Journal Article10.1126/SCIENCE.1235381
BigBrain: An Ultrahigh-Resolution 3D Human Brain Model
Katrin Amunts,Claude Lepage,Louis Borgeat,Hartmut Mohlberg,Timo Dickscheid,M. Rousseau,Sebastian Bludau,Pierre-Louis Bazin,Lindsay B. Lewis,Ana-Maria Oros-Peusquens,Nadim Joni Shah,Thomas Lippert,Karl Zilles,Alan C. Evans +13 more
TL;DR: BigBrain is a free, publicly available tool that provides considerable neuroanatomical insight into the human brain, thereby allowing the extraction of microscopic data for modeling and simulation, and enables testing of hypotheses on optimal path lengths between interconnected cortical regions or on spatial organization of genetic patterning.
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Abstract: Reference brains are indispensable tools in human brain mapping, enabling integration of multimodal data into an anatomically realistic standard space. Available reference brains, however, are restricted to the macroscopic scale and do not provide information on the functionally important microscopic dimension. We created an ultrahigh-resolution three-dimensional (3D) model of a human brain at nearly cellular resolution of 20 micrometers, based on the reconstruction of 7404 histological sections. “BigBrain” is a free, publicly available tool that provides considerable neuroanatomical insight into the human brain, thereby allowing the extraction of microscopic data for modeling and simulation. BigBrain enables testing of hypotheses on optimal path lengths between interconnected cortical regions or on spatial organization of genetic patterning, redefining the traditional neuroanatomy maps such as those of Brodmann and von Economo.
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Anatomy of the temporal lobe: From macro to micro
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Generative models and abstractions for large-scale neuroanatomy datasets.
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Left prefrontal impact links subthalamic stimulation with depressive symptoms
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TL;DR: The results suggest that for the left STN-DBS lead, placement impacting fibers to left prefrontal areas should be avoided to maximize improvement of depressive symptoms.
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