News/2026

From IACL
Revision as of 20:52, 17 February 2026 by Aaron (talk | contribs) (Spie-MI 2026 pictures and papers.)
Jump to navigation Jump to search


2026

February

  • IACL papers at the Proceedings of SPIE Medical Imaging (SPIE-MI 2026), Vancouver, Canada, February 15–19, 2026.
    • Liwei Zhou presented "Pipeline refinement on diffusion tractography and T1 tractography in the presence of multiple sclerosis lesions".
    • Kathleen M. Bartz presented "Construction of a normative database of human retinal thicknesses from existing UK BioBank OCT Participants" and "Automated quality assurance of parcellation techniques with Statistically-based Failure Evaluation (SAFE)".
    • Prof. Prince presented Dr. Wei's work titled "Optical coherence tomography harmonization via dual diffusion implicit bridges".


IACL at SPIE-MI 2026
2026-SPIE-Bartz-Poster-01.png 2026-SPIE-Zhou-Poster-01.png 2026-SPIE-Group-75.png
 




Savannah P. Hays presents "The Impact of Site Variability on Volumetric Analysis in a Multi-Site MRI Dataset: A Case for Image Harmonization" at the 11th annual Americas Committee for Treatment and Research in Multiple Sclerosis (ACTRIMS), San Diego, CA, February 5–7, 2026.
  • Savannah P. Hays presented "The Impact of Site Variability on Volumetric Analysis in a Multi-Site MRI Dataset: A Case for Image Harmonization" at the 11th annual Americas Committee for Treatment and Research in Multiple Sclerosis (ACTRIMS), San Diego, CA, February 5–7, 2026.


January

  • Dr. Zhang's paper titled "UNISELF: A Unified Network with Instance Normalization and Self-Ensembled Lesion Fusion for Multiple Sclerosis Lesion Segmentation" appears in Medical Image Analysis. DOI: "10.1016/j.media.2026.103954" arXiv: "2508.03982"
  • Our paper titled "Unsupervised learning of spatially varying regularization for diffeomorphic image registration" led by Dr. Junyu Chen is available from Medical Image Analysis. DOI: "10.1016/j.media.2025.103887"
  • Savannah P. Hays has her first journal article published in SPIE Journal of Medical Imaging, titled "Synthetic multi-inversion time magnetic resonance images for visualization of subcortical structures". DOI: "10.1117/1.JMI.13.1.014002" arXiv: "2506.04173"