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Cornaglia, M., Trouillon, R., Tekin, H. C., Lehnert, T., & Gijs, M. A. M. (2014). Magnetic particle-scanning for ultrasensitive immunodetection on-chip. Analytical Chemistry, 86(16), 8213-23. Lien externe
Passarelli, M. K., Wang, J., Mohammadi, A. S., Trouillon, R., Gilmore, I., & Ewing, A. G. (2014). Development of an Organic Lateral Resolution Test Device for Imaging Mass Spectrometry. Analytical Chemistry, 86(19), 9473-9480. Lien externe
Trouillon, R. (août 2014). Actin contributes to the regulation of quantal release during exocytosis [Présentation]. Dans ISE annual meeting 2014, Lausanne, Switzerland. Non disponible
Trouillon, R. (mars 2014). Biological applications of BDD electrodes: resistance to biological and chemical foulings [Présentation]. Dans International Symposium on Diamond Electrochemistry, Keio University, Yokohama, Japan. Non disponible
Trouillon, R. (octobre 2014). Delayed electrochemical response of voltammetry, in comparison to amperometry, to variations of analyte concentration in microchannels [Affiche]. MicroTAS 2014, San Antonio, Texas, USA. Non disponible
Trouillon, R. (octobre 2021). Delayed electrochemical response of voltammetry, in comparison to amperometry, to variations of analyte concentration in microchannels [Affiche]. ISE annual meeting 2014, Lausanne, Switzerland. Non disponible
Trouillon, R., & Ewing, A. G. (2014). Actin Controls the Vesicular Fraction of Dopamine Released During Extended Kiss and Run Exocytosis. ACS Chemical Biology, 9(3), 812-820. Lien externe
Trouillon, R., & Gijs, M. A. (2014). Delayed voltammetric with respect to amperometric electrochemical detection of concentration changes in microchannels. Lab on a Chip, 14(16), 2929-40. Lien externe
Trouillon, R., Einaga, Y., & Gijs, M. A. M. (2014). Cathodic pretreatment improves the resistance of boron-doped diamond electrodes to dopamine fouling. Electrochemistry Communications, 47, 92-95. Lien externe
Wang, J., Trouillon, R., Dunevall, J., & Ewing, A. G. (2014). Spatial Resolution of Single-Cell Exocytosis by Microwell-Based Individually Addressable Thin Film Ultramicroelectrode Arrays. Analytical Chemistry, 86(9), 4515-4520. Lien externe