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Gerald Urban

Researcher at University of Freiburg

Publications -  420
Citations -  9679

Gerald Urban is an academic researcher from University of Freiburg. The author has contributed to research in topics: Electrode & Biosensor. The author has an hindex of 45, co-authored 408 publications receiving 7871 citations. Previous affiliations of Gerald Urban include University of Vienna & IMTEK.

Papers
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A lab-on-a-chip for rapid miRNA extraction.

TL;DR: The extraction yield from cells was found to be up to ~200-fold higher for the chip system under non-denaturing conditions and the ratio of eluted miRNAs is shown to be dependent on the degree of complexation with miRNA associated proteins.
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Modular development of an inline monitoring system for waterborne pathogens in raw and drinking water.

TL;DR: In insights into the design of a modular concentration and detection system for bacteria, bacteriophages and viruses are presented, which has the potential to extend and speed up the monitoring of raw and drinking water hygiene in the future.
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Thin-film ion-selective sensors based on neutral carrier membranes

TL;DR: In this article, a thin-film potassium and sodium selective sensors based on neutral carrier membranes and a way to produce them were presented, which offers cheap and simple mass production for disposable miniaturized probes.
Patent

Integrated microfluidic component for purifying analyte molecules and purification method

TL;DR: In this paper, a method for purifying analyte molecules and in particular to a component of this type in which a separation section is used for separating analyte and other constituents of a sample, and in which provision is made of at least one sample chamber for receiving a sample containing the analyte molecule and a collecting chamber for collecting the purified analyte molecular molecules.
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Dry film photoresist-based electrochemical microfluidic biosensor platform: Device fabrication, on-chip assay preparation, and system operation

TL;DR: Different biomolecules can quantitatively be measured by means of the introduced microfluidic system, giving an indication of different types of diseases, or, in regard to therapeutic drug monitoring, facilitating a personalized therapy.