Postnatal development of interhemispheric asymmetry in the cytoarchitectuve of human area 4

被引:53
作者
Amunts, K
SchmidtPassos, F
Schleicher, A
Zilles, K
机构
[1] C. and O. Vogt Inst. for Brain Res., Heinrich Heine University, D-40001 Düsseldorf
来源
ANATOMY AND EMBRYOLOGY | 1997年 / 196卷 / 05期
关键词
interhemispheric asymmetry; cytoarchitecture; postnatal ontogeny; human motor cortex; morphometry;
D O I
10.1007/s004290050107
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
The postnatal development of interhemispheric asymmetry was analyzed in the primary motor cortex (area 4) of 20 human brains with quantitative cytoarchitectonic techniques. The volume fraction of cortical tissue occupied by cell bodies (grey level index) was deter mined by automated image analysis. In children as well as in adults, the volume fraction of cell bodies averaged over all cortical layers was greater on the right than on the left. Thus, the space between cell bodies, i.e. the volume fraction of neuropil containing axons, dendrites and synapses, was greater in the left than in the right primary motor cortex. At the level of single layers, however, interhemispheric asymmetry of the neuropil volume fraction differed between age groups. The supragranular layers were significantly less asymmetrical in children than in adults, whereas the infragranular layers showed a similar degree of asymmetry in both age groups. Thus, the postnatal development of the architectonic asymmetry in the supra- and infragranular layers of area 4 follows the same sequence of maturation as found during neuronal migration, i.e. an inside-to-outside gradient. Comparing the layer-specific developmental pattern with available functional data, it was found that the structural maturation of interhemispheric asymmetry in the supragranular layers correlates with the development of hand preference.
引用
收藏
页码:393 / 402
页数:10
相关论文
共 71 条
[1]  
AMUNTS K, 1995, ANAT EMBRYOL, V192, P557
[2]   Asymmetry in the human motor cortex and handedness [J].
Amunts, K ;
Schlaug, G ;
Schleicher, A ;
Steinmetz, H ;
Dabringhaus, A ;
Roland, PE ;
Zilles, K .
NEUROIMAGE, 1996, 4 (03) :216-222
[3]  
Amunts K, 1997, HUM BRAIN MAPP, V5, P206, DOI 10.1002/(SICI)1097-0193(1997)5:3<206::AID-HBM5>3.0.CO
[4]  
2-7
[5]   GLIAL HYPERTROPHY IS ASSOCIATED WITH SYNAPTOGENESIS FOLLOWING MOTOR-SKILL LEARNING, BUT NOT WITH ANGIOGENESIS FOLLOWING EXERCISE [J].
ANDERSON, BJ ;
LI, XC ;
ALCANTARA, AA ;
ISAACS, KR ;
BLACK, JE ;
GREENOUGH, WT .
GLIA, 1994, 11 (01) :73-80
[6]   HANDEDNESS IN FAMILIES [J].
ANNETT, M .
ANNALS OF HUMAN GENETICS, 1973, 37 (JUL) :93-105
[7]   GROWTH OF MANUAL PREFERENCE AND SPEED [J].
ANNETT, M .
BRITISH JOURNAL OF PSYCHOLOGY, 1970, 61 (04) :545-&
[8]  
[Anonymous], 1989, PRINCIPLES NEUROLOGY
[9]   THE ONTOGENY OF HUMAN GYRIFICATION [J].
ARMSTRONG, E ;
SCHLEICHER, A ;
OMRAN, H ;
CURTIS, M ;
ZILLES, K .
CEREBRAL CORTEX, 1995, 5 (01) :56-63
[10]   LEARNING CAUSES SYNAPTOGENESIS, WHEREAS MOTOR-ACTIVITY CAUSES ANGIOGENESIS, IN CEREBELLAR CORTEX OF ADULT-RATS [J].
BLACK, JE ;
ISAACS, KR ;
ANDERSON, BJ ;
ALCANTARA, AA ;
GREENOUGH, WT .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (14) :5568-5572