作者:
Guo, DaluZhang, KeLi, JiaxingKong, YouyongSoutheast University
Jiangsu Provincial Joint International Research Laboratory of Medical Information Processing School of Computer Science and Engineering Nanjing China Southeast University
Ministry of Education Key Laboratory of Computer Network and Information Integration Nanjing China
Exploring the mapping between structural connectivity (SC) and functional connectivity (FC) is of essential importance to understanding the working mechanism of the human brain. Traditional methods are difficult to re...
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My aim in this paper is twofold. First, I provide an analysis of the notion of cognitive homology. In contrast with the well-known concept of structural (or morphological) homology in biology-defined as the same struc...
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My aim in this paper is twofold. First, I provide an analysis of the notion of cognitive homology. In contrast with the well-known concept of structural (or morphological) homology in biology-defined as the same structure in different animals regardless of form and function-the notion of cognitive homology captures the idea that the basic cognitive contribution of a given homologous brain structure tends to remain stable over long evolutionary time scales. Second, I argue that this notion provides a powerful conceptual tool for the study of cognition. Since a cognitive homology will often consist of an evolutionarily conserved relationship between a homologous brain structure and its basic cognitive contribution, such structure-function mappings can be conceived as basic building blocks of human cognition.
Currently little is known about structure-function mappings in the human subcortex. Here we present a large-scale automated meta-analysis on the literature to understand the structure-function mapping in the human sub...
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Currently little is known about structure-function mappings in the human subcortex. Here we present a large-scale automated meta-analysis on the literature to understand the structure-function mapping in the human subcortex. The results provide converging evidence into unique large scale structure-function mappings of the human subcortex based on their functional and anatomical similarity.
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