Open access
Aug 2026
The continuous accumulation of genetic mutations in influenza A viruses (IAVs) drives antigenic drift, necessitating precise antigenic prediction for optimal vaccine strain selection. While sequence-based methods have advanced antigenic surveillance, they neglect the three-dimensional structural context that fundamenta...
Xing-Yi Li, Chun-Yan Zhou, Ke-Xin Xiao et al.
· bioRxiv · 0 citations
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Open access
Sep 2026
MOTIVATION
Human influenza A/H3N2 viruses undergo rapid antigenic evolution primarily driven by the hemagglutinin subunit 1 (HA1). Within HA1, amino acid substitutions under immune pressure cause antigenic drift, necessitating frequent updates to vaccine strains. While hemagglutination inhibition (HI) assays remain the...
Xing-Yi Li, Ke-Xin Xiao, Chun-Yan Zhou et al.
· Bioinformatics · 0 citations
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Open access
Jul 2026
Abstract Motivation Advances in spatial transcriptomics (ST) technologies have made it possible to jointly acquire gene expression and histological image information while preserving spatial coordinates. This breakthrough presents unprecedented opportunities for the precise dissection of spatial heterogeneity in comple...
Xingyi Li, Dongmin Zhao, Xiangting Jia et al.
· Bioinformatics · 0 citations
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Open access
Jul 2026
Recent advances in spatially resolved transcriptomics have enabled large-scale measurement of gene expression while preserving spatial context, facilitating the investigation of spatial heterogeneity within tissues. In this study, we propose SpatialGEO, a geometric-aware deep learning framework that integrates gene exp...
Xingyi Li, Xiangting Jia, Dongmin Zhao et al.
· Communications Biology · 1 citation
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