Zhang, J.;                     Shen, W.;                     Cai, Z.;                     Chen, K.;                     Ouyang, Q.;                     Wei, P.;                     Yang, W.;                     Luo, C.    
        Microfluidic-Enabled Multi-Cell-Densities-Patterning and Culture Device for Characterization of Yeast Strains’ Growth Rates under Mating Pheromone. Chemosensors 2022, 10, 141.
    https://doi.org/10.3390/chemosensors10040141
    AMA Style
    
                                Zhang J,                                 Shen W,                                 Cai Z,                                 Chen K,                                 Ouyang Q,                                 Wei P,                                 Yang W,                                 Luo C.        
                Microfluidic-Enabled Multi-Cell-Densities-Patterning and Culture Device for Characterization of Yeast Strains’ Growth Rates under Mating Pheromone. Chemosensors. 2022; 10(4):141.
        https://doi.org/10.3390/chemosensors10040141
    
    Chicago/Turabian Style
    
                                Zhang, Jing,                                 Wenting Shen,                                 Zhiyuan Cai,                                 Kaiyue Chen,                                 Qi Ouyang,                                 Ping Wei,                                 Wei Yang,                                 and Chunxiong Luo.        
                2022. "Microfluidic-Enabled Multi-Cell-Densities-Patterning and Culture Device for Characterization of Yeast Strains’ Growth Rates under Mating Pheromone" Chemosensors 10, no. 4: 141.
        https://doi.org/10.3390/chemosensors10040141
    
    APA Style
    
                                Zhang, J.,                                 Shen, W.,                                 Cai, Z.,                                 Chen, K.,                                 Ouyang, Q.,                                 Wei, P.,                                 Yang, W.,                                 & Luo, C.        
        
        (2022). Microfluidic-Enabled Multi-Cell-Densities-Patterning and Culture Device for Characterization of Yeast Strains’ Growth Rates under Mating Pheromone. Chemosensors, 10(4), 141.
        https://doi.org/10.3390/chemosensors10040141