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Digital Twin Brain: a simulation and assimilation platform for whole human brain

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arxiv 2308.01241 v1 pith:JQM5ANFL submitted 2023-08-02 cs.NE q-bio.NC

classification cs.NEq-bio.NC
keywords brainhumansimulationstructurebiologicaldigitalplatformwhole
verification ladder T0 review T1 audit T2 compute T3 formal
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In this work, we present a computing platform named digital twin brain (DTB) that can simulate spiking neuronal networks of the whole human brain scale and more importantly, a personalized biological brain structure. In comparison to most brain simulations with a homogeneous global structure, we highlight that the sparseness, couplingness and heterogeneity in the sMRI, DTI and PET data of the brain has an essential impact on the efficiency of brain simulation, which is proved from the scaling experiments that the DTB of human brain simulation is communication-intensive and memory-access intensive computing systems rather than computation-intensive. We utilize a number of optimization techniques to balance and integrate the computation loads and communication traffics from the heterogeneous biological structure to the general GPU-based HPC and achieve leading simulation performance for the whole human brain-scaled spiking neuronal networks. On the other hand, the biological structure, equipped with a mesoscopic data assimilation, enables the DTB to investigate brain cognitive function by a reverse-engineering method, which is demonstrated by a digital experiment of visual evaluation on the DTB. Furthermore, we believe that the developing DTB will be a promising powerful platform for a large of research orients including brain-inspiredintelligence, rain disease medicine and brain-machine interface.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. DTBIA: An Immersive Visual Analytics System for Brain-Inspired Research

    cs.HC 2025-05 conditional novelty 5.0 of 10

    DTBIA is a VR visual analytics system for exploring functional and structural Digital Twin Brain data, validated by qualitative expert case studies.

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