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DiGMa: A Dual-Domain Collaborative Framework for Efficient Temporal MPI Reconstruction

  • Zining Liu
  • , Gen Shi
  • , Ziwei Chen
  • , Jie Tian*
  • , Hui Zhang*
  • , Jingying Jiang*
  • *Corresponding author for this work
  • Beihang University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Magnetic particle imaging (MPI) is a novel imaging technique offering radiation-free and fast imaging with promise for temporal imaging studies (e.g., vascular and functional imaging). However, MPI temporal reconstruction is challenged by per-frame noise and the cost of joint spacetemporal modeling. In this study, we first propose a dualdomain collaborative framework for efficient temporal MPI reconstruction, named DiGMa, to address the two main challenges. DiGMa performs signal-domain denoising via GCN-based inter-frame modeling, and image-domain enhancement via Mamba that efficiently captures long-range dependencies. The proposed method was evaluated on both simulation and measured data, demonstrating superior performance over traditional approaches. Besides, qualitative results indicate fewer artifacts and superior image quality, while the computational load of the model is also reduced. DiGMa thus achieves a favorable balance between reconstruction quality and computational efficiency for temporal MPI.

Original languageEnglish
Title of host publicationISBI 2026 - 23rd IEEE International Symposium on Biomedical Imaging
PublisherIEEE Computer Society
ISBN (Electronic)9798331577636
DOIs
StatePublished - 2026
Event23rd IEEE International Symposium on Biomedical Imaging, ISBI 2026 - London, United Kingdom
Duration: 8 Apr 202611 Apr 2026

Publication series

NameProceedings - International Symposium on Biomedical Imaging
Volume2026-April
ISSN (Print)1945-7928
ISSN (Electronic)1945-8452

Conference

Conference23rd IEEE International Symposium on Biomedical Imaging, ISBI 2026
Country/TerritoryUnited Kingdom
CityLondon
Period8/04/2611/04/26

Keywords

  • Magnetic particle imaging
  • Mamba
  • graph convolutional network
  • temporal image reconstruction

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