RELATIONSHIP BETWEEN ORIENTATION DOMAINS, CYTOCHROME-OXIDASE STRIPES, AND INTRINSIC HORIZONTAL CONNECTIONS IN SQUIRREL-MONKEY AREA V2

被引:114
作者
MALACH, R [1 ]
TOOTELL, RBH [1 ]
MALONEK, D [1 ]
机构
[1] HARVARD UNIV,SCH MED,DEPT NEUROBIOL,BOSTON,MA 02115
关键词
D O I
10.1093/cercor/4.2.151
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Area V2, the main target of primary visual cortex projections, is characterized by a striking functional and connectional compartmentalization. Many aspects of this organization are correlated to three sets of stripes (thick, thin, and pale) revealed by cytochrome oxidase (CO) staining, Several questions related to the physiological properties of these compartments, their intrinsic connections, and points of similarity with area V1 modules are still unresolved. We have addressed some of these questions by combining the techniques of optical imaging of intrinsic signals, tract tracing, and CO histochemistry in the same patches of areas V1 and V2 of the squirrel monkey. The following observations were made. Orientation domains: in area V1 these are organized in narrow bands, while in area V2 they form patches. In area V2, domain width and distance between domains are approximately double that found in area Vt, Orientation and Ca stripe organization: orientation tuning was organized so that highly selective regions were centered on thick CO stripes while regions of broad orientation selectivity were centered on thin CO stripes. However, the orientation domains appeared to ignore borders between thick and pale stripes, Intrinsic connections: injections of the sensitive tracer biocytin into area V2 labeled a dense network of horizontally projecting fibers that were organized in columnar patches. Patches were small (mean width, 211 mu m; mean length, 342 mu m) and the labeling pattern extended over 4-5 mm. Axonal patches and CO stripes: Axonal patches found were in all three stripe compartments. However, injections that straddled the borders of thick/pale stripe compartments produced axonal projections that tended to cluster around border regions. Axonal patches and orientation domains: V2 injections produced labeling in V1 that appeared to be organized in narrow bands, reminiscent of orientation domain distribution in V1. Within area V2, axonal patches targeted a wide range of orientation domains, but appeared to avoid domains having orthogonal orientation preference to that found at the injection site. To conclude, our results show, on the one hand, a measure of functional specificity for the CO stripes and the intrinsic connections. On the other hand, they indicate additional substructures within area V2, whose precise relationship to the known compartmental organization remains to be clarified.
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页码:151 / 165
页数:15
相关论文
共 42 条
[1]   CORTICAL HIERARCHY REFLECTED IN THE ORGANIZATION OF INTRINSIC CONNECTIONS IN MACAQUE MONKEY VISUAL-CORTEX [J].
AMIR, Y ;
HAREL, M ;
MALACH, R .
JOURNAL OF COMPARATIVE NEUROLOGY, 1993, 334 (01) :19-46
[2]   RELATIONSHIPS BETWEEN ORIENTATION-PREFERENCE PINWHEELS, CYTOCHROME-OXIDASE BLOBS, AND OCULAR-DOMINANCE COLUMNS IN PRIMATE STRIATE CORTEX [J].
BARTFELD, E ;
GRINVALD, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (24) :11905-11909
[3]   VOLTAGE-SENSITIVE DYES REVEAL A MODULAR ORGANIZATION IN MONKEY STRIATE CORTEX [J].
BLASDEL, GG ;
SALAMA, G .
NATURE, 1986, 321 (6070) :579-585
[5]  
BONHOEFFER T, 1993, J NEUROSCI, V13, P4157
[6]   ISO-ORIENTATION DOMAINS IN CAT VISUAL-CORTEX ARE ARRANGED IN PINWHEEL-LIKE PATTERNS [J].
BONHOEFFER, T ;
GRINVALD, A .
NATURE, 1991, 353 (6343) :429-431
[7]   CORTICAL CONNECTIONS OF AREA 18 AND DORSOLATERAL VISUAL-CORTEX IN SQUIRREL-MONKEYS [J].
CUSICK, CG ;
KAAS, JH .
VISUAL NEUROSCIENCE, 1988, 1 (02) :211-237
[8]   SEGREGATION OF EFFERENT CONNECTIONS AND RECEPTIVE-FIELD PROPERTIES IN VISUAL AREA V2 OF THE MACAQUE [J].
DEYOE, EA ;
VANESSEN, DC .
NATURE, 1985, 317 (6032) :58-61
[9]   CONCURRENT PROCESSING STREAMS IN MONKEY VISUAL-CORTEX [J].
DEYOE, EA ;
VANESSEN, DC .
TRENDS IN NEUROSCIENCES, 1988, 11 (05) :219-226
[10]  
GILBERT CD, 1989, J NEUROSCI, V9, P2432