FedSynthCT-Brain: A Federated Learning Framework for Multi-Institutional Brain MRI-to-CT Synthesis
Ciro Benito Raggio, Mathias Krohmer Zabaleta, Nils Skupien, Oliver, Blanck, Francesco Cicone, Giuseppe Lucio Cascini, Paolo Zaffino, Lucia, Migliorelli, Maria Francesca Spadea

TL;DR
This paper introduces FedSynthCT-Brain, a federated learning framework for MRI-to-CT synthesis in brain imaging, enabling multi-institutional collaboration without data sharing, and demonstrates its effectiveness on multicentre datasets.
Contribution
First application of federated learning for MRI-to-sCT synthesis, enabling collaborative training across multiple centres while preserving data privacy.
Findings
Federated model achieved median MAE of 102.0 HU on unseen data.
Acceptable SSIM and PNSR metrics demonstrated good image quality.
Method enhances generalisability of MRI-to-sCT models across diverse clinical settings.
Abstract
The generation of Synthetic Computed Tomography (sCT) images has become a pivotal methodology in modern clinical practice, particularly in the context of Radiotherapy (RT) treatment planning. The use of sCT enables the calculation of doses, pushing towards Magnetic Resonance Imaging (MRI) guided radiotherapy treatments. Deep learning methods for MRI-to-sCT have shown promising results, but their reliance on single-centre training dataset limits generalisation capabilities to diverse clinical settings. Moreover, creating centralised multi-centre datasets may pose privacy concerns. To address the aforementioned issues, we introduced FedSynthCT-Brain, an approach based on the Federated Learning (FL) paradigm for MRI-to-sCT in brain imaging. This is among the first applications of FL for MRI-to-sCT, employing a cross-silo horizontal FL approach that allows multiple centres to…
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Taxonomy
TopicsBrain Tumor Detection and Classification · Functional Brain Connectivity Studies
Methods7 Fastest Ways to Call American Airlines Reservations Number (USA Guide)
