An Impedance Sensing Platform for Monitoring Heterogeneous Connectivity and Diagnostics in Lab-on-a-Chip Systems
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[1] Noel S Ha,et al. Ionic-surfactant-mediated electro-dewetting for digital microfluidics , 2019, Nature.
[2] A. Wheeler,et al. Digital microfluidics and nuclear magnetic resonance spectroscopy for in situ diffusion measurements and reaction monitoring. , 2019, Lab on a chip.
[3] Michael D M Dryden,et al. A digital microfluidic system for serological immunoassays in remote settings , 2018, Science Translational Medicine.
[4] Mirela Alistar,et al. OpenDrop: An Integrated Do-It-Yourself Platform for Personal Use of Biochips , 2017, Bioengineering.
[5] D. Hasko,et al. Influence of polarization on contact angle saturation during electrowetting , 2016 .
[6] Ehsan Samiei,et al. A review of digital microfluidics as portable platforms for lab-on a-chip applications. , 2016, Lab on a chip.
[7] S. Kalsi,et al. Rapid and sensitive detection of antibiotic resistance on a programmable digital microfluidic platform. , 2015, Lab on a chip.
[8] A. Wheeler,et al. DropBot: An open-source digital microfluidic control system with precise control of electrostatic driving force and instantaneous drop velocity measurement , 2013 .
[9] H. Morgan,et al. Programmable large area digital microfluidic array with integrated droplet sensing for bioassays. , 2012, Lab on a chip.
[10] Matthew T. Cole,et al. Flexible Electronics: The Next Ubiquitous Platform , 2012, Proceedings of the IEEE.
[11] Aaron R Wheeler,et al. A microfluidic platform for complete mammalian cell culture. , 2010, Lab on a chip.
[12] Teodor Veres,et al. Integration and detection of biochemical assays in digital microfluidic LOC devices. , 2010, Lab on a chip.
[13] Eric P. Y. Chiou,et al. EWOD-driven droplet microfluidic device integrated with optoelectronic tweezers as an automated platform for cellular isolation and analysis. , 2009, Lab on a chip.
[14] A. Wheeler,et al. The Digital Revolution: A New Paradigm for Microfluidics , 2009 .
[15] Bernhard Weigl,et al. Towards non- and minimally instrumented, microfluidics-based diagnostic devices. , 2008, Lab on a chip.
[16] Aaron Wheeler,et al. Putting Electrowetting to Work , 2008, Science.
[17] A. Wheeler,et al. Digital microfluidics for cell-based assays. , 2008, Lab on a chip.
[18] J. Baret,et al. Electrowetting: from basics to applications , 2005 .
[19] Jun Zeng,et al. Principles of droplet electrohydrodynamics for lab-on-a-chip. , 2004, Lab on a chip.
[20] R. Fair,et al. Electrowetting-based actuation of droplets for integrated microfluidics. , 2002, Lab on a chip.
[21] R. Fair,et al. Electrowetting-based actuation of liquid droplets for microfluidic applications , 2000 .
[22] R. Murray,et al. Basics or Applications , 1998 .
[23] Allen R. Hefner,et al. An analytical model for the steady-state and transient characteristics of the power insulated-gate bipolar transistor , 1988 .
[24] F. E. Critchfield,et al. Dielectric Constant and Refractive Index from 20 to 35° and Density at 25° for the System Tetrahydrofuran—Water1 , 1953 .
[25] A. A. Maryott,et al. Dielectric Constant of Water from 0 0 to 100 0 C , 2011 .
[26] G.E. Moore,et al. Cramming More Components Onto Integrated Circuits , 1998, Proceedings of the IEEE.
[27] A. A. Maryott,et al. Dielectric constant of water from 0 to 100 C , 1956 .