A microfabricated, biohybrid, soft robotics flagellum
Brian J. Williams, Sandeep V. Anand, Jagannathan Rajagopalan, M. Taher A. Saif
- 发表年份
- 2014
- 引用次数
- 3
摘要
We present a microfabricated soft robotics flagellum powered by living cells that can generate propulsion at low Reynolds number (Re). The swimmer utilizes contractile cardiomyocytes to provide on-board actuation to a thin, deformable, polydimethylsiloxane (PDMS) filament. To enable propulsion at low Re, the filament is designed such that it deforms passively in response to fluid drag, producing a time irreversible cyclical deformation and a net propulsive force. This work provides a new paradigm by integrating microfabrication and biological cells to enable the realization of an independent, soft robotics actuator with micron-scale dimensions.
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