A computational method is proposed to generate the full-scale dataset of the tridimensional position and connectivity of neurons in the CA1 region of the human hippocampus starting from high-resolution microscopy images and experimental data.The increasing availability of quantitative data on the human brain is opening new avenues to study neural function and dysfunction, thus bringing us closer and closer to the implementation of digital twin applications for personalized medicine. Here we provide a resource to the neuroscience community: a computational method to generate full-scale scaffold model of human brain regions starting from microscopy images. We have benchmarked the method to reconstruct the CA1 region of a right human hippocampus, which accounts for about half of the entire right hippocampal formation. Together with 3D soma positioning we provide a connectivity matrix generated using a morpho-anatomical connection strategy based on axonal and dendritic probability density functions accounting for morphological properties of hippocampal neurons. The data and algorithms are supplied in a ready-to-use format, suited to implement computational models at different scales and detail.

Full-scale scaffold model of the human hippocampus CA1 area / Gandolfi, D; Mapelli, J; Solinas, Smg; Triebkorn, P; D'Angelo, E; Jirsa, V; Migliore, M. - In: NATURE COMPUTATIONAL SCIENCE. - ISSN 2662-8457. - 3:3(2023), pp. 264-276. [10.1038/s43588-023-00417-2]

Full-scale scaffold model of the human hippocampus CA1 area

Solinas, SMG
Software
;
2023-01-01

Abstract

A computational method is proposed to generate the full-scale dataset of the tridimensional position and connectivity of neurons in the CA1 region of the human hippocampus starting from high-resolution microscopy images and experimental data.The increasing availability of quantitative data on the human brain is opening new avenues to study neural function and dysfunction, thus bringing us closer and closer to the implementation of digital twin applications for personalized medicine. Here we provide a resource to the neuroscience community: a computational method to generate full-scale scaffold model of human brain regions starting from microscopy images. We have benchmarked the method to reconstruct the CA1 region of a right human hippocampus, which accounts for about half of the entire right hippocampal formation. Together with 3D soma positioning we provide a connectivity matrix generated using a morpho-anatomical connection strategy based on axonal and dendritic probability density functions accounting for morphological properties of hippocampal neurons. The data and algorithms are supplied in a ready-to-use format, suited to implement computational models at different scales and detail.
2023
Full-scale scaffold model of the human hippocampus CA1 area / Gandolfi, D; Mapelli, J; Solinas, Smg; Triebkorn, P; D'Angelo, E; Jirsa, V; Migliore, M. - In: NATURE COMPUTATIONAL SCIENCE. - ISSN 2662-8457. - 3:3(2023), pp. 264-276. [10.1038/s43588-023-00417-2]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/306348
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