Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at the micron or nano-scale. Scientists are now designing artificial micro-swimmers that can mimic flagella-powered swimming of micro-organisms. In an application such as lab-on-a-chip in which micro-object manipulation in small flow geometries could be achieved by micro-swimmers, control of the swimming direction becomes an important aspect for retrieval and control of the micro-swimmer. A bio-inspired approach for swimming direction reversal (a flagellum bearing mastigonemes) can be used to design such a system and is being explored in the present work. We analyze the system using a computational framework in which the equations of solid mechani...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
In this thesis, we explore different topics in the broad field of microscale swimming, focussing on ...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
In this thesis, we explore different topics in the broad field of microscale swimming, focussing on ...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...
We study magnetic artificial flagella whose swimming speed and direction can be controlled using lig...