A novel miniature virus-inspired swimming robot for biomedical applications

Author:

Taheri Arash,Orangi Sakineh

Publisher

Springer Science and Business Media LLC

Subject

General Engineering,General Materials Science

Reference30 articles.

1. Purcell E M. Life at low Reynolds number. Am J Phys, 1977, 45: 3–11

2. Honda T, Arai K, Ishiyama K. Effect of micro machine shape on swimming properties of the spiral-type magnetic micro-machine. IEEE T Magn, 1999, 35: 3688–3690

3. Guo S, Hasegaw Y, Fukuda T, et al. Fish-like underwater microrobot with multi DOF. In: Proceedings of International Symposium on Micromechatronics and Human Science, IEEE, 2001. 63–68

4. MacIver M A, Fontaine E, Burdick J W. Designing future underwater vehicles: principles and mechanisms of weakly electric fish. IEEE J Ocean Eng, 2004, 29: 651–659

5. Taheri A, Mohammadi-Amin M, Orangi S, et al. An undulatory ribbon-fin design optimization for bio-inspired swimming robot propulsion. In: Proceeding of the 4th International Symposium on Aero Aqua Bio-Mechanisms (ISABMEC2009), Shanghai, China, 2009. 1–6

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