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A Hierarchical Sheaf Spectral Embedding Framework for Single-Cell RNA-seq Analysis

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Single-cell RNA-seq data analysis typically requires representations that capture heterogeneous local structure across multiple scales while remaining stable and interpretable. In this work, we propose a hierarchical sheaf spectral embedding (HSSE) framework that constructs informative cell-level features based on persistent sheaf Laplacian analysis. Starting from scale-dependent low-dimensional embeddings, we define cell-centered local neighborhoods at multiple resolutions. For each local neighborhood, we construct a data-driven cellular sheaf that encodes local relationships among cells. We then compute persistent sheaf Laplacians over sampled filtration intervals and extract spectral statistics that summarize the evolution of local relational structure across scales. These spectral descriptors are aggregated into a unified feature vector for each cell and can be directly used in downstream learning tasks without additional model training. We evaluate HSSE on twelve benchmark single-cell RNA-seq datasets covering diverse biological systems and data scales. Under a consistent classification protocol, HSSE achieves competitive or improved performance compared with existing multiscale and classical embedding-based methods across multiple evaluation metrics. The results demonstrate that sheaf spectral representations provide a robust and interpretable approach for single-cell RNA-seq data representation learning.

Xiang Xiang Wang, Guo-Wei We• 2026

Related benchmarks

TaskDatasetResultRank
Cell Type ClassificationGSE75748 cell
Macro-AUC99.8
6
Cell Type ClassificationGSE82187
Macro-AUC100
6
Cell Type ClassificationGSE84133 human 1
Macro-AUC98.9
6
Cell Type ClassificationGSE84133 human 2
Macro-AUC99.4
6
Cell Type ClassificationGSE84133 human 4
Macro-AUC99.8
6
Cell Type ClassificationGSE84133 mouse1
Macro-AUC99.9
6
Cell Type ClassificationGSE84133 mouse 2
Macro-AUC99.3
6
Cell Type ClassificationGSE67835
Macro-F194.9
6
Cell Type ClassificationGSE75748cell
Macro-F199
6
Cell Type ClassificationGSE75748 time
Macro F1 Score94.1
6
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