CMOS-based biosensor arrays
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Thomas Haneder | Christian Paulus | Franz Hofmann | Ralf Brederlow | Meinrad Schienle | Roland Thewes | Martin Jenkner | Björn Eversmann | Birgit Holzapfl | Gottfried Beer | Alexander Frey | M. Augustyniak | Petra Schindler-Bauer | Melanie Atzesberger | Hans-Christian Hanke | R. Thewes | M. Jenkner | B. Eversmann | F. Hofmann | A. Frey | B. Holzapfl | M. Schienle | C. Paulus | P. Schindler-Bauer | R. Brederlow | T. Haneder | M. Augustyniak | M. Atzesberger | G. Beer | H. Hanke
[1] F. Scheller,et al. Frontiers in Biosensorics I: Fundamental Aspects , 1996 .
[2] P. Fromherz,et al. A neuron-silicon junction: a Retzius cell of the leech on an insulated-gate field-effect transistor. , 1991, Science.
[3] Mark Schena,et al. DNA microarrays : a practical approach , 1999 .
[4] Allen J. Bard,et al. Digital Simulation of the Measured Electrochemical Response of Reversible Redox Couples at Microelectrode Arrays: Consequences Arising from Closely Spaced Ultramicroelectrodes , 1986 .
[5] A. Lambacher,et al. Electrical imaging of neuronal activity by multi-transistor-array (MTA) recording at 7.8 μm resolution , 2004 .
[6] O. Wolfbeis,et al. Capacitive monitoring of protein immobilization and antigen-antibody reactions on monomolecular alkylthiol films on gold electrodes. , 1997, Biosensors & bioelectronics.
[7] E. Southern,et al. An improved method for transferring nucleotides from electrophoresis strips to thin layers of ion-exchange cellulose. , 1974, Analytical biochemistry.
[8] Piet Bergveld,et al. Extracellular Potential Recordings by Means of a Field Effect Transistor Without Gate Metal, Called OSFET , 1976, IEEE Transactions on Biomedical Engineering.
[9] H. Baltes. Enabling technology for MEMS and nanodevices , 2004 .