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A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets
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S. S. Turgut Ögme Et Al. , "A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets," PLOS COMPUTATIONAL BIOLOGY , vol.21, no.10, pp.1-25, 2025

Turgut Ögme, S. S. Et Al. 2025. A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets. PLOS COMPUTATIONAL BIOLOGY , vol.21, no.10 , 1-25.

Turgut Ögme, S. S., Aydin, N., & Kurt, Z., (2025). A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets. PLOS COMPUTATIONAL BIOLOGY , vol.21, no.10, 1-25.

Turgut Ögme, Sultan, Nizamettin Aydin, And Zeyneb Kurt. "A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets," PLOS COMPUTATIONAL BIOLOGY , vol.21, no.10, 1-25, 2025

Turgut Ögme, Sultan S. Et Al. "A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets." PLOS COMPUTATIONAL BIOLOGY , vol.21, no.10, pp.1-25, 2025

Turgut Ögme, S. S. Aydin, N. And Kurt, Z. (2025) . "A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets." PLOS COMPUTATIONAL BIOLOGY , vol.21, no.10, pp.1-25.

@article{article, author={Sultan Sevgi TURGUT ÖGME Et Al. }, title={A mixture of attention experts-embedded flow-based generative model to create synthetic cells in single-cell RNA-Seq datasets}, journal={PLOS COMPUTATIONAL BIOLOGY}, year=2025, pages={1-25} }