Bioelectronics: Sensing beyond the limit.
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[1] Piet Bergveld,et al. Thirty years of ISFETOLOGY ☆: What happened in the past 30 years and what may happen in the next 30 years , 2003 .
[2] I. Willner,et al. Probing Biomolecular Interactions at Conductive and Semiconductive Surfaces by Impedance Spectroscopy: Routes to Impedimetric Immunosensors, DNA‐Sensors, and Enzyme Biosensors , 2003 .
[3] D. Landheer,et al. Calculation of the Response of Field-Effect Transistors to Charged Biological Molecules , 2007, IEEE Sensors Journal.
[4] Andreas Offenhäusser,et al. Possibilities and limitations of label-free detection of DNA hybridization with field-effect-based devices , 2005 .
[5] Bernard P. Puc,et al. An integrated semiconductor device enabling non-optical genome sequencing , 2011, Nature.
[6] D. Schmitt-Landsiedel,et al. A 128 /spl times/ 128 CMOS bio-sensor array for extracellular recording of neural activity , 2003, 2003 IEEE International Solid-State Circuits Conference, 2003. Digest of Technical Papers. ISSCC..
[7] P Bergveld,et al. Development of an ion-sensitive solid-state device for neurophysiological measurements. , 1970, IEEE transactions on bio-medical engineering.
[8] L. Selmi,et al. Real-time imaging of microparticles and living cells with CMOS nanocapacitor arrays. , 2015, Nature nanotechnology.
[9] C. Lieber,et al. Nanowire Nanosensors for Highly Sensitive and Selective Detection of Biological and Chemical Species , 2001, Science.
[10] C. Toumazou,et al. Simultaneous DNA amplification and detection using a pH-sensing semiconductor system , 2013, Nature Methods.