Magnetoresistive Emulsion Analyzer
Nature Scientific Reports 3, 2548 (2013).
G. Lin, L. Baraban, L. Han, D. Karnaushenko, D. Makarov, G. Cuniberti, and O. G. Schmidt.
Journal DOI: https://doi.org/10.1038/srep02548

We realize a magnetoresistive emulsion analyzer capable of detection, multiparametric analysis and sorting of ferrofluid-containing nanoliter-droplets. The operation of the device in a cytometric mode provides high throughput and quantitative information about the dimensions and magnetic content of the emulsion. Our method offers important complementarity to conventional optical approaches involving ferrofluids, and paves the way to the development of novel compact tools for diagnostics and nanomedicine including drug design and screening.

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©https://doi.org/10.1038/srep02548
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Magnetoresistive Emulsion Analyzer
Nature Scientific Reports 3, 2548 (2013).
G. Lin, L. Baraban, L. Han, D. Karnaushenko, D. Makarov, G. Cuniberti, and O. G. Schmidt.
Journal DOI: https://doi.org/10.1038/srep02548

We realize a magnetoresistive emulsion analyzer capable of detection, multiparametric analysis and sorting of ferrofluid-containing nanoliter-droplets. The operation of the device in a cytometric mode provides high throughput and quantitative information about the dimensions and magnetic content of the emulsion. Our method offers important complementarity to conventional optical approaches involving ferrofluids, and paves the way to the development of novel compact tools for diagnostics and nanomedicine including drug design and screening.

Cover
©https://doi.org/10.1038/srep02548
Share


Involved Scientists