture and development of the chiasm has become an area of increasing interest. Many of its mature features are complex and vary between different animal types. It is probable that numerous factors sculpt its development. The separate ganglion cell classes cross the midline at different locations along the length of the chiasm, reflecting their distinct periods of production as the chiasm develops in a caudo-rostral direction. In some mammals, uncrossed axons are mixed with crossed axons in each hemi-chiasm, whereas in others they remain segregated. These configurations are the product of different developmental mechanisms. The morphology of the chiasm changes significantly during development. Neurons, glia, and the signals they produce play a role in pathway selection. In some animals fiber-fiber interactions are also critical, but only where crossed and uncrossed pathways are mixed in each hemi-chiasm. The importance of the temporal dimension in chiasm development is emphasized by the fact that in some animals uncrossed ganglion cells are generated abnormally early in relation to their retinal location. Furthermore, in albinos, where many cells do not exit the cell cycle at normal times, there are systematic chiasmatic abnormalities in ganglion cell projections.
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页码:1393 / 1414
页数:22
相关论文
共 187 条
[1]   A COMPARISON BETWEEN MELANOTIC AND AMELANOTIC RETINAL-PIGMENT EPITHELIAL-CELLS IN-VITRO CONCERNING THE EFFECTS OF L-DOPA AND OXYGEN ON CELL-CYCLE [J].
AKEO, K ;
TANAKA, Y ;
OKISAKA, S .
PIGMENT CELL RESEARCH, 1994, 7 (03) :145-151
[2]  
ALLODI S, 1992, ANAT EMBRYOL, V185, P489
[3]   NON-DECUSSATING RETINAL-FUGAL FIBER SYNDROME - AN INBORN ACHIASMATIC MALFORMATION ASSOCIATED WITH VISUOTOPIC MISROUTING, VISUAL-EVOKED POTENTIAL IPSILATERAL ASYMMETRY AND NYSTAGMUS [J].
APKARIAN, P ;
BOUR, LJ ;
BARTH, PG ;
WENNIGERPRICK, L ;
VERBEETEN, B .
BRAIN, 1995, 118 :1195-1216
[4]   RETINOFUGAL FIBERS CHANGE CONDUCTION-VELOCITY AND DIAMETER BETWEEN THE OPTIC-NERVE AND TRACT IN FERRETS [J].
BAKER, GE ;
STRYKER, MP .
NATURE, 1990, 344 (6264) :342-345
[5]   CHIASMATIC COURSE OF TEMPORAL RETINAL AXONS IN THE DEVELOPING FERRET [J].
BAKER, GE ;
REESE, BE .
JOURNAL OF COMPARATIVE NEUROLOGY, 1993, 330 (01) :95-104
[6]   PRECHIASMATIC REORDERING OF FIBER DIAMETER CLASSES IN THE RETINOFUGAL PATHWAY OF FERRETS [J].
BAKER, GE .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1990, 2 (01) :24-33
[7]   DISTRIBUTION OF UNCROSSED AXONS ALONG THE COURSE OF THE OPTIC-NERVE AND CHIASM OF RODENTS [J].
BAKER, GE ;
JEFFERY, G .
JOURNAL OF COMPARATIVE NEUROLOGY, 1989, 289 (03) :455-461
[8]   IMMUNOHISTOLOGICAL LOCALIZATION OF THE ADHESION MOLECULES L1, N-CAM, AND MAG IN THE DEVELOPING AND ADULT OPTIC-NERVE OF MICE [J].
BARTSCH, U ;
KIRCHHOFF, F ;
SCHACHNER, M .
JOURNAL OF COMPARATIVE NEUROLOGY, 1989, 284 (03) :451-462
[9]   AN EXUBERANT RETINOCOLLICULAR PATHWAY IN SIAMESE KITTENS - EFFECTS OF COMPETITION AND ABNORMAL ACTIVITY ON ITS MATURATION [J].
BERMAN, NEJ ;
PAYNE, BR .
DEVELOPMENTAL BRAIN RESEARCH, 1985, 22 (02) :197-209
[10]   FIELD LOSS DUE TO LESIONS AT ANTERIOR ANGLE OF CHIASM [J].
BIRD, AC .
PROCEEDINGS OF THE ROYAL SOCIETY OF MEDICINE-LONDON, 1972, 65 (06) :519-&