Single Cell Sequencing Reveals Mechanisms of Persistent Truncus Arteriosus Formation after PDGFRα and PDGFRβ Double Knockout in Cardiac Neural Crest Cells
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Chen, T.; Song, S.; Jiang, H.; Lian, H.; Hu, S. Single Cell Sequencing Reveals Mechanisms of Persistent Truncus Arteriosus Formation after PDGFRα and PDGFRβ Double Knockout in Cardiac Neural Crest Cells. Genes 2022, 13, 1708. https://doi.org/10.3390/genes13101708
Chen T, Song S, Jiang H, Lian H, Hu S. Single Cell Sequencing Reveals Mechanisms of Persistent Truncus Arteriosus Formation after PDGFRα and PDGFRβ Double Knockout in Cardiac Neural Crest Cells. Genes. 2022; 13(10):1708. https://doi.org/10.3390/genes13101708
Chicago/Turabian StyleChen, Tianyun, Shen Song, Haobin Jiang, Hong Lian, and Shengshou Hu. 2022. "Single Cell Sequencing Reveals Mechanisms of Persistent Truncus Arteriosus Formation after PDGFRα and PDGFRβ Double Knockout in Cardiac Neural Crest Cells" Genes 13, no. 10: 1708. https://doi.org/10.3390/genes13101708
APA StyleChen, T., Song, S., Jiang, H., Lian, H., & Hu, S. (2022). Single Cell Sequencing Reveals Mechanisms of Persistent Truncus Arteriosus Formation after PDGFRα and PDGFRβ Double Knockout in Cardiac Neural Crest Cells. Genes, 13(10), 1708. https://doi.org/10.3390/genes13101708

