Retinotopic Organization of Human Ventral Visual Cortex

被引:236
作者
Arcaro, Michael J. [1 ,2 ]
McMains, Stephanie A. [1 ,2 ]
Singer, Benjamin D. [2 ]
Kastner, Sabine [1 ,2 ,3 ]
机构
[1] Princeton Univ, Dept Psychol, Princeton, NJ 08540 USA
[2] Princeton Univ, Ctr Study Brain Mind & Behav, Princeton, NJ 08540 USA
[3] Princeton Univ, Princeton Neurosci Inst, Princeton, NJ 08540 USA
基金
美国国家卫生研究院;
关键词
HUMAN EXTRASTRIATE CORTEX; LATERAL OCCIPITAL COMPLEX; SURFACE-BASED ANALYSIS; HUMAN OBJECT AREAS; FUNCTIONAL MRI; NEURAL SYSTEMS; FIELD MAPS; HUMAN-BODY; FACE AREA; REPRESENTATION;
D O I
10.1523/JNEUROSCI.2807-09.2009
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Functional magnetic resonance imaging studies have shown that human ventral visual cortex anterior to human visual area V4 contains two visual field maps, VO-1 and VO-2, that together form the ventral occipital (VO) cluster (Brewer et al., 2005). This cluster is characterized by common functional response properties and responds preferentially to color and object stimuli. Here, we confirm the topographic and functional characteristics of the VO cluster and describe two new visual field maps that are located anterior to VO-2 extending across the collateral sulcus into the posterior parahippocampal cortex (PHC). We refer to these visual field maps as parahippocampal areas PHC-1 and PHC-2. Each PHC map contains a topographic representation of contralateral visual space. The polar angle representation in PHC-1 extends from regions near the lower vertical meridian (that is the shared border with VO-2) to those close to the upper vertical meridian (that is the shared border with PHC-2). The polar angle representation in PHC-2 is a mirror reversal of the PHC-1 representation. PHC-1 and PHC-2 share a foveal representation and show a strong bias toward representations of peripheral eccentricities. Both the foveal and peripheral representations of PHC-1 and PHC-2 respond more strongly to scenes than to objects or faces, with greater scene preference in PHC-2 than PHC-1. Importantly, both areas heavily overlap with the functionally defined parahippocampal place area. Our results suggest that ventral visual cortex can be subdivided on the basis of topographic criteria into a greater number of discrete maps than previously thought.
引用
收藏
页码:10638 / 10652
页数:15
相关论文
共 61 条
[21]   CHARACTERIZING EVOKED HEMODYNAMICS WITH FMRI [J].
FRISTON, KJ ;
FRITH, CD ;
TURNER, R ;
FRACKOWIAK, RSJ .
NEUROIMAGE, 1995, 2 (02) :157-165
[22]  
GATTASS R, 1988, J NEUROSCI, V8, P1831
[23]   ILAB: A program for postexperimental eye movement analysis [J].
Gitelman, DR .
BEHAVIOR RESEARCH METHODS INSTRUMENTS & COMPUTERS, 2002, 34 (04) :605-612
[24]   Differential processing of objects under various viewing conditions in the human lateral occipital complex [J].
Grill-Spector, K ;
Kushnir, T ;
Edelman, S ;
Avidan, G ;
Itzchak, Y ;
Malach, R .
NEURON, 1999, 24 (01) :187-203
[25]  
Grill-Spector K, 1998, HUM BRAIN MAPP, V6, P316, DOI 10.1002/(SICI)1097-0193(1998)6:4<316::AID-HBM9>3.0.CO
[26]  
2-6
[27]   The human visual cortex [J].
Grill-Spector, K ;
Malach, R .
ANNUAL REVIEW OF NEUROSCIENCE, 2004, 27 :649-677
[28]   Topographic organization in and near human visual area V4 [J].
Hansen, Kathleen A. ;
Kay, Kendrick N. ;
Gallant, Jack L. .
JOURNAL OF NEUROSCIENCE, 2007, 27 (44) :11896-11911
[29]   Eccentricity bias as an organizing principle for human high-order object areas [J].
Hasson, U ;
Levy, I ;
Behrmann, M ;
Hendler, T ;
Malach, R .
NEURON, 2002, 34 (03) :479-490
[30]   Large-scale mirror-symmetry organization of human occipito-temporal object areas [J].
Hasson, U ;
Harel, M ;
Levy, I ;
Malach, R .
NEURON, 2003, 37 (06) :1027-1041