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Label-aware distance mitigates temporal and spatial variability for clustering and visualization of single-cell gene expression data.


ABSTRACT: Clustering and visualization are essential parts of single-cell gene expression data analysis. The Euclidean distance used in most distance-based methods is not optimal. The batch effect, i.e., the variability among samples gathered from different times, tissues, and patients, introduces large between-group distance and obscures the true identities of cells. To solve this problem, we introduce Label-Aware Distance (LAD), a metric using temporal/spatial locality of the batch effect to control for such factors. We validate LAD on simulated data as well as apply it to a mouse retina development dataset and a lung dataset. We also found the utility of our approach in understanding the progression of the Coronavirus Disease 2019 (COVID-19). LAD provides better cell embedding than state-of-the-art batch correction methods on longitudinal datasets. It can be used in distance-based clustering and visualization methods to combine the power of multiple samples to help make biological findings.

SUBMITTER: Liang S 

PROVIDER: S-EPMC10940680 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Label-aware distance mitigates temporal and spatial variability for clustering and visualization of single-cell gene expression data.

Liang Shaoheng S   Dou Jinzhuang J   Iqbal Ramiz R   Chen Ken K  

Communications biology 20240314 1


Clustering and visualization are essential parts of single-cell gene expression data analysis. The Euclidean distance used in most distance-based methods is not optimal. The batch effect, i.e., the variability among samples gathered from different times, tissues, and patients, introduces large between-group distance and obscures the true identities of cells. To solve this problem, we introduce Label-Aware Distance (LAD), a metric using temporal/spatial locality of the batch effect to control for  ...[more]

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