Comparative analysis of the macroscale structural connectivity in the macaque and human brain.
Comparative analysis of the macroscale structural connectivity in the macaque and human brain.
复制标题
DOI:
10.1371/journal.pcbi.1003529
复制
发表时间:
2014-03
影响因子:
4.3
通讯作者:
Stiers P
中科院分区:
文献类型:
--
作者:
Goulas A;Bastiani M;Bezgin G;Uylings HB;Roebroeck A;Stiers P
The macaque brain serves as a model for the human brain, but its suitability is challenged by unique human features, including connectivity reconfigurations, which emerged during primate evolution. We perform a quantitative comparative analysis of the whole brain macroscale structural connectivity of the two species. Our findings suggest that the human and macaque brain as a whole are similarly wired. A region-wise analysis reveals many interspecies similarities of connectivity patterns, but also lack thereof, primarily involving cingulate regions. We unravel a common structural backbone in both species involving a highly overlapping set of regions. This structural backbone, important for mediating information across the brain, seems to constitute a feature of the primate brain persevering evolution. Our findings illustrate novel evolutionary aspects at the macroscale connectivity level and offer a quantitative translational bridge between macaque and human research. What are the commonalities and differences of human brains when compared to the brains of other primates? The brain can be conceived as a complex network. Its topological properties constrain its function. Ethical and technical reasons necessitate the use of animal brains, like the macaque monkey, as models for the human brain. However, evolutionary changes, including “brain rewiring”, might result in unique human features. Hence, a detailed and quantitative comparative analysis of the connectivity of the brains of the two species is needed. Here, we undertake this task by adopting techniques analogous to those used in comparative studies in other scientific fields. Our approach reveals converging but also diverging wiring patterns. The brain of the two species as a whole is similarly wired. The majority of the brain regions appear to have evolutionary conserved connectivity patterns while for certain regions this appears not to be the case. We also uncover an evolutionary conserved “structural backbone” in the brain of the two species. Our findings highlight common and unique “wiring properties” of the brains of these two primate species and offer a quantitative basis for translating findings from macaque research to human research.
登录
查看更多内容
影响因子:
16.2
作者:
Bosman CA;Schoffelen JM;Brunet N;Oostenveld R;Bastos AM;Womelsdorf T;Rubehn B;Stieglitz T;De Weerd P;Fries P
通讯作者:
Fries P
影响因子:
5.3
作者:
Croxson, PL;Johansen-Berg, H;Rushworth, MFS
通讯作者:
Rushworth, MFS
影响因子:
7.8
作者:
Bezgin, Gleb;Wanke, Egon;Koetter, Rolf
通讯作者:
Koetter, Rolf
影响因子:
16.2
作者:
de Pasquale F;Della Penna S;Snyder AZ;Marzetti L;Pizzella V;Romani GL;Corbetta M
通讯作者:
Corbetta M
影响因子:
5.7
作者:
Fillard, Pierre;Descoteaux, Maxime;Poupon, Cyril
通讯作者:
Poupon, Cyril