Versatile microrobotics using simple modular subunits

被引:0
作者
U Kei Cheang
Farshad Meshkati
Hoyeon Kim
Kyoungwoo Lee
Henry Chien Fu
Min Jun Kim
机构
[1] Dept. of Mechanical Engineering & Mechanics,
[2] Drexel University,undefined
[3] Dept. of Mechanical Engineering,undefined
[4] University of Nevada,undefined
[5] Reno,undefined
[6] Dept. of Mechanical Engineering,undefined
[7] Southern Methodist University,undefined
[8] Dept. of Computer Science,undefined
[9] Yonsei University,undefined
[10] Dept. of Mechanical Engineering,undefined
[11] University of Utah,undefined
来源
Scientific Reports | / 6卷
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摘要
The realization of reconfigurable modular microrobots could aid drug delivery and microsurgery by allowing a single system to navigate diverse environments and perform multiple tasks. So far, microrobotic systems are limited by insufficient versatility; for instance, helical shapes commonly used for magnetic swimmers cannot effectively assemble and disassemble into different size and shapes. Here by using microswimmers with simple geometries constructed of spherical particles, we show how magnetohydrodynamics can be used to assemble and disassemble modular microrobots with different physical characteristics. We develop a mechanistic physical model that we use to improve assembly strategies. Furthermore, we experimentally demonstrate the feasibility of dynamically changing the physical properties of microswimmers through assembly and disassembly in a controlled fluidic environment. Finally, we show that different configurations have different swimming properties by examining swimming speed dependence on configuration size.
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共 121 条
[1]  
Yim M(2002)Modular robots IEEE Spectrum 39 30-34
[2]  
Ying Z(1996)Current Opinion in Solid State & Materials Science Current Sci 1 268-223
[3]  
Duff D(2009)Nanoparticle-based targeted drug delivery Exp. Mol. Pathol. 86 215-193
[4]  
Clearfield A(2010)Recent developments in liposomes, microparticles and nanoparticles for protein and peptide drug delivery Peptides 31 184-205
[5]  
Singh R(2011)Targeted drug delivery to tumors: myths, reality and possibility J. Controlled Release 153 198-1265
[6]  
Lillard JW(2008)Magnetic nanoparticles in MR imaging and drug delivery Adv. Drug Delivery Rev 60 1252-60
[7]  
Tan ML(2006)Magnetic nanoparticles for drug delivery Drug Dev. Res 67 55-814
[8]  
Choong PF(2007)Automatic navigation of an untethered device in the artery of a living animal using a conventional clinical magnetic resonance imaging system Appl. Phys. Lett. 90 114105-519
[9]  
Dass CR(1955)The propulsion of sea-urchin spermatozoa J. Exp. Biol. 32 802-489
[10]  
Bae YH(2004)A smart microrobot on chip: Design, identification, and control IEEE/ASME Trans. Mechatron 9 508-1044