2002:
176. . Moving-Wall-Driven Flows in Nanofluidic Systems, R. Karlsson, M. Karlsson,
A. Karlsson, A. Cans, J. Bergenholtz, B. Akerman, A.G. Ewing, M. Voinova, O. Orwar,
Langmuir 18 (2002) 4186-4190. DOI: 10.1021/la025533v.
177. Differentiated PC12 Cells: A Better Model System for the Study of the VMAT’s Effects on
Neuronal Communication, L.A. Sombers, T.L. Colliver, A.G. Ewing, in The Chromaffin
Cell: Transmitter Biosynthesis, Storage, Release, Actions, and Informatics, Annals of New
York Academy of Sciences, 971 (2002) 86-88.
178. Dual Fluorescence and Electrochemical Detection on a Electrophoresis Microchip, J.A.
Lapos, D.P. Manica, A.G. Ewing, Anal. Chem., 74 (2002) 3348-3353. DOI:
10.1021/ac025504p.
179. Imaging of Freeze-Fractured Cells with In-Situ Fluorescence and Time of Flight Secondary
Ion Mass Spectrometry, T.P. Roddy, D.M. Cannon, Jr., C.A. Meserole, N. Winograd,
A.G. Ewing, Anal. Chem., 74 (2002) 4011-4019. DOI: 10.1021/ac0255734.
170. . Identification of Cellular Sections with Imaging Mass Spectrometry Following Freeze
Fracture, T.P. Roddy, D.M. Cannon, Jr., S.G. Ostrowski, N. Winograd, A.G. Ewing, Anal.
Chem., 74 (2002) 4020-4026. DOI: 10.1021/ac025574w.
171. . Parallel Analysis with Optically Gated Sample Introduction on a Multi-Channel Microchip,
H. Xu, T.P. Roddy, J.A. Lapos, A.G. Ewing, Anal. Chem., 74 (2002) 5517-5522. DOI:
10.1021/ac025773f.
172. Prototyping Disposable Electrophoresis Microchips with Electrochemical Detection using
Rapid Marker Masking and Laminar Flow Etching, D.P. Manica and A.G. Ewing,
Electrophoresis, 23 (2002) 3735-3743. DOI: 10.1002/1522-2683(200211)23:21<3735::AIDELPS3735>3.0.CO;2-7.
173. Mass Spectrometry Imaging of Membrane Lipids in Cryogenically Preserved Single Cells,
T.P. Roddy, D.M. Cannon, Jr., S.G. Ostrowski, A.G. Ewing, N. Winograd, J. Am. Soc. Mass
Spectrom. 13 (2002) 1S-126S.