Sharif, S.; Nguyen, K.T.; Bang, D.; Park, J.-O.; Choi, E.
Optimization of Field-Free Point Position, Gradient Field and Ferromagnetic Polymer Ratio for Enhanced Navigation of Magnetically Controlled Polymer-Based Microrobots in Blood Vessel. Micromachines 2021, 12, 424.
https://doi.org/10.3390/mi12040424
AMA Style
Sharif S, Nguyen KT, Bang D, Park J-O, Choi E.
Optimization of Field-Free Point Position, Gradient Field and Ferromagnetic Polymer Ratio for Enhanced Navigation of Magnetically Controlled Polymer-Based Microrobots in Blood Vessel. Micromachines. 2021; 12(4):424.
https://doi.org/10.3390/mi12040424
Chicago/Turabian Style
Sharif, Saqib, Kim Tien Nguyen, Doyeon Bang, Jong-Oh Park, and Eunpyo Choi.
2021. "Optimization of Field-Free Point Position, Gradient Field and Ferromagnetic Polymer Ratio for Enhanced Navigation of Magnetically Controlled Polymer-Based Microrobots in Blood Vessel" Micromachines 12, no. 4: 424.
https://doi.org/10.3390/mi12040424
APA Style
Sharif, S., Nguyen, K. T., Bang, D., Park, J.-O., & Choi, E.
(2021). Optimization of Field-Free Point Position, Gradient Field and Ferromagnetic Polymer Ratio for Enhanced Navigation of Magnetically Controlled Polymer-Based Microrobots in Blood Vessel. Micromachines, 12(4), 424.
https://doi.org/10.3390/mi12040424