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Neutrophil-inspired propulsion in a combined acoustic and magnetic field


Date

2017-10-03

Publication Type

Journal Article

ETH Bibliography

yes

Citations

Altmetric

Data

Abstract

Systems capable of precise motion in the vasculature can offer exciting possibilities for applications in targeted therapeutics and non-invasive surgery. So far, the majority of the work analysed propulsion in a two-dimensional setting with limited controllability near boundaries. Here we show bio-inspired rolling motion by introducing superparamagnetic particles in magnetic and acoustic fields, inspired by a neutrophil rolling on a wall. The particles self-assemble due to dipole–dipole interaction in the presence of a rotating magnetic field. The aggregate migrates towards the wall of the channel due to the radiation force of an acoustic field. By combining both fields, we achieved a rolling-type motion along the boundaries. The use of both acoustic and magnetic fields has matured in clinical settings. The combination of both fields is capable of overcoming the limitations encountered by single actuation techniques. We believe our method will have far-reaching implications in targeted therapeutics.

Publication status

published

Editor

Book title

Volume

8 (1)

Pages / Article No.

770

Publisher

Nature

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

Organisational unit

03307 - Dual, Jürg (emeritus) / Dual, Jürg (emeritus) check_circle
03627 - Nelson, Bradley J. / Nelson, Bradley J. check_circle
09700 - Ahmed, Daniel (ehemalig) / Ahmed, Daniel (former) check_circle

Notes

Funding

743217 - Soft Micro Robotics (EC)

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