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Controllable Surface Diffusion Generative Model for Neurodevelopmental Trajectories

Controllable Surface Diffusion Generative Model for Neurodevelopmental Trajectories

来源:Arxiv_logoArxiv
英文摘要

Preterm birth disrupts the typical trajectory of cortical neurodevelopment, increasing the risk of cognitive and behavioral difficulties. However, outcomes vary widely, posing a significant challenge for early prediction. To address this, individualized simulation offers a promising solution by modeling subject-specific neurodevelopmental trajectories, enabling the identification of subtle deviations from normative patterns that might act as biomarkers of risk. While generative models have shown potential for simulating neurodevelopment, prior approaches often struggle to preserve subject-specific cortical folding patterns or to reproduce region-specific morphological variations. In this paper, we present a novel graph-diffusion network that supports controllable simulation of cortical maturation. Using cortical surface data from the developing Human Connectome Project (dHCP), we demonstrate that the model maintains subject-specific cortical morphology while modeling cortical maturation sufficiently well to fool an independently trained age regression network, achieving a prediction accuracy of $0.85 \pm 0.62$.

Zhenshan Xie、Levente Baljer、M. Jorge Cardoso、Emma Robinson

生物科学研究方法、生物科学研究技术生理学

Zhenshan Xie,Levente Baljer,M. Jorge Cardoso,Emma Robinson.Controllable Surface Diffusion Generative Model for Neurodevelopmental Trajectories[EB/OL].(2025-07-21)[2025-08-17].https://arxiv.org/abs/2508.03706.点此复制

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