CYTOARCHITECTONIC DEFINITION OF PREFRONTAL AREAS IN THE NORMAL HUMAN CORTEX .2. VARIABILITY IN LOCATIONS OF AREAS 9 AND 46 AND RELATIONSHIP TO THE TALAIRACH COORDINATE SYSTEM

被引:479
作者
RAJKOWSKA, G [1 ]
GOLDMANRAKIC, PS [1 ]
机构
[1] YALE UNIV,SCH MED,NEUROBIOL SECT,NEW HAVEN,CT 06510
关键词
D O I
10.1093/cercor/5.4.323
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The human prefrontal cortex can be divided into structurally and functionally distinct cytoarchitectonic areas, but the extent of individual variation in the position, size, and shape of these areas is unknown, Using criteria described in the preceding companion article (Rajkowska and Goldman-Rakic, 1995), as well as visual inspection, we have mapped areas 9 and 46 in the frontal robe of seven postmortem human brains, and completely reconstructed these dorsolateral regions in five of the seven cases, The lateral reconstructions in these five cases were analyzed and superimposed on the lateral view of the Talairach and Tournoux (1988) coordinate system in such a way as to render both the variability and the regions of overlap for the two prefrontal areas in the five different brains, Based on this exercise, we developed a set of conservative Talairach coordinates to define area 9 and 46, Area 9 is located on the dorsal, lateral, and dorsomedial surfaces of the frontal lobe extending along the middle third of the superior frontal gyrus and adjacent portions of the middle frontal gyrus in all cases examined. Area 46 lies on the dorsolateral convexity and is either partially Dr completely surrounded by area 9. It is consistently found on one or more convolutions of the middle frontal gyrus, The superior border of area 46 with adjacent cortex is also variable within the middle and superior frontal sulci, as is the inferior border within the upper wall of the inferior frontal sulcus, The genuine variability in the morphology of the human frontal lobe indicated by our findings suggests that the differences among the classical maps of Brodmann, von Economo and Koskinas, and Sarkissov and others may have been due to normal variation among the brains they analyzed, Such variation may underlie individual differences in the visuospatial and cognitive capacities subserved by these areas.
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页码:323 / 337
页数:15
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共 40 条
[1]   QUANTITATIVE-ANALYSIS OF CEREBRAL ASYMMETRIES - FRONTO-OCCIPITAL CORRELATION, SEXUAL DIMORPHISM AND ASSOCIATION WITH HANDEDNESS [J].
BEAR, D ;
SCHIFF, D ;
SAVER, J ;
GREENBERG, M ;
FREEMAN, R .
ARCHIVES OF NEUROLOGY, 1986, 43 (06) :598-603
[2]  
BLINKOV SM, 1968, HUMAN BRAIN FIGURES, P172
[3]  
BRODAL A, 1981, NEUROLOGICAL ANATOMY, P798
[4]  
Brodmann K., 1909, VERGLEICHENDE LOKALI
[5]   HUMAN CEREBRAL ASYMMETRIES EVALUATED BY COMPUTED-TOMOGRAPHY [J].
CHUI, HC ;
DAMASIO, AR .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1980, 43 (10) :873-878
[6]  
Connolly C. J., 1950, EXTERNAL MORPHOLOGY
[7]   WILLED ACTION AND THE PREFRONTAL CORTEX IN MAN - A STUDY WITH PET [J].
FRITH, CD ;
FRISTON, K ;
LIDDLE, PF ;
FRACKOWIAK, RSJ .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 1991, 244 (1311) :241-246
[8]   PRENATAL REMOVAL OF FRONTAL ASSOCIATION CORTEX IN FETAL RHESUS-MONKEY - ANATOMICAL AND FUNCTIONAL CONSEQUENCES IN POSTNATAL LIFE [J].
GOLDMAN, PS ;
GALKIN, TW .
BRAIN RESEARCH, 1978, 152 (03) :451-485
[9]  
GOLDMANRAKIC PS, 1984, CEREBRAL DOMINANCE B, P177
[10]   CT ASSESSMENT OF RIGHT-LEFT ASYMMETRIES IN THE HUMAN CEREBRAL-CORTEX [J].
HABIB, M ;
RENUCCI, RL ;
VANIER, M ;
CORBAZ, JM ;
SALAMON, G .
JOURNAL OF COMPUTER ASSISTED TOMOGRAPHY, 1984, 8 (05) :922-927