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. 2024 Sep 17:18:1454856.
doi: 10.3389/fnins.2024.1454856. eCollection 2024.

The digital twin in neuroscience: from theory to tailored therapy

Affiliations

The digital twin in neuroscience: from theory to tailored therapy

Lucius Samo Fekonja et al. Front Neurosci. .

Abstract

Digital twins enable simulation, comprehensive analysis and predictions, as virtual representations of physical systems. They are also finding increasing interest and application in the healthcare sector, with a particular focus on digital twins of the brain. We discuss how digital twins in neuroscience enable the modeling of brain functions and pathology as they offer an in-silico approach to studying the brain and illustrating the complex relationships between brain network dynamics and related functions. To showcase the capabilities of digital twinning in neuroscience we demonstrate how the impact of brain tumors on the brain's physical structures and functioning can be modeled in relation to the philosophical concept of plasticity. Against this technically derived backdrop, which assumes that the brain's nonlinear behavior toward improvement and repair can be modeled and predicted based on MRI data, we further explore the philosophical insights of Catherine Malabou. Malabou emphasizes the brain's dual capacity for adaptive and destructive plasticity. We will discuss in how far Malabou's ideas provide a more holistic theoretical framework for understanding how digital twins can model the brain's response to injury and pathology, embracing Malabou's concept of both adaptive and destructive plasticity which provides a framework to address such yet incomputable aspects of neuroscience and the sometimes seemingly unfavorable dynamics of neuroplasticity helping to bridge the gap between theoretical research and clinical practice.

Keywords: digital twin; network neuroscience; philosophy; plasticity; simulation; theory; translational medicine; tumor.

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Conflict of interest statement

The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.

References

    1. Aerts H., Schirner M., Dhollander T., Jeurissen B., Achten E., Van Roost D., et al. (2020). Modeling brain dynamics after tumor resection using the virtual brain. Neuroimage 213:116738. - PubMed
    1. Aerts H., Schirner M., Jeurissen B., Van Roost D., Achten E., Ritter P., et al. (2018). Modeling brain dynamics in brain tumor patients using the virtual brain. eNeuro 5. 10.1523/ENEURO.0083-18.2018 - DOI - PMC - PubMed
    1. Al-Sehrawy R., Kumar B. (2021). “Digital twins in architecture, engineering, construction and operation,” in Proceedings of the 18th international conference on computing in civil and building engineering. ICCCBE 2020. Lecture notes in civil engineering, eds Toledo Santos E., Scheer S. (Cham: Springer; ).
    1. Ashourvan A., Pequito S., Khambhati A. N., Mikhail F., Baldassano S. N., Davis K. A., et al. (2020). Model-based design for seizure control by stimulation. J. Neural Eng. 17:026009. - PMC - PubMed
    1. Bernhardt B. C., Fadaie F., Liu M., Caldairou B., Gu S., Jefferies E., et al. (2019). Temporal lobe epilepsy: Hippocampal pathology modulates connectome topology and controllability. Neurology 92 e2209–e2220. 10.1212/WNL.0000000000007447 - DOI - PMC - PubMed

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