Wu, T.; Li, H.; Sun, X.; Ren, X.; Wang, H.; Huang, Q.
Suppressing Blood-Cell Migration Lag via Dean-Cycle Phase Regulation Enables High-Purity CTC Enrichment in an Inertial Microfluidic Array. Micromachines 2026, 17, 446.
https://doi.org/10.3390/mi17040446
AMA Style
Wu T, Li H, Sun X, Ren X, Wang H, Huang Q.
Suppressing Blood-Cell Migration Lag via Dean-Cycle Phase Regulation Enables High-Purity CTC Enrichment in an Inertial Microfluidic Array. Micromachines. 2026; 17(4):446.
https://doi.org/10.3390/mi17040446
Chicago/Turabian Style
Wu, Taihang, Haozheng Li, Xiange Sun, Xiaodong Ren, Hong Wang, and Qing Huang.
2026. "Suppressing Blood-Cell Migration Lag via Dean-Cycle Phase Regulation Enables High-Purity CTC Enrichment in an Inertial Microfluidic Array" Micromachines 17, no. 4: 446.
https://doi.org/10.3390/mi17040446
APA Style
Wu, T., Li, H., Sun, X., Ren, X., Wang, H., & Huang, Q.
(2026). Suppressing Blood-Cell Migration Lag via Dean-Cycle Phase Regulation Enables High-Purity CTC Enrichment in an Inertial Microfluidic Array. Micromachines, 17(4), 446.
https://doi.org/10.3390/mi17040446