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Selectively manipulable acoustic-powered microswimmers.


ABSTRACT: Selective actuation of a single microswimmer from within a diverse group would be a first step toward collaborative guided action by a group of swimmers. Here we describe a new class of microswimmer that accomplishes this goal. Our swimmer design overcomes the commonly-held design paradigm that microswimmers must use non-reciprocal motion to achieve propulsion; instead, the swimmer is propelled by oscillatory motion of an air bubble trapped within the swimmer's polymer body. This oscillatory motion is driven by the application of a low-power acoustic field, which is biocompatible with biological samples and with the ambient liquid. This acoustically-powered microswimmer accomplishes controllable and rapid translational and rotational motion, even in highly viscous liquids (with viscosity 6,000 times higher than that of water). And by using a group of swimmers each with a unique bubble size (and resulting unique resonance frequencies), selective actuation of a single swimmer from among the group can be readily achieved.

SUBMITTER: Ahmed D 

PROVIDER: S-EPMC4438614 | biostudies-literature | 2015 May

REPOSITORIES: biostudies-literature

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Selectively manipulable acoustic-powered microswimmers.

Ahmed Daniel D   Lu Mengqian M   Nourhani Amir A   Lammert Paul E PE   Stratton Zak Z   Muddana Hari S HS   Crespi Vincent H VH   Huang Tony Jun TJ  

Scientific reports 20150520


Selective actuation of a single microswimmer from within a diverse group would be a first step toward collaborative guided action by a group of swimmers. Here we describe a new class of microswimmer that accomplishes this goal. Our swimmer design overcomes the commonly-held design paradigm that microswimmers must use non-reciprocal motion to achieve propulsion; instead, the swimmer is propelled by oscillatory motion of an air bubble trapped within the swimmer's polymer body. This oscillatory mot  ...[more]

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