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https://www.ncbi.nlm.nih.gov/pubmed/39317764

Joint inference of discrete cell types and continuous type-specific variability in single-cell datasets with MMIDAS - PubMed

Reproducible definition and identification of cell types is essential to enable investigations into their biological function and to understand their relevance in the context of development, disease and evolution. Current approaches model variability in data as continuous latent factors, followed by …



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Joint inference of discrete cell types and continuous type-specific variability in single-cell datasets with MMIDAS - PubMed

https://www.ncbi.nlm.nih.gov/pubmed/39317764

Reproducible definition and identification of cell types is essential to enable investigations into their biological function and to understand their relevance in the context of development, disease and evolution. Current approaches model variability in data as continuous latent factors, followed by …



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https://www.ncbi.nlm.nih.gov/pubmed/39317764

Joint inference of discrete cell types and continuous type-specific variability in single-cell datasets with MMIDAS - PubMed

Reproducible definition and identification of cell types is essential to enable investigations into their biological function and to understand their relevance in the context of development, disease and evolution. Current approaches model variability in data as continuous latent factors, followed by …

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      Reproducible definition and identification of cell types is essential to enable investigations into their biological function and to understand their relevance in the context of development, disease and evolution. Current approaches model variability in data as continuous latent factors, followed by …
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