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Comparison of cytotoxic changes in ECV304 cell through exposure to DMSO and sodium butyrate using impedance spectroscopy (2012)
Journal Article
Wang, Z., Kiely, J., Vargas, A. M., & Luxton, R. W. (2012). Comparison of cytotoxic changes in ECV304 cell through exposure to DMSO and sodium butyrate using impedance spectroscopy. Procedia Chemistry, 6, 89-99. https://doi.org/10.1016/j.proche.2012.10.134

This paper decides an impedance spectroscopy measurement system for real-time monitoring of cellular toxicity. The system is used to compare the impedance response of ECV304 cells to two toxicants, dimethyl sulphoxide (DMSO) and sodium butyrate. The... Read More about Comparison of cytotoxic changes in ECV304 cell through exposure to DMSO and sodium butyrate using impedance spectroscopy.

Magnetic particle detector system (2010)
Patent
Kiely, J., Luxton, R. W., & Hawkins, P. (2010). Magnetic particle detector system. EP20050744998 20050517

A magnetic particle detector system comprises a plurality of reaction surfaces; a corresponding plurality of electrical coils, each located adjacent a respective reaction surface; and a measuring system for measuring the effect of magnetic particles... Read More about Magnetic particle detector system.

Hilbert huang transform impedance measurement data for cellular toxicity monitoring (2009)
Conference Proceeding
Wang, Z., Zhu, Q., Kiely, J., & Luxton, R. W. (2009). Hilbert huang transform impedance measurement data for cellular toxicity monitoring. In N. NA (Ed.), International Conference on Networking, Sensing and Control (767-772). https://doi.org/10.1109/ICNSC.2009.4919375

This paper investigates the Hilbert-Huang transformation (HHT), which is adaptive analysis of nonlinear and non-stationary signals. The aim of this study is to apply HHT to impedance measurement data analysis in order to discriminate different types... Read More about Hilbert huang transform impedance measurement data for cellular toxicity monitoring.

Evaluation of paramagnetic particles for use in a resonant coil magnetometer based magneto-immunoassay (2009)
Journal Article
Eveness, J., Kiely, J., Hawkins, P., Wraith, P., & Luxton, R. (2009). Evaluation of paramagnetic particles for use in a resonant coil magnetometer based magneto-immunoassay. Sensors and Actuators B: Chemical, 139(2), 538-542. https://doi.org/10.1016/j.snb.2009.03.078

This paper describes work that formed a part of an investigation to increase the detection sensitivity of a magneto-immunoassay. The study involved the characterisation of paramagnetic particles (PMPs) from a range of manufacturers in order to determ... Read More about Evaluation of paramagnetic particles for use in a resonant coil magnetometer based magneto-immunoassay.

Spot test: new technologies bring point-of-care testing into the 21st century (2009)
Journal Article
Luxton, R. W., & Kiely, J. (2009). Spot test: new technologies bring point-of-care testing into the 21st century

Every new technology offers the potential to effect changes in practise; many developments driven by the world-wide demand for instant results. This is never as true as in the arena of diagnostic testing. Once the sole preserve of the hospital labo... Read More about Spot test: new technologies bring point-of-care testing into the 21st century.

Spot test (2009)
Other
Kiely, J., & Luxton, R. W. (2009). Spot test

Paramagnetic particle detection for use with an immunoassay based biosensor (2007)
Journal Article
Kiely, J., Hawkins, P., Wraith, P., & Luxton, R. (2007). Paramagnetic particle detection for use with an immunoassay based biosensor. IET Science Measurement and Technology, 1(5), 270-275. https://doi.org/10.1049/iet-smt%3A20060103

A biosensor and detection system that can provide measurement of analyte concentration within a test sample in four minutes is presented. The biosensor uses an immunoassay with micrometre-sized paramagnetic particle (PMP) labels for quantification. A... Read More about Paramagnetic particle detection for use with an immunoassay based biosensor.

Thickness determination of thin and ultra-thin SiO 2 films by C-AFM IV-spectroscopy (2006)
Journal Article
Frammelsberger, W., Benstetter, G., Kiely, J., & Stamp, R. (2006). Thickness determination of thin and ultra-thin SiO 2 films by C-AFM IV-spectroscopy. Applied Surface Science, 252(6), 2375-2388. https://doi.org/10.1016/j.apsusc.2005.04.010

Conductive atomic force microscopy was used to determine the electrical oxide thickness for five different silicon dioxide layers with thickness in the order of 1.6-5.04 nm. The electrical thickness results were compared with values determined by ell... Read More about Thickness determination of thin and ultra-thin SiO 2 films by C-AFM IV-spectroscopy.

Simplified tunnelling current calculation for MOS structures with ultra-thin oxides for conductive atomic force microscopy investigations (2005)
Journal Article
Frammelsberger, W., Benstetter, G., Stamp, R., Kiely, J., & Schweinboeck, T. (2005). Simplified tunnelling current calculation for MOS structures with ultra-thin oxides for conductive atomic force microscopy investigations. Materials Science and Engineering: B, 116(2), 168-174. https://doi.org/10.1016/j.mseb.2004.09.027

As charge tunnelling through thin and ultra-thin silicon dioxide layers is regarded as the driving force for MOS device degradation the determination and characterisation of electrically week spots is of paramount importance for device reliability an... Read More about Simplified tunnelling current calculation for MOS structures with ultra-thin oxides for conductive atomic force microscopy investigations.

Use of External Magnetic Fields to Reduce Reaction Times in an Immunoassay Using Micrometer-Sized Paramagnetic Particles as Labels (Magnetoimmunoassay) (2004)
Journal Article
Luxton, R., Badesha, J., Kiely, J., & Hawkins, P. (2004). Use of External Magnetic Fields to Reduce Reaction Times in an Immunoassay Using Micrometer-Sized Paramagnetic Particles as Labels (Magnetoimmunoassay). Analytical Chemistry, 76(6), 1715-1719. https://doi.org/10.1021/ac034906%2B

The paper presents a rapid immunoassay system capable of quantifying analyte in complex biological and environmental media. Antibody-coated micrometer-sized paramagnetic particles are used as labels in an assay in which they bind quantitatively with... Read More about Use of External Magnetic Fields to Reduce Reaction Times in an Immunoassay Using Micrometer-Sized Paramagnetic Particles as Labels (Magnetoimmunoassay).